This is a Validated Antibody Database (VAD) review about human histone H3, based on 816 published articles (read how Labome selects the articles), using histone H3 antibody in all methods. It is aimed to help Labome visitors find the most suited histone H3 antibody. Please note the number of articles fluctuates since newly identified citations are added and citations for discontinued catalog numbers are removed regularly.
histone H3 synonym: H3-3B; H3.3A; H3F3; H3F3A

Knockout validation
Abnova
mouse monoclonal (2D7-H1)
  • western blot knockout validation; mouse; 1:40; fig 4
Abnova histone H3 antibody (Abnova, 2D7-H1) was used in western blot knockout validation on mouse samples at 1:40 (fig 4). Genes Dev (2015) ncbi
Cell Signaling Technology
domestic rabbit monoclonal (C36B11)
  • western blot knockout validation; human; fig 1
Cell Signaling Technology histone H3 antibody (Cell Signaling Tech, 9733) was used in western blot knockout validation on human samples (fig 1). Biol Proced Online (2015) ncbi
Abcam
mouse monoclonal (mAbcam 14955)
  • western blot; human; 1:1000; loading ...; fig 1a
Abcam histone H3 antibody (Abcam, 14955) was used in western blot on human samples at 1:1000 (fig 1a). Commun Biol (2022) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig s2a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig s2a). Acta Neuropathol Commun (2022) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig 1f
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on mouse samples (fig 1f). elife (2022) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig 3i
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:1000 (fig 3i). Nat Commun (2022) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1 ug/ml; fig 1c
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1 ug/ml (fig 1c). Sci Rep (2022) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:10,000; loading ...; fig 1g, e4a
  • western blot; human; 1:10,000; loading ...; fig 5c
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:10,000 (fig 1g, e4a) and in western blot on human samples at 1:10,000 (fig 5c). Nat Med (2022) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - frozen section; mouse; 1:300; loading ...; fig 1l, s1h
Abcam histone H3 antibody (Abcam, ab5176) was used in immunohistochemistry - frozen section on mouse samples at 1:300 (fig 1l, s1h). Clin Transl Med (2021) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:10,000; loading ...; fig 3a
Abcam histone H3 antibody (Abcam, ab4729) was used in western blot on mouse samples at 1:10,000 (fig 3a). Biol Open (2021) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 2c
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 2c). Cancer Cell Int (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; 2 ug/ml; fig 4a
Abcam histone H3 antibody (Abcam, ab4729) was used in western blot on human samples at 2 ug/ml (fig 4a). JCI Insight (2021) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...; fig 4d
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on mouse samples (fig 4d). Neurooncol Adv (2021) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; mouse; fig 6d
Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry on mouse samples (fig 6d). Development (2021) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig 4a
  • chromatin immunoprecipitation; human; fig 4d
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 4a) and in chromatin immunoprecipitation on human samples (fig 4d). PLoS Pathog (2021) ncbi
mouse monoclonal (mAbcam 14955)
  • western blot; human; loading ...
Abcam histone H3 antibody (Abcam, ab14955) was used in western blot on human samples . Sci Adv (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; ; loading ...; fig s9f
Abcam histone H3 antibody (Abcam, Ab1791) was used in western blot on human samples at (fig s9f). Nat Commun (2021) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 2e
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 2e). Int J Mol Sci (2021) ncbi
monoclonal
  • western blot; human; loading ...; fig 1a
Abcam histone H3 antibody (Abcam, ab6147) was used in western blot on human samples (fig 1a). Exp Ther Med (2021) ncbi
domestic rabbit monoclonal (EPR17899)
  • western blot; mouse; 1:1000; loading ...; fig 4a
Abcam histone H3 antibody (Abcam, ab176840) was used in western blot on mouse samples at 1:1000 (fig 4a). PLoS ONE (2021) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse; 1:4000; loading ...; fig 6d
Abcam histone H3 antibody (Abcam, ab5176) was used in immunocytochemistry on mouse samples at 1:4000 (fig 6d). Cell Death Dis (2021) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 7c
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 7c). Am J Cancer Res (2021) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; human; 1:200; loading ...; fig 5d, e5d
Abcam histone H3 antibody (Abcam, ab5176) was used in immunohistochemistry on human samples at 1:200 (fig 5d, e5d). Nat Cancer (2021) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 1d
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 1d). J Clin Invest (2021) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig s1a
Abcam histone H3 antibody (abcam, ab4729) was used in ChIP-Seq on human samples (fig s1a). Genome Biol (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; fig s4a, s4b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:1000 (fig s4a, s4b). Neuro Oncol (2021) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; 1:300; fig s5
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples at 1:300 (fig s5). Neuro Oncol (2021) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 2a
Abcam histone H3 antibody (Abcam, 4729) was used in ChIP-Seq on human samples (fig 2a). Nat Commun (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; fig s2d
Abcam histone H3 antibody (AbCam, ab1791) was used in western blot on human samples (fig s2d). Nat Cell Biol (2021) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; 4-10 ug / antibody; loading ...; fig 3e
  • western blot; mouse; loading ...; fig 5f
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples at 4-10 ug / antibody (fig 3e) and in western blot on mouse samples (fig 5f). Nat Commun (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 3a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 3a). Cell Death Dis (2021) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; 1:500; loading ...; fig 3l
  • immunohistochemistry; mouse; 1:500; loading ...; fig 3l
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on mouse samples at 1:500 (fig 3l) and in immunohistochemistry on mouse samples at 1:500 (fig 3l). Proc Natl Acad Sci U S A (2021) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; mouse; 1:500; loading ...; fig 3l
Abcam histone H3 antibody (Abcam, ab4729) was used in immunohistochemistry on mouse samples at 1:500 (fig 3l). Sci Adv (2021) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 4l
  • western blot; human; loading ...; fig 4g
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig 4l) and in western blot on human samples (fig 4g). Clin Transl Med (2021) ncbi
mouse monoclonal (mAbcam 24834)
  • western blot; human; 1:2000; loading ...; fig s5a
Abcam histone H3 antibody (Abcam, ab24834) was used in western blot on human samples at 1:2000 (fig s5a). Cell Stem Cell (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; fig e5a, e6a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig e5a, e6a). Nat Metab (2021) ncbi
mouse monoclonal (mAbcam 14955)
  • immunocytochemistry; rat; 1:2500; fig 7b
Abcam histone H3 antibody (Abcam, ab14955) was used in immunocytochemistry on rat samples at 1:2500 (fig 7b). Am J Cancer Res (2021) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...; fig 1c
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on mouse samples (fig 1c). J Biol Chem (2021) ncbi
domestic rabbit monoclonal (E191)
  • chromatin immunoprecipitation; human; loading ...; fig 2c
Abcam histone H3 antibody (Abcam, ab32388) was used in chromatin immunoprecipitation on human samples (fig 2c). Nat Commun (2021) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:5000; loading ...; fig 1c
  • western blot; human; 1:5000; loading ...; fig 2b, 4d, e3e, e7b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:5000 (fig 1c) and in western blot on human samples at 1:5000 (fig 2b, 4d, e3e, e7b). Nature (2021) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - paraffin section; human; 1:1000; loading ...; fig 3d, s6b
  • chromatin immunoprecipitation; human; loading ...; fig 4e
  • immunocytochemistry; human; loading ...; fig 3c
  • western blot; human; loading ...; fig 3b
Abcam histone H3 antibody (Abcam, ab4729) was used in immunohistochemistry - paraffin section on human samples at 1:1000 (fig 3d, s6b), in chromatin immunoprecipitation on human samples (fig 4e), in immunocytochemistry on human samples (fig 3c) and in western blot on human samples (fig 3b). Signal Transduct Target Ther (2021) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 6j
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig 6j). J Clin Invest (2021) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry; mouse; 1:300; loading ...; fig 4a
Abcam histone H3 antibody (Abcam, 14955) was used in immunohistochemistry on mouse samples at 1:300 (fig 4a). elife (2020) ncbi
domestic rabbit polyclonal
Abcam histone H3 antibody (Abcam, ab5176) was used . Front Cell Dev Biol (2020) ncbi
rat monoclonal (HTA28)
  • flow cytometry; human; 1:300; loading ...; fig s6g
Abcam histone H3 antibody (Abcam, ab10543) was used in flow cytometry on human samples at 1:300 (fig s6g). Science (2020) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; human; 1:300; loading ...; fig s10d
Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry on human samples at 1:300 (fig s10d). Science (2020) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:5000; loading ...; fig 3
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:5000 (fig 3). elife (2020) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig 6d
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:1000 (fig 6d). EMBO Mol Med (2020) ncbi
domestic rabbit polyclonal
  • western blot; Xenopus laevis; 1:10,000; fig 3s1a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on Xenopus laevis samples at 1:10,000 (fig 3s1a). elife (2020) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2e
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 2e). elife (2020) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; fruit fly ; 1:50; loading ...; fig 2s1a
Abcam histone H3 antibody (Abcam, ab5176) was used in immunohistochemistry on fruit fly samples at 1:50 (fig 2s1a). elife (2020) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry; Xenopus laevis; 1:1000; loading ...; fig 7h-7j
Abcam histone H3 antibody (Abcam, 14955) was used in immunohistochemistry on Xenopus laevis samples at 1:1000 (fig 7h-7j). elife (2020) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:50,000; loading ...; fig 3h
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:50,000 (fig 3h). elife (2020) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Abcam histone H3 antibody (Abcam, 1791) was used in western blot on human samples (fig 2a). Mol Cell Biol (2020) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:50,000; loading ...; fig 1a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:50,000 (fig 1a). Science (2020) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; mouse; 1:500; loading ...; fig 1s3a
Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry on mouse samples at 1:500 (fig 1s3a). elife (2020) ncbi
domestic rabbit polyclonal
  • western blot; fission yeast; 1:5000; loading ...; fig 5b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on fission yeast samples at 1:5000 (fig 5b). elife (2020) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry - paraffin section; mouse; 1:200; loading ...; fig 3a
Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry - paraffin section on mouse samples at 1:200 (fig 3a). Front Mol Biosci (2020) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig s12c
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig s12c). Science (2020) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; mouse; 1:500; loading ...; fig 7b
Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry on mouse samples at 1:500 (fig 7b). elife (2020) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 1b
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 1b). BMC Med Genomics (2020) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1500; fig 4e
Abcam histone H3 antibody (Abcam, ab5168) was used in western blot on human samples at 1:1500 (fig 4e). Nucleic Acids Res (2020) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 6a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 6a). elife (2020) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 4a
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on human samples (fig 4a). Nat Commun (2020) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples . Cell Stem Cell (2020) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 2b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 2b). Pharmacol Res (2020) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry - frozen section; mouse; 1:500; loading ...; fig 2l
Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry - frozen section on mouse samples at 1:500 (fig 2l). Nat Commun (2020) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:5000; loading ...; fig 1s2a
Abcam histone H3 antibody (abcam, ab1791) was used in western blot on human samples at 1:5000 (fig 1s2a). elife (2020) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; 1:500; loading ...; fig 6b
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on mouse samples at 1:500 (fig 6b). Nat Commun (2020) ncbi
mouse monoclonal (mAbcam 14955)
  • immunocytochemistry; human; loading ...; fig 1j
Abcam histone H3 antibody (Abcam, ab14955) was used in immunocytochemistry on human samples (fig 1j). Sci Rep (2020) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 2c, s3
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig 2c, s3). EBioMedicine (2020) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 2b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:1000 (fig 2b). Artif Cells Nanomed Biotechnol (2020) ncbi
domestic rabbit polyclonal
  • western blot; fission yeast; 1:2000; loading ...; fig 3e
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on fission yeast samples at 1:2000 (fig 3e). elife (2020) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; mouse; loading ...; fig 5e
Abcam histone H3 antibody (Abcam, ab47297) was used in immunohistochemistry on mouse samples (fig 5e). Aging (Albany NY) (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 4c
  • chromatin immunoprecipitation; human; loading ...; fig 5f, 4c, 6c
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 4c) and in chromatin immunoprecipitation on human samples (fig 5f, 4c, 6c). Cell Rep (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 3b
Abcam histone H3 antibody (abcam, ab1791) was used in western blot on human samples (fig 3b). elife (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:5000; loading ...; fig 4a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:5000 (fig 4a). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:2000; loading ...; fig e5d
  • western blot; roundworm ; 1:2000; fig e5a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:2000 (fig e5d) and in western blot on roundworm samples at 1:2000 (fig e5a). Nature (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 5e
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:1000 (fig 5e). Nat Commun (2019) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...; fig e6a
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on mouse samples (fig e6a). Nature (2019) ncbi
mouse monoclonal (mAbcam 24834)
  • western blot; rat; ; loading ...; fig 6s1a
  • western blot; mouse; ; loading ...; fig 6s1b, 6s1c, 6s1d
Abcam histone H3 antibody (Abcam, ab24834) was used in western blot on rat samples at (fig 6s1a) and in western blot on mouse samples at (fig 6s1b, 6s1c, 6s1d). elife (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig s4a
Abcam histone H3 antibody (Abcam, 4729) was used in ChIP-Seq on mouse samples (fig s4a). Nature (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2k
Abcam histone H3 antibody (Abcam, ab4729) was used in western blot on human samples (fig 2k). Nature (2019) ncbi
domestic rabbit monoclonal (E173)
  • western blot; human; loading ...; fig s3d
Abcam histone H3 antibody (Abcam, ab32107) was used in western blot on human samples (fig s3d). Autophagy (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; ; loading ...; fig 1a
  • chromatin immunoprecipitation; mouse; ; loading ...; fig s10
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples at (fig 1a) and in chromatin immunoprecipitation on mouse samples at (fig s10). Science (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; chicken; 1,000 ug/ml; loading ...; fig 3a
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on chicken samples at 1,000 ug/ml (fig 3a). Dev Biol (2020) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig s8b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig s8b). Cell (2019) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry - frozen section; chicken; 1:500; loading ...; fig 2e
  • immunohistochemistry - frozen section; mouse; 1:500; loading ...
Abcam histone H3 antibody (Abcam, ab14955) was used in immunohistochemistry - frozen section on chicken samples at 1:500 (fig 2e) and in immunohistochemistry - frozen section on mouse samples at 1:500. elife (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig s3a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig s3a). Mol Cell (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:500; loading ...; fig 4b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:500 (fig 4b). Cell Death Dis (2019) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; fruit fly ; 1:1000; loading ...; fig 1a
Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry on fruit fly samples at 1:1000 (fig 1a). elife (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 3e
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:1000 (fig 3e). elife (2019) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; fruit fly ; 1:1000; loading ...; fig 2f
Abcam histone H3 antibody (Abcam, ab5176) was used in immunohistochemistry on fruit fly samples at 1:1000 (fig 2f). Cell Rep (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 3a
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 3a). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig s5d
Abcam histone H3 antibody (Abcam, 1791) was used in western blot on human samples at 1:1000 (fig s5d). Nat Commun (2019) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig s5a
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig s5a). Nat Commun (2019) ncbi
domestic rabbit polyclonal
Abcam histone H3 antibody (Abcam, ab1791) was used . Cell (2019) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; Xenopus laevis; 1:100; loading ...; fig s3b
Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry on Xenopus laevis samples at 1:100 (fig s3b). Science (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 1c
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 1c). Cell Prolif (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 9
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 9). J Biol Chem (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 4a
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 4a). elife (2019) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...; fig s7c
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on mouse samples (fig s7c). Cell Rep (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig s3e
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig s3e). Cell Stem Cell (2019) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...; fig s7d
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on mouse samples (fig s7d). Cell Res (2019) ncbi
domestic rabbit polyclonal
Abcam histone H3 antibody (Abcam, ab1791) was used . Cell (2019) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse; loading ...; fig 9c
Abcam histone H3 antibody (Abcam, ab1791) was used in immunocytochemistry on mouse samples (fig 9c). Nat Commun (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 6a
  • western blot; mouse; 1:1000; loading ...; fig 1b
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 6a) and in western blot on mouse samples at 1:1000 (fig 1b). Nat Commun (2019) ncbi
domestic rabbit polyclonal
  • western blot; brewer's yeast; 1:1000; loading ...; fig 3a
Abcam histone H3 antibody (Abcam, ab5176) was used in western blot on brewer's yeast samples at 1:1000 (fig 3a). J Vis Exp (2019) ncbi
mouse monoclonal (mAbcam 24834)
  • western blot; brewer's yeast; 1:2000; loading ...; fig 3a
Abcam histone H3 antibody (Abcam, ab24834) was used in western blot on brewer's yeast samples at 1:2000 (fig 3a). J Vis Exp (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; fig 1m
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 1m). Cell (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; fig 5b
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 5b). Nat Commun (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig s4e
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig s4e). Science (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 2f
Abcam histone H3 antibody (Abcam, AB4729) was used in ChIP-Seq on mouse samples (fig 2f). Nat Commun (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:2000; loading ...; fig 6e
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:2000 (fig 6e). Nat Commun (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:20,000; loading ...; fig s5
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:20,000 (fig s5). J Biol Chem (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:10,000; loading ...; fig 1f, 1g
  • western blot; human; 1:10,000; loading ...; fig 1a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:10,000 (fig 1f, 1g) and in western blot on human samples at 1:10,000 (fig 1a). Nature (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig s1b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig s1b). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 2
Abcam histone H3 antibody (abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 2). Nucleic Acids Res (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig s4b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:1000 (fig s4b). J Clin Invest (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 4h
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 4h). Nature (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a, 6a, 6b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 2a, 6a, 6b). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2e
Abcam histone H3 antibody (Abcam, 1791) was used in western blot on human samples (fig 2e). Cell Death Dis (2019) ncbi
mouse monoclonal (mAbcam 24834)
  • western blot; human; 1:1000; loading ...; fig 4e
Abcam histone H3 antibody (Abcam, ab24834) was used in western blot on human samples at 1:1000 (fig 4e). Cell Death Differ (2019) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - frozen section; mouse; loading ...; fig s6
Abcam histone H3 antibody (Abcam, ab5176) was used in immunohistochemistry - frozen section on mouse samples (fig s6). Development (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 5f
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 5f). Mol Cell Biol (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; ; loading ...; fig 3a, e4a
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples at (fig 3a, e4a). Nat Med (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 3d
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 3d). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 3e
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 3e). elife (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig s4a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig s4a). Cell (2019) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 3d
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig 3d). Cell (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:5000; loading ...; fig 3b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:5000 (fig 3b). Nucleic Acids Res (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:5000; loading ...; fig 3a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:5000 (fig 3a). J Cell Sci (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 2e
  • chromatin immunoprecipitation; mouse; loading ...; fig 5c
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 2e) and in chromatin immunoprecipitation on mouse samples (fig 5c). Nat Commun (2018) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:5000; loading ...; fig 1i
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:5000 (fig 1i). Nat Neurosci (2019) ncbi
domestic rabbit polyclonal
  • flow cytometry; mouse; loading ...; fig s1e
  • immunocytochemistry; mouse; loading ...; fig s1b
Abcam histone H3 antibody (Abcam, ab4729) was used in flow cytometry on mouse samples (fig s1e) and in immunocytochemistry on mouse samples (fig s1b). Genome Biol (2018) ncbi
domestic rabbit polyclonal
  • western blot; Human immunodeficiency virus 1; loading ...; fig s1k
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on Human immunodeficiency virus 1 samples (fig s1k). MBio (2018) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 1e
Abcam histone H3 antibody (Abcam, ab4729) was used in western blot on mouse samples (fig 1e). Cancer Discov (2019) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; fruit fly ; loading ...; fig 1a
Abcam histone H3 antibody (Abcam, ab5176) was used in immunohistochemistry on fruit fly samples (fig 1a). Neuron (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 1a, 7b
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 1a, 7b). Nucleic Acids Res (2018) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:10,000; fig 4e
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:10,000 (fig 4e). EMBO J (2019) ncbi
domestic rabbit polyclonal
  • other; mouse; loading ...; fig 5d
Abcam histone H3 antibody (Abcam, ab4729) was used in other on mouse samples (fig 5d). J Biol Chem (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:2000; loading ...; fig 1i
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:2000 (fig 1i). Nat Commun (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 5b
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 5b). Cancer Cell (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:10,000; loading ...; fig 8b
Abcam histone H3 antibody (Abcam, ab4729) was used in western blot on human samples at 1:10,000 (fig 8b). Nat Commun (2018) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...; fig 3b
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on mouse samples (fig 3b). Stem Cell Res (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 4b). Science (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:2000; loading ...; fig s10b
Abcam histone H3 antibody (Abcam, 1791) was used in western blot on human samples at 1:2000 (fig s10b). Nat Chem Biol (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:5000; loading ...; fig s3a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:5000 (fig s3a). PLoS ONE (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:5000; loading ...; fig 6f
Abcam histone H3 antibody (abcam, ab1791) was used in western blot on human samples at 1:5000 (fig 6f). Mol Syst Biol (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig 4a
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 4a). Cell (2018) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 5
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig 5). Front Immunol (2018) ncbi
domestic rabbit polyclonal
  • immunoprecipitation; human; loading ...; fig 6b
Abcam histone H3 antibody (abcam, ab4729) was used in immunoprecipitation on human samples (fig 6b). Mol Cell Biol (2018) ncbi
domestic rabbit polyclonal
  • other; human; loading ...; fig 4c
Abcam histone H3 antibody (Abcam, ab1791) was used in other on human samples (fig 4c). Cancer Cell (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:5000; fig 3a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:5000 (fig 3a). Nat Commun (2018) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; fig 1d
  • immunocytochemistry; mouse; fig 1c
Abcam histone H3 antibody (Abcam, AB47297) was used in immunocytochemistry on human samples (fig 1d) and in immunocytochemistry on mouse samples (fig 1c). Cell (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 7c
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 7c). Mol Cell (2018) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - frozen section; mouse; fig s3k
Abcam histone H3 antibody (Abcam, ab5176) was used in immunohistochemistry - frozen section on mouse samples (fig s3k). Cell (2018) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 1f
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 1f). Cell (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig 3a
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 3a). Cell (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; zebrafish ; fig s1a
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on zebrafish samples (fig s1a). Cell (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 1a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 1a). Mol Cancer Res (2018) ncbi
domestic rabbit polyclonal
  • immunoprecipitation; human; loading ...; fig 6f
Abcam histone H3 antibody (Abcam, ab1791) was used in immunoprecipitation on human samples (fig 6f). Br J Cancer (2018) ncbi
domestic rabbit polyclonal
  • western blot; Xenopus laevis; loading ...; fig 6a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on Xenopus laevis samples (fig 6a). Dev Cell (2018) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry; human; fig 4??
Abcam histone H3 antibody (Abcam, ab14955) was used in immunohistochemistry on human samples (fig 4??). Oncogenesis (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 1e
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 1e). Cancer Res (2018) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 4a
Abcam histone H3 antibody (abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig 4a). Cancer Cell (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:2000; loading ...; fig 1c
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:2000 (fig 1c). Science (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 3a
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 3a). elife (2017) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry - frozen section; mouse; 1:1000; loading ...; fig 5a
Abcam histone H3 antibody (Abcam, ab14955) was used in immunohistochemistry - frozen section on mouse samples at 1:1000 (fig 5a). Development (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig s5a
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig s5a). Proc Natl Acad Sci U S A (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 4a
Abcam histone H3 antibody (Abcam, AB4729) was used in western blot on mouse samples (fig 4a). J Clin Invest (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 4a
  • western blot; human; loading ...; fig 3b
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 4a) and in western blot on human samples (fig 3b). Cell (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 2f
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig 2f). Nat Genet (2017) ncbi
domestic rabbit polyclonal
  • western blot; fruit fly ; loading ...; tbl s2
Abcam histone H3 antibody (abcam, ab1791) was used in western blot on fruit fly samples (tbl s2). Science (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 4e
Abcam histone H3 antibody (Abcam, 4729) was used in ChIP-Seq on human samples (fig 4e). Nat Genet (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 1
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 1). Nucleic Acids Res (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 3e
  • western blot; mouse; loading ...; fig s6b
In order to investigate the involvement of acetyl-CoA synthetase in histone acetylation and hippocampal memory, Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 3e) and in western blot on mouse samples (fig s6b). Nature (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 1c
In order to investigate the involvement of acetyl-CoA synthetase in histone acetylation and hippocampal memory, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 1c). Nature (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 6b
In order to characterize pseudoexfoliation syndrome-associated genetic variants of lysyl oxidase-like 1, Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on human samples (fig 6b). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...
In order to characterize murine monocytes through transcriptome and genome analyses, Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on mouse samples . Immunity (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig s7f
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig s7f). Genes Dev (2017) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; mouse; loading ...; fig s3e
Abcam histone H3 antibody (Abcam, AB10543) was used in immunohistochemistry on mouse samples (fig s3e). Cell (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig 4g
Abcam histone H3 antibody (Abcam, 4729) was used in chromatin immunoprecipitation on mouse samples (fig 4g). J Exp Med (2017) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry - paraffin section; zebrafish ; 1:500; loading ...; fig 2 s1B
In order to assess the epithelial rearrangements responsible for the development of the hemispherical retinal neuroepithelium, Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry - paraffin section on zebrafish samples at 1:500 (fig 2 s1B). elife (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:10,000; loading ...; fig s11
In order to show that USP9X regulates centrosome biogenesis and plays a role breast carcinogenesis, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:10,000 (fig s11). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 5g
  • chromatin immunoprecipitation; mouse; loading ...; fig 4c
  • western blot; mouse; loading ...; fig 6e
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 5g), in chromatin immunoprecipitation on mouse samples (fig 4c) and in western blot on mouse samples (fig 6e). Proc Natl Acad Sci U S A (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 4b
In order to assess Cajal body distribution patterns in cell nuclei during neurogenesis, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 4b). Stem Cells Int (2017) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry - paraffin section; rat; 1:200; loading ...; fig 4a
Abcam histone H3 antibody (Abcam, Ab14955) was used in immunohistochemistry - paraffin section on rat samples at 1:200 (fig 4a). Front Neurosci (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 1
In order to investigate the function of CTCF sites in the casein locus, Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 1). Nucleic Acids Res (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; fig 2d
Abcam histone H3 antibody (Abcam, 4729) was used in ChIP-Seq on mouse samples (fig 2d). Nucleic Acids Res (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 6c
  • western blot; human; loading ...; fig s1a
Abcam histone H3 antibody (Abcam, AB1791) was used in chromatin immunoprecipitation on human samples (fig 6c) and in western blot on human samples (fig s1a). elife (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Abcam histone H3 antibody (Abcam, ab5176) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 4d
  • western blot; human; loading ...; fig 2b
In order to show that macroH2A variants aid in maintaining nuclear organization and heterochromatin architecture, Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on human samples (fig 4d) and in western blot on human samples (fig 2b). J Cell Sci (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:10,000; loading ...; tbl s3
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:10,000 (tbl s3). Science (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 9a
In order to identify sex-related factors that regulate the severity of facioscapulohumeral muscular dystrophy, Abcam histone H3 antibody (Abcam, AB1791) was used in western blot on human samples (fig 9a). J Clin Invest (2017) ncbi
domestic rabbit polyclonal
  • western blot; Dictyostelium discoideum; fig 1a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on Dictyostelium discoideum samples (fig 1a). Sci Rep (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig s3
  • western blot; human; loading ...; fig 1b
Abcam histone H3 antibody (Abcam, AB1791) was used in chromatin immunoprecipitation on human samples (fig s3) and in western blot on human samples (fig 1b). MBio (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig s6a
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig s6a). Nature (2017) ncbi
domestic rabbit monoclonal (E173)
  • immunohistochemistry; mouse; 1:300; loading ...; fig 2a
  • western blot; rat; 1:1000; loading ...; fig s3K
In order to find that that Fat4 modulates Hippo signaling and restricts hearth growth in mice, Abcam histone H3 antibody (Abcam, ab32107) was used in immunohistochemistry on mouse samples at 1:300 (fig 2a) and in western blot on rat samples at 1:1000 (fig s3K). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 4
In order to propose that a special mechanism of splicing occurs in the testis and brain whereby H2A.B.3 recruits RNA processing factors from splicing speckles, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 4). PLoS Genet (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 4e
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 4e). Nat Genet (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 6b
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 6b). J Immunol (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:10,000; loading ...; fig st1
In order to analyze the effect of CX-5461 as a G-quadruplex DNA stabilizer, Abcam histone H3 antibody (Abcam, Ab1791) was used in western blot on human samples at 1:10,000 (fig st1). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 4i
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 4i). J Exp Med (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 9b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 9b). elife (2017) ncbi
domestic rabbit polyclonal
  • immunoprecipitation; mouse; loading ...; fig 1c
  • immunoprecipitation; human; loading ...; fig 5b
Abcam histone H3 antibody (Abcam, ab1791) was used in immunoprecipitation on mouse samples (fig 1c) and in immunoprecipitation on human samples (fig 5b). Cell Rep (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 4c
Abcam histone H3 antibody (Abcam, ab4729) was used in western blot on mouse samples (fig 4c). J Clin Invest (2017) ncbi
monoclonal
  • immunocytochemistry; mouse; 1:200; loading ...; fig 3e
In order to establish that epithelial cell adhesion molecule and extracellular domain of EpCAM enhance the efficiency of OSKM reprogramming, Abcam histone H3 antibody (Abcam, ab6147) was used in immunocytochemistry on mouse samples at 1:200 (fig 3e). Sci Rep (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 1e
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 1e). J Biochem (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 6G
Abcam histone H3 antibody (Abcam, ab4729) was used in western blot on mouse samples (fig 6G). PLoS ONE (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig s2f
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig s2f). Genes Dev (2017) ncbi
rat monoclonal (HTA28)
  • immunocytochemistry; human; fig 2b
Abcam histone H3 antibody (Abcam, Ab10543) was used in immunocytochemistry on human samples (fig 2b). Cell Stem Cell (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:5000; loading ...; fig 6h
In order to establish that migration of carcinoma collectives on fibrillar fibronectin-rich matrices is achieved through alphavbeta6 and alpha9beta1 engagement, Abcam histone H3 antibody (Abcam, ab5176) was used in western blot on human samples at 1:5000 (fig 6h). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 3b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 3b). Proc Natl Acad Sci U S A (2017) ncbi
rat monoclonal (HTA28)
  • immunocytochemistry; human; 1:1000; loading ...; fig 7a
In order to study the role of Repo-Man in interphase, Abcam histone H3 antibody (Abcam, ab10543) was used in immunocytochemistry on human samples at 1:1000 (fig 7a). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 5a
In order to identify genetic regulatory sites involved in sex determination, Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 5a). Development (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...; fig s5i
In order to research the role of microRNA miR-34a in pluripotent stem cells, Abcam histone H3 antibody (Abcam, 1791) was used in chromatin immunoprecipitation on mouse samples (fig s5i). Science (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 4a). Nat Genet (2017) ncbi
mouse monoclonal (mAbcam 14955)
  • western blot; human; loading ...; fig 1j
In order to show that the deoxynucleoside triphosphate triphosphohydrolase SAM domain and HD domain 1 promotes the detoxification of intracellular cytostatic deoxycytidine analog cytarabine triphosphate pools, Abcam histone H3 antibody (Abcam, ab14955) was used in western blot on human samples (fig 1j). Nat Med (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...; fig 4a
In order to find that transcription factor LHX2 binds to distal regulatory elements of Fezf2 and Sox11, Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on mouse samples (fig 4a). J Neurosci (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 2a
In order to determine the molecular mechanisms that enable JAK2/signal transducer and activator of transcription 5 to access promoters of genes implicated in breast cancer pathogenesis, Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on human samples (fig 2a). J Biol Chem (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 2b). Mol Cancer Res (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 3b
In order to find that STAT5 activates lineage-specific and widely expressed genes through different mechanisms, Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 3b). Cell Rep (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - paraffin section; human; 1:1500; loading ...; fig 4a
  • immunoprecipitation; human; fig 2
  • western blot; human; fig 1
In order to examine histones as a potential nuclear proaggregant factor for alpha-synuclein aggregation in both apoptotic neurons and brains with alpha-synuclein pathology, Abcam histone H3 antibody (Abcam, ab1791) was used in immunohistochemistry - paraffin section on human samples at 1:1500 (fig 4a), in immunoprecipitation on human samples (fig 2) and in western blot on human samples (fig 1). Acta Neuropathol (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; thale cress; loading ...; fig 9s
Abcam histone H3 antibody (Abcam, ab1791) was used in ChIP-Seq on thale cress samples (fig 9s). Nucleic Acids Res (2017) ncbi
monoclonal
  • immunocytochemistry; mouse; 1:100; loading ...; fig s3f
Abcam histone H3 antibody (Abcam, ab6147) was used in immunocytochemistry on mouse samples at 1:100 (fig s3f). Development (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig s4a
In order to demonstrate that iPS-derived cardiomyocytes with a heterozygous GATA4-G296S missense mutation show impaired contractility, calcium handling, and metabolic activity, Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig s4a). Cell (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 1b
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig 1b). Nucleic Acids Res (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:10,000; loading ...; fig 3a
  • western blot; mouse; 1:10,000; loading ...; fig 1a
In order to elucidate how EZH2 ubiquitination contributes to castration-resistant prostate cancer, Abcam histone H3 antibody (Abcam, Ab1791) was used in western blot on human samples at 1:10,000 (fig 3a) and in western blot on mouse samples at 1:10,000 (fig 1a). Oncogene (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 3b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 3b). Stem Cell Reports (2016) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry; rat; 1:100; loading ...; fig 4a
Abcam histone H3 antibody (Abcam, ab14955) was used in immunohistochemistry on rat samples at 1:100 (fig 4a). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:100; loading ...; fig 2b
In order to use label-free quantitative shotgun proteomics to study signaling pathways in peripheral blood mononuclear cell stimulated by dexamethasone treatment, Abcam histone H3 antibody (abcam, ab1791) was used in immunocytochemistry on human samples at 1:100 (fig 2b). J Proteomics (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:15,000; loading ...; fig 6
In order to explore the role of RhoGDI3 in pancreatic ductal adenocarcinoma, Abcam histone H3 antibody (Abcam, Ab1791) was used in western blot on human samples at 1:15,000 (fig 6). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 4g
In order to demonstrate that inhibition of bromodomain and extra-terminal proteins suppresses chondrocyte differentiation and restrains bone growth, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 4g). J Biol Chem (2016) ncbi
mouse monoclonal (mAbcam 14955)
  • immunocytochemistry; mouse; 1:1000; fig s4c
Abcam histone H3 antibody (Abcam, ab14955) was used in immunocytochemistry on mouse samples at 1:1000 (fig s4c). Nat Cell Biol (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 4
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig 4). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:3000; loading ...; fig 7b
In order to investigate the role of CHCHD2 in the differentiation of human induced pluripotent stem cell, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:3000 (fig 7b). J Cell Biol (2016) ncbi
domestic rabbit polyclonal
  • western blot; rat; loading ...; fig s4a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on rat samples (fig s4a). Proc Natl Acad Sci U S A (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...; fig 4a
In order to ask if the proteasome contributes to maintaining heterochromatin integrity of pericentromeres, Abcam histone H3 antibody (Abcam, Ab1791) was used in chromatin immunoprecipitation on mouse samples (fig 4a). PLoS ONE (2016) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry - paraffin section; mouse; 1:180; loading ...; fig 5a
In order to discuss the use of a Kmt2a/Men1 double knockout mouse as a model for advanced pancreatic neuroendocrine tumor, Abcam histone H3 antibody (Abcam, Ab14955) was used in immunohistochemistry - paraffin section on mouse samples at 1:180 (fig 5a). Cancer Biol Ther (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - paraffin section; human; 1:500; loading ...; fig 6d
In order to suggest that EGFR promotes survival of prostate tumor-initiating cells and circulating tumor cells that metastasize to bone, whereas HER2 supports the growth of prostate cancer cells once they are established at metastatic sites, Abcam histone H3 antibody (Abcam, ab5176) was used in immunohistochemistry - paraffin section on human samples at 1:500 (fig 6d). Cancer Res (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 1a
In order to elucidate STAT5-based mammary-specific and universal enhancers, Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 1a). Nucleic Acids Res (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 1e
In order to explore how exercise alter p53 localization, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 1e). J Biol Chem (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...; fig 8
  • western blot; mouse; loading ...; fig 8a
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on mouse samples (fig 8) and in western blot on mouse samples (fig 8a). J Exp Med (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 3a
In order to propose that acrolein alters chromatin assembly by reacting with lysine residues of histones, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 3a). Mol Cell Biol (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 4a). Nat Genet (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 1
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 1). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on human samples . Cell (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 1d
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 1d). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; fruit fly ; 1:1000; fig 3a
In order to demonstrate that PRC1 components act as neoplastic tumor suppressors independently of PRC2 function, Abcam histone H3 antibody (Abcam, 4729) was used in ChIP-Seq on fruit fly samples at 1:1000 (fig 3a). Nat Genet (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig s4d
  • western blot; human; loading ...; fig 2f
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig s4d) and in western blot on human samples (fig 2f). Nature (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; Xenopus laevis; fig 6b
In order to explore the role of Cp110 in ciliogenesis, Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on Xenopus laevis samples (fig 6b). elife (2016) ncbi
mouse monoclonal (mAbcam 24834)
  • immunohistochemistry; human; fig 4
  • western blot; human; fig 4
In order to suggest that Tau regulates neuronal pericentromeric heterochromatin integrity, Abcam histone H3 antibody (Abcam, ab24834) was used in immunohistochemistry on human samples (fig 4) and in western blot on human samples (fig 4). Sci Rep (2016) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry; rat; 1:500; fig 2
In order to study alterations in the cell cycle using an animal model of NDE1-associated microcephaly, Abcam histone H3 antibody (Abcam, ab14955) was used in immunohistochemistry on rat samples at 1:500 (fig 2). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; zebrafish ; fig 1
In order to report that ZNF644 is a co-regulator of G9a/H3K9me2-mediated gene silencing during neuronal differentiation, Abcam histone H3 antibody (AbCam, ab1791) was used in western blot on zebrafish samples (fig 1). Stem Cell Reports (2016) ncbi
domestic rabbit polyclonal
  • immunoprecipitation; brewer's yeast; fig 3A
  • western blot; brewer's yeast; fig 3C
In order to elucidate the interaction between Eaf3/5/7, NuA4, and RNA polymerase II, Abcam histone H3 antibody (Abcam, ab1791) was used in immunoprecipitation on brewer's yeast samples (fig 3A) and in western blot on brewer's yeast samples (fig 3C). J Biol Chem (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples . Exp Mol Med (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 1k
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 1k). EMBO Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:5000; loading ...; fig s4b
In order to clarify the contribution of lysine-specific histone demethylase 1 to the generation of induced pluripotent stem cells, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:5000 (fig s4b). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; fig 2a
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 2a). Genome Biol (2016) ncbi
domestic rabbit polyclonal
  • western blot; thale cress; 1:2000; fig 5
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on thale cress samples at 1:2000 (fig 5). Front Plant Sci (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 3
Abcam histone H3 antibody (abcam, ab1791) was used in western blot on human samples (fig 3). Nucleic Acids Res (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig s5
In order to identify a role for S100P in the development of trastuzumab-resistance, Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig s5). Oncotarget (2016) ncbi
  • western blot; human; 1:2000; fig 2
Abcam histone H3 antibody (Abcam, ab33309) was used in western blot on human samples at 1:2000 (fig 2). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:10,0000; fig 1
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:10,0000 (fig 1). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; fig 3
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:1000 (fig 3). Mol Med Rep (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; roundworm ; 1:200; fig 2
Abcam histone H3 antibody (Abcam, ab1791) was used in immunocytochemistry on roundworm samples at 1:200 (fig 2). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 1c
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 1c). J Exp Med (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig 7a
  • western blot; mouse; fig 1c
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on mouse samples (fig 7a) and in western blot on mouse samples (fig 1c). J Exp Med (2016) ncbi
domestic rabbit polyclonal
  • ELISA; human; 1:5000; fig s3
  • western blot; human; fig s1
Abcam histone H3 antibody (Abcam, ab1791) was used in ELISA on human samples at 1:5000 (fig s3) and in western blot on human samples (fig s1). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig S3
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig S3). PLoS Genet (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 3b
Abcam histone H3 antibody (Abcam, 1791) was used in chromatin immunoprecipitation on human samples (fig 3b). BMC Cancer (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig 5
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 5). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2f
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 2f). Cell Death Dis (2016) ncbi
domestic rabbit monoclonal (E173)
  • western blot; human; loading ...; fig 2f
Abcam histone H3 antibody (Abcam, ab32107) was used in western blot on human samples (fig 2f). Cell Death Dis (2016) ncbi
domestic rabbit polyclonal
  • immunoprecipitation; rat; fig 3b
  • western blot; rat; fig 3b
In order to study HuR, HuB, HuC, and HuD in hippocampal CA1 neurons, Abcam histone H3 antibody (Abcam, ab1791) was used in immunoprecipitation on rat samples (fig 3b) and in western blot on rat samples (fig 3b). J Cereb Blood Flow Metab (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 5a
In order to identify super-enhancers in the mammary gland and characterize Wap, Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 5a). Nat Genet (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 5
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 5). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 2g
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig 2g). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:4000; loading ...; fig 1g
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:4000 (fig 1g). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig 2a
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on mouse samples (fig 2a). Science (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig s5
In order to assess activation of the estrogen receptor alpha by estrogen and cAMP and due to LSD1 engaging as a corepressor complex, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig s5). Nucleic Acids Res (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; fig 1b
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 1b). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 1a
  • western blot; human; loading ...; fig 1b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 1a) and in western blot on human samples (fig 1b). Nature (2016) ncbi
domestic rabbit polyclonal
  • western blot; brewer's yeast; fig 5
In order to learn the requirement for two-step SUMO regulation dependent on Smc5/6 and Sgs1's role in HJ dissolution, crossover suppression and DNA end resection, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on brewer's yeast samples (fig 5). Genes Dev (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; thale cress; fig 5
In order to study the interaction of LHP1 to repress KNOX genes in arabidopsis with transcription factors AS1 and AS2, Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on thale cress samples (fig 5). J Integr Plant Biol (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 5
Abcam histone H3 antibody (Abcam, ab5168) was used in chromatin immunoprecipitation on human samples (fig 5). Mol Endocrinol (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:5000; fig 2
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:5000 (fig 2). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; fig 1
Abcam histone H3 antibody (Abcam, an1791) was used in western blot on mouse samples at 1:1000 (fig 1). PLoS Genet (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse; fig 2
In order to study the repair by gamma-irradiated quiescent cells on directly induced double-strand breaks but accumulate persistent double-strand breaks during subsequent DNA replication, Abcam histone H3 antibody (Abcam, ab1791) was used in immunocytochemistry on mouse samples (fig 2). Genes Cells (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4d
Abcam histone H3 antibody (abcam, ab62642) was used in western blot on human samples (fig 4d). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; chicken; fig 3
In order to study promotion of IgV gene diversification by enhancing formation of AID-accessible single-stranded DNA by histone H3.3, Abcam histone H3 antibody (Abcam, ab1791) was used in ChIP-Seq on chicken samples (fig 3). EMBO J (2016) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry - frozen section; human; 1:1000; loading ...; fig s3b
In order to examine Sonic hedgehog signaling in the human fetal neocortex, Abcam histone H3 antibody (Abcam, 14955) was used in immunohistochemistry - frozen section on human samples at 1:1000 (fig s3b). Nat Neurosci (2016) ncbi
domestic rabbit polyclonal
  • western blot; chicken; fig 1
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on chicken samples (fig 1). Biochem J (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 2
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 2). Mol Biol Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 2b). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 4
  • western blot; human; fig 4
Abcam histone H3 antibody (Abcam, Ab-1791) was used in chromatin immunoprecipitation on human samples (fig 4) and in western blot on human samples (fig 4). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; loading ...; fig 3b
In order to investigate the differentiated vs stem-like properties of cancer cells., Abcam histone H3 antibody (Abcam, ab1791) was used in immunocytochemistry on human samples (fig 3b). Breast Dis (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig s6b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig s6b). Science (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 4
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on human samples (fig 4). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; fission yeast; fig 1e
Abcam histone H3 antibody (Abcam, 1791) was used in chromatin immunoprecipitation on fission yeast samples (fig 1e). elife (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig 6
Abcam histone H3 antibody (Abcam, ab62642) was used in chromatin immunoprecipitation on mouse samples (fig 6). Nucleic Acids Res (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples . J Cell Sci (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 5
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 5). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 1
Abcam histone H3 antibody (abcam, ab1791) was used in western blot on human samples (fig 1). Int J Mol Sci (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on mouse samples . Biol Open (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 3
In order to study the impact of 2,3,7,8-tetrachlorodibenzo-p-dioxin on cellular respiration and the mitochondrial proteome and mitochondrial-targeted aryl hydrocarbon receptor, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 3). Toxicol Appl Pharmacol (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig 1
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 1). Cancer Discov (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:10,000; fig 1
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:10,000 (fig 1). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; fig 5
In order to study growth arrest-specific-2 upregulation in recurrent colorectal cancer and its susceptibility to chemotherapy in a model cell system, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:1000 (fig 5). Biochim Biophys Acta (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig 8
In order to demonstrate that chemical inhibition of HDAC1/2 induces gamma-globin and propose a role for the GATA2 gene in this process, Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 8). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; fig s8
  • western blot; mouse; 1:1000; fig 7
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:1000 (fig s8) and in western blot on mouse samples at 1:1000 (fig 7). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; 1:300; fig 7b
Abcam histone H3 antibody (Abcam, AB4729) was used in chromatin immunoprecipitation on mouse samples at 1:300 (fig 7b). BMC Biol (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; rat; fig 3
Abcam histone H3 antibody (abcam, ab62642) was used in immunohistochemistry on rat samples (fig 3). Physiol Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 2
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 2). Biochem J (2016) ncbi
domestic rabbit monoclonal (EP1702Y)
  • immunocytochemistry; human; loading ...; fig 3
Abcam histone H3 antibody (Abcam, AB78351) was used in immunocytochemistry on human samples (fig 3). Nucleic Acids Res (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; fig s7
In order to study melanoma addiction to RNA SAMMSON long non-coding region, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:1000 (fig s7). Nature (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig 3e
Abcam histone H3 antibody (Abcam, 4729) was used in chromatin immunoprecipitation on mouse samples (fig 3e). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig 5c
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on mouse samples (fig 5c). BMC Biol (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 2
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig 2). Nucleus (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:5000; fig 1a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:5000 (fig 1a). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; fruit fly ; 1:1000; fig 7
In order to analyze global pertubing of chromatin O-GlcNAcylation after drosophila O-GlcNAcase deletion, Abcam histone H3 antibody (Abcam, ab4729) was used in western blot on fruit fly samples at 1:1000 (fig 7). J Biol Chem (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig s8
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on mouse samples (fig s8). elife (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:2000; fig 6
In order to study APC/C(Cdh1) function, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:2000 (fig 6). Nucleic Acids Res (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; fig 1
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 1). Dev Cell (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; thale cress; fig 3
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on thale cress samples (fig 3). Epigenetics Chromatin (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig s2d
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on mouse samples (fig s2d). Nucleic Acids Res (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:2000; fig 7
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:2000 (fig 7). elife (2016) ncbi
  • immunoprecipitation; human; fig 1
  • immunocytochemistry; human; fig 1
  • western blot; human; fig 1
  • immunocytochemistry; roundworm ; fig 2
In order to examine how histone H3 threonine 118 alters chromosome structure, Abcam histone H3 antibody (Abcam, ab33310) was used in immunoprecipitation on human samples (fig 1), in immunocytochemistry on human samples (fig 1), in western blot on human samples (fig 1) and in immunocytochemistry on roundworm samples (fig 2). elife (2016) ncbi
domestic rabbit polyclonal
  • immunoprecipitation; human; fig 1
  • western blot; human; fig 1
In order to examine how histone H3 threonine 118 alters chromosome structure, Abcam histone H3 antibody (Abcam, ab1791) was used in immunoprecipitation on human samples (fig 1) and in western blot on human samples (fig 1). elife (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig s8
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig s8). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 1
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 1). Nat Commun (2016) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry - frozen section; mouse; fig 2
In order to elucidate the requirement for atypical protein kinase c-dependent polarized cell division in myocardial trabeculation, Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry - frozen section on mouse samples (fig 2). Cell Rep (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; fig 2
In order to analyze the DUSP family members and their differential roles in epithelial to mesenchymal transition and cancer stem cell regulation in breast cancer, Abcam histone H3 antibody (Abcam, ab4729) was used in immunocytochemistry on human samples (fig 2). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; brewer's yeast; fig 5
  • western blot; brewer's yeast; fig 5
Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on brewer's yeast samples (fig 5) and in western blot on brewer's yeast samples (fig 5). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • western blot; Candida tropicalis; 1:2500; fig s1b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on Candida tropicalis samples at 1:2500 (fig s1b). PLoS Genet (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 2a
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 2a). Nucleic Acids Res (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 3c
In order to investigate how alpha-synuclein aggregates form and spread to other cells, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 3c). Acta Neuropathol (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig 4
Abcam histone H3 antibody (Abcam, ab1791) was used in ChIP-Seq on human samples (fig 4). Genes Dev (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig 2
In order to investigate Tead4-mediated transcriptional networks in various types of cancer cells, Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 2). Cell Rep (2016) ncbi
domestic rabbit monoclonal (E173)
  • immunohistochemistry; fruit fly ; 1:1000; fig 2
Abcam histone H3 antibody (Abcam, ab32107) was used in immunohistochemistry on fruit fly samples at 1:1000 (fig 2). Dis Model Mech (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig s5
Abcam histone H3 antibody (abcam, ab1791) was used in western blot on mouse samples (fig s5). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:5000; fig 3
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples at 1:5000 (fig 3). elife (2016) ncbi
domestic rabbit polyclonal
  • western blot; bovine; 1:1000; fig 1
In order to study how the IL6R/STAT3 signaling pathway regulates IL-8 production by primary endometrial cells in response to lipopolysaccharide treatment, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on bovine samples at 1:1000 (fig 1). Mucosal Immunol (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 3
In order to investigate the role of topoisomerase IIbeta-binding protein 1 in DNA repair and its contribution to cancer, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 3). J Cell Biol (2016) ncbi
domestic rabbit polyclonal
  • western blot; fruit fly ; 1:5000; loading ...; fig 4c
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on fruit fly samples at 1:5000 (fig 4c). Mol Cell Proteomics (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; hamsters; fig 7
Abcam histone H3 antibody (Abcam, ab62642) was used in chromatin immunoprecipitation on hamsters samples (fig 7). BMC Biotechnol (2016) ncbi
domestic rabbit polyclonal
  • western blot; Entamoeba histolytica; 1:5000; fig 1
  • western blot; bovine; 1:5000; fig 1
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on Entamoeba histolytica samples at 1:5000 (fig 1) and in western blot on bovine samples at 1:5000 (fig 1). Parasit Vectors (2016) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry; rat; fig 1
In order to categorize sequential and independent roles for KIF1A kinesin, Abcam histone H3 antibody (Abcam, ab14955) was used in immunohistochemistry on rat samples (fig 1). Nat Neurosci (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; tbl  s3
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (tbl  s3). PLoS Pathog (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig e3
In order to study triple-negative breast cancer and BET bromodomain inhibitor response and resistance, Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig e3). Nature (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig 4
In order to determine a therapeutic strategy to target the IRF4 network in multiple myeloma by using the bromodomain inhibition of the transcriptional coactivators CBP/EP300, Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on human samples (fig 4). elife (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:2000; fig 7
In order to study how nuclear corepressor 1 contributes to cancer, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:2000 (fig 7). Proc Natl Acad Sci U S A (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 1b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 1b). Oncogenesis (2016) ncbi
mouse monoclonal (mAbcam 14955)
  • flow cytometry; mouse; fig 7a
Abcam histone H3 antibody (Abcam, ab14955) was used in flow cytometry on mouse samples (fig 7a). Mol Cell Biol (2015) ncbi
domestic rabbit polyclonal
  • ELISA; Austrofundulus limnaeus; 1:1000; loading ...; fig s2
  • western blot; Austrofundulus limnaeus; loading ...; fig s1b
In order to analyze chromatin in vertebrate embryo diapause, Abcam histone H3 antibody (Abcam, ab1791) was used in ELISA on Austrofundulus limnaeus samples at 1:1000 (fig s2) and in western blot on Austrofundulus limnaeus samples (fig s1b). J Exp Biol (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 1a
Abcam histone H3 antibody (Abcam, 1791) was used in western blot on human samples at 1:1000 (fig 1a). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:5000; fig 1
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples at 1:5000 (fig 1). Mol Cell Biol (2016) ncbi
monoclonal
  • western blot; human; fig 2
Abcam histone H3 antibody (Abcam, ab6147) was used in western blot on human samples (fig 2). Oncotarget (2015) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig 2a
Abcam histone H3 antibody (abcam, ab1791) was used in chromatin immunoprecipitation on mouse samples (fig 2a). Nucleic Acids Res (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 3g
Abcam histone H3 antibody (Abcam, ab4729) was used in western blot on mouse samples (fig 3g). Mol Cell Biol (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 3g
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on mouse samples (fig 3g). Mol Cell Biol (2016) ncbi
domestic rabbit polyclonal
  • western blot; thale cress; fig 2
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on thale cress samples (fig 2). Plant Physiol (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; fission yeast; fig 5c
  • western blot; fission yeast; fig 2d
In order to determine how global nucleosome occupancy and organisation are maintained by Abo1, a conserved bromodomain AAA-ATPase, Abcam histone H3 antibody (Abcam, ab1791) was used in chromatin immunoprecipitation on fission yeast samples (fig 5c) and in western blot on fission yeast samples (fig 2d). EMBO Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 6
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 6). Nucleic Acids Res (2016) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry; American tobacco; 1:200; fig 4
In order to study how chromosomal changes contribute to cytomixis, Abcam histone H3 antibody (Abcam, 14955) was used in immunohistochemistry on American tobacco samples at 1:200 (fig 4). Front Plant Sci (2015) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; fig 3
Abcam histone H3 antibody (Abcam, ab4729) was used in ChIP-Seq on mouse samples (fig 3). Nucleic Acids Res (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 3
In order to study how the Fanconi anemia pathway promotes homologous recombination at stalled replication forks, Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 3). Nucleic Acids Res (2016) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry; mouse; loading ...; fig 1i, j
Abcam histone H3 antibody (abcam, ab14955) was used in immunohistochemistry on mouse samples (fig 1i, j). elife (2015) ncbi
domestic rabbit polyclonal
Abcam histone H3 antibody (Abcam, ab1791) was used . Mol Cell Biol (2015) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; mouse; 1:1000; fig 3
In order to analyze regulation of radial glial scaffold development by FstI1, Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry on mouse samples at 1:1000 (fig 3). Mol Brain (2015) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 3c
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 3c). Oncogene (2016) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry; mouse; 1:3000; fig s13c
In order to elucidate how the epithelial-to-mesenchymal transition of tubular epithelial cells contributes to kidney fibrosis, Abcam histone H3 antibody (Abcam, ab14955) was used in immunohistochemistry on mouse samples at 1:3000 (fig s13c). Nat Med (2015) ncbi
mouse monoclonal (mAbcam 14955)
  • western blot; human; fig 4
Abcam histone H3 antibody (Abcam, ab14955) was used in western blot on human samples (fig 4). Mol Biol Cell (2015) ncbi
domestic rabbit polyclonal
Abcam histone H3 antibody (Abcam, ab4729) was used . Leukemia (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 3b
Abcam histone H3 antibody (Abcam, ab1791) was used in western blot on human samples (fig 3b). Cell Death Differ (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 5
Abcam histone H3 antibody (Abcam, ab4729) was used in chromatin immunoprecipitation on human samples (fig 5). Oncogene (2016) ncbi
domestic rabbit monoclonal (E191)
  • immunohistochemistry - paraffin section; mouse; 1:300; fig e2
In order to assess mutp53 as a cancer-specific drug target, Abcam histone H3 antibody (Abcam, ab32388) was used in immunohistochemistry - paraffin section on mouse samples at 1:300 (fig e2). Nature (2015) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry; mouse; 1:600; loading ...; fig 5l
Abcam histone H3 antibody (Abcam, ab14955) was used in immunohistochemistry on mouse samples at 1:600 (fig 5l). PLoS ONE (2015) ncbi
mouse monoclonal (mAbcam 14955)
  • immunocytochemistry; human; 1:2000; fig 5
Abcam histone H3 antibody (Abcam, ab14955) was used in immunocytochemistry on human samples at 1:2000 (fig 5). Mol Biol Cell (2015) ncbi
domestic rabbit polyclonal
Abcam histone H3 antibody (Abcam, ab1791) was used . Mol Cell Biol (2015) ncbi
mouse monoclonal (mAbcam 14955)
  • flow cytometry; human; fig 1
Abcam histone H3 antibody (Abcam, ab14955) was used in flow cytometry on human samples (fig 1). J Cell Biochem (2015) ncbi
mouse monoclonal (mAbcam 14955)
  • western blot; human; 1:5000; fig s7
In order to determine how PAXX interacts with Ku to promote DNA double-strand break repair, Abcam histone H3 antibody (Abcam, ab14955) was used in western blot on human samples at 1:5000 (fig s7). Science (2015) ncbi
mouse monoclonal (mAbcam 14955)
  • ELISA; human
Abcam histone H3 antibody (Abcam, 14955) was used in ELISA on human samples . Theranostics (2015) ncbi
domestic rabbit monoclonal (E173)
  • immunocytochemistry; domestic sheep; 1:500; loading ...; fig 3a
In order to study the reprogramming of ovine induced pluripotent stem cells, Abcam histone H3 antibody (Abcam, ab32107) was used in immunocytochemistry on domestic sheep samples at 1:500 (fig 3a). Cell Reprogram (2015) ncbi
domestic rabbit monoclonal (E173)
  • immunohistochemistry; human; 1:100; fig 1
In order to determine how cardiomyocyte differentiation from human muscle derived stem cells due to combined soluble and biophysical factor modulation, Abcam histone H3 antibody (Abcam, ab32107) was used in immunohistochemistry on human samples at 1:100 (fig 1). Sci Rep (2014) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry; zebrafish ; 1:1000
In order to investigate the roles of Lhx3 and its paralog Lhx4 in the development of motoneurons and ventral interneurons, Abcam histone H3 antibody (Abcam, ab14955) was used in immunohistochemistry on zebrafish samples at 1:1000. Development (2014) ncbi
mouse monoclonal (mAbcam 14955)
  • western blot; human; 1:5000; fig 2
Abcam histone H3 antibody (Abcam, 14955) was used in western blot on human samples at 1:5000 (fig 2). Nat Commun (2014) ncbi
domestic rabbit polyclonal
Abcam histone H3 antibody (Abcam, Ab1791) was used . Nat Commun (2014) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry - frozen section; mouse; 1:200
In order to investigate the relationships among abnormal spindle orientations, ectopic progenitors, and severe heterotopia in mouse and human, Abcam histone H3 antibody (Abcam, AB10543) was used in immunohistochemistry - frozen section on mouse samples at 1:200. Nat Neurosci (2014) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry - paraffin section; mouse
Abcam histone H3 antibody (Abcam, ab14955) was used in immunohistochemistry - paraffin section on mouse samples . Exp Toxicol Pathol (2014) ncbi
mouse monoclonal (mAbcam 14955)
  • immunocytochemistry; human
  • western blot; human
Abcam histone H3 antibody (Abcam, ab14955) was used in immunocytochemistry on human samples and in western blot on human samples . Cell Cycle (2014) ncbi
domestic rabbit monoclonal (E191)
  • western blot; human
Abcam histone H3 antibody (Abcam, ab32388) was used in western blot on human samples . J Biol Chem (2013) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; mouse
Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry on mouse samples . Neural Dev (2013) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry - frozen section; mouse; 1:200
Abcam histone H3 antibody (Abcam, ab10543) was used in immunohistochemistry - frozen section on mouse samples at 1:200. Development (2013) ncbi
domestic rabbit polyclonal
Abcam histone H3 antibody (Abcam, ab5176) was used . Dev Biol (2013) ncbi
mouse monoclonal (mAbcam 14955)
  • immunohistochemistry - frozen section; mouse; 1:200
Abcam histone H3 antibody (Abcam, Ab14955) was used in immunohistochemistry - frozen section on mouse samples at 1:200. Dev Biol (2012) ncbi
Active Motif
mouse monoclonal (MABI 0319)
  • ChIP-Seq; mouse; loading ...; fig 4c
  • chromatin immunoprecipitation; mouse; loading ...; fig 4e
  • western blot; mouse; 1:1000; loading ...; fig s4a
Active Motif histone H3 antibody (Active Motif, 61,013) was used in ChIP-Seq on mouse samples (fig 4c), in chromatin immunoprecipitation on mouse samples (fig 4e) and in western blot on mouse samples at 1:1000 (fig s4a). iScience (2022) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 1f
Active Motif histone H3 antibody (Active Motif, 39133) was used in ChIP-Seq on mouse samples (fig 1f). Nat Commun (2021) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; 1:1000; fig 1a
Active Motif histone H3 antibody (Active Motif, 39133) was used in chromatin immunoprecipitation on mouse samples at 1:1000 (fig 1a). Nat Commun (2021) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; 1:250; fig 1a
Active Motif histone H3 antibody (Active Motif, 39297) was used in chromatin immunoprecipitation on mouse samples at 1:250 (fig 1a). Nat Commun (2021) ncbi
mouse monoclonal (MABI 0323)
  • western blot; human; 1:1000; loading ...; fig 3b
  • chromatin immunoprecipitation; mouse; loading ...; fig 4d
  • western blot; mouse; 1:1000; loading ...; fig 4b
Active Motif histone H3 antibody (Active Motif, 61017) was used in western blot on human samples at 1:1000 (fig 3b), in chromatin immunoprecipitation on mouse samples (fig 4d) and in western blot on mouse samples at 1:1000 (fig 4b). Neurooncol Adv (2021) ncbi
mouse monoclonal (MABI 0319)
  • chromatin immunoprecipitation; human; fig s4b
  • western blot; human; fig 4a, 4b, 4c
Active Motif histone H3 antibody (Active Motif, 61013) was used in chromatin immunoprecipitation on human samples (fig s4b) and in western blot on human samples (fig 4a, 4b, 4c). PLoS Pathog (2021) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 4d
  • western blot; human; fig 4a, 4b, 4c
Active Motif histone H3 antibody (Active Motif, 39155) was used in chromatin immunoprecipitation on human samples (fig 4d) and in western blot on human samples (fig 4a, 4b, 4c). PLoS Pathog (2021) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 5a
Active Motif histone H3 antibody (Active Motif, 39159) was used in ChIP-Seq on human samples (fig 5a). Sci Adv (2021) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 5d
Active Motif histone H3 antibody (Active Motif, 39161) was used in chromatin immunoprecipitation on human samples (fig 5d). Bone Res (2021) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 2b
Active Motif histone H3 antibody (Active Motif, 39133) was used in ChIP-Seq on human samples (fig 2b). Genome Biol (2021) ncbi
mouse monoclonal (MABI 0309)
  • chromatin immunoprecipitation; human; fig 5c
Active Motif histone H3 antibody (Active motif, 39685) was used in chromatin immunoprecipitation on human samples (fig 5c). Nat Commun (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 1e
Active Motif histone H3 antibody (Active Motif, 39161) was used in western blot on human samples (fig 1e). Nat Cell Biol (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 3a
Active Motif histone H3 antibody (Active Motif, 39915) was used in western blot on human samples (fig 3a). Cell Death Dis (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...
Active Motif histone H3 antibody (Active Motif, 39155) was used in western blot on human samples . Theranostics (2021) ncbi
domestic rabbit polyclonal
Active Motif histone H3 antibody (Active Motif, 39155) was used . Proc Natl Acad Sci U S A (2021) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse; fig s5d
Active Motif histone H3 antibody (Active Motif, 39133) was used in immunocytochemistry on mouse samples (fig s5d). Nature (2021) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse
Active Motif histone H3 antibody (Active Motif, 39915) was used in immunocytochemistry on mouse samples . Nature (2021) ncbi
mouse monoclonal
  • chromatin immunoprecipitation; rat; loading ...; fig 9b
  • western blot; rat; loading ...; fig 1a
Active Motif histone H3 antibody (Active Motif, 39535) was used in chromatin immunoprecipitation on rat samples (fig 9b) and in western blot on rat samples (fig 1a). Theranostics (2021) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 4b
Active Motif histone H3 antibody (Active Motif, 39133) was used in chromatin immunoprecipitation on human samples (fig 4b). elife (2020) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; roundworm ; fig 2a
Active Motif histone H3 antibody (Active Motif, 39654) was used in ChIP-Seq on roundworm samples (fig 2a). elife (2020) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; roundworm ; fig 2a
Active Motif histone H3 antibody (Active Motif, 39388) was used in ChIP-Seq on roundworm samples (fig 2a). elife (2020) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig s3f
Active Motif histone H3 antibody (Active Motif, 39,155) was used in chromatin immunoprecipitation on human samples (fig s3f). Mol Cancer (2020) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 2c
Active Motif histone H3 antibody (Active Motif, 39155) was used in ChIP-Seq on mouse samples (fig 2c). Oncogene (2020) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; 1:500; loading ...; fig s7f, s7g
Active Motif histone H3 antibody (Active motif, 39297) was used in chromatin immunoprecipitation on mouse samples at 1:500 (fig s7f, s7g). Nat Commun (2020) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig 5a
Active Motif histone H3 antibody (Active Motif, 39133) was used in ChIP-Seq on human samples (fig 5a). Nat Commun (2019) ncbi
mouse monoclonal (MABI 0309)
  • chromatin immunoprecipitation; human; fig 4b
Active Motif histone H3 antibody (Active Motif, 39685) was used in chromatin immunoprecipitation on human samples (fig 4b). Nature (2019) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; fig s4d
Active Motif histone H3 antibody (Active Motif, 39765) was used in immunocytochemistry on human samples (fig s4d). Nature (2019) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig s4b
Active Motif histone H3 antibody (Active Motif, 39297) was used in chromatin immunoprecipitation on human samples (fig s4b). Nature (2019) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; fig s4d
Active Motif histone H3 antibody (Active Motif, 39155) was used in immunocytochemistry on human samples (fig s4d). Nature (2019) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; fruit fly ; 1:250; loading ...; fig 1c
Active Motif histone H3 antibody (Active Motif, 39753) was used in immunohistochemistry on fruit fly samples at 1:250 (fig 1c). elife (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig s4a
Active Motif histone H3 antibody (Active Motif, 39137) was used in ChIP-Seq on mouse samples (fig s4a). Nature (2019) ncbi
mouse monoclonal (MABI 0302)
  • immunocytochemistry; human; 1:250; loading ...; fig 1a
Active Motif histone H3 antibody (Active Motif, 39635) was used in immunocytochemistry on human samples at 1:250 (fig 1a). elife (2019) ncbi
mouse monoclonal (MABI 0323)
  • immunocytochemistry; human; 1:250; loading ...; fig 1a
Active Motif histone H3 antibody (Active Motif, 61017) was used in immunocytochemistry on human samples at 1:250 (fig 1a). elife (2019) ncbi
mouse monoclonal (MABI 0309)
  • immunocytochemistry; human; 1:250; loading ...; fig 1a
Active Motif histone H3 antibody (Active Motif, 39685) was used in immunocytochemistry on human samples at 1:250 (fig 1a). elife (2019) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:500; loading ...; fig 1a
Active Motif histone H3 antibody (Active Motif, 39133) was used in immunocytochemistry on human samples at 1:500 (fig 1a). elife (2019) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:500; loading ...; fig 1a
Active Motif histone H3 antibody (Active Motif, 39765) was used in immunocytochemistry on human samples at 1:500 (fig 1a). elife (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; ; loading ...; fig 4e
  • chromatin immunoprecipitation; mouse; ; loading ...; fig 4g
Active Motif histone H3 antibody (Active Motif, 39915) was used in ChIP-Seq on mouse samples at (fig 4e) and in chromatin immunoprecipitation on mouse samples at (fig 4g). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; Xenopus laevis; loading ...; fig 3e
Active Motif histone H3 antibody (Active Motif, 39133) was used in ChIP-Seq on Xenopus laevis samples (fig 3e). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig e4c
Active Motif histone H3 antibody (Active Motif, 61101) was used in western blot on mouse samples (fig e4c). Nature (2019) ncbi
mouse monoclonal (MABI 0301)
  • immunohistochemistry; fruit fly ; 1:100; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 39763) was used in immunohistochemistry on fruit fly samples at 1:100 (fig 2a). J Cell Biol (2019) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; fruit fly ; 1:100; loading ...; fig s2a
Active Motif histone H3 antibody (Active Motif, 39141) was used in immunohistochemistry on fruit fly samples at 1:100 (fig s2a). J Cell Biol (2019) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; fruit fly ; 1:100; loading ...; fig 2b
Active Motif histone H3 antibody (Active Motif, 39135) was used in immunohistochemistry on fruit fly samples at 1:100 (fig 2b). J Cell Biol (2019) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; loading ...; fig s7a
Active Motif histone H3 antibody (Active Motif, 39239) was used in immunocytochemistry on human samples (fig s7a). Nature (2019) ncbi
mouse monoclonal (MABI 0319)
  • immunocytochemistry; human; loading ...; fig s7a
Active Motif histone H3 antibody (Active Motif, 61013) was used in immunocytochemistry on human samples (fig s7a). Nature (2019) ncbi
domestic rabbit polyclonal
  • western blot; brewer's yeast; loading ...; fig 2d
Active Motif histone H3 antibody (Active motif, 61277) was used in western blot on brewer's yeast samples (fig 2d). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig s6b
Active Motif histone H3 antibody (Active Motif, 39133) was used in ChIP-Seq on human samples (fig s6b). Cancer Cell (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; fruit fly ; loading ...; fig 1s2h
Active Motif histone H3 antibody (Active Motif, 39161) was used in ChIP-Seq on fruit fly samples (fig 1s2h). elife (2019) ncbi
mouse monoclonal (MABI 0309)
  • other; human; loading ...; fig s7k
Active Motif histone H3 antibody (Active Motif, 39685) was used in other on human samples (fig s7k). Cell (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 4p
Active Motif histone H3 antibody (Active Motif, 39159) was used in ChIP-Seq on mouse samples (fig 4p). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 3a
Active Motif histone H3 antibody (Active Motif, 39133) was used in ChIP-Seq on human samples (fig 3a). Epigenetics Chromatin (2019) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 3c
Active Motif histone H3 antibody (Active motif, 39133) was used in chromatin immunoprecipitation on human samples (fig 3c). Nature (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 3e
Active Motif histone H3 antibody (Active Motif, 39155) was used in western blot on mouse samples (fig 3e). Mol Cell (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:500; loading ...; fig s9c
Active Motif histone H3 antibody (Active Motif, 39599) was used in western blot on mouse samples at 1:500 (fig s9c). Nat Commun (2019) ncbi
mouse monoclonal (MABI 0321)
  • ChIP-Seq; mouse; loading ...; fig 5a
  • western blot; mouse; 1:1000; loading ...; fig 1b
Active Motif histone H3 antibody (Active Motif, 61015) was used in ChIP-Seq on mouse samples (fig 5a) and in western blot on mouse samples at 1:1000 (fig 1b). Nat Commun (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 6g
Active Motif histone H3 antibody (Active Motif, 39133) was used in ChIP-Seq on mouse samples (fig 6g). Dev Biol (2019) ncbi
mouse monoclonal (MABI 0321)
  • western blot; human; 1:1000; loading ...; fig 1d
Active Motif histone H3 antibody ((Active Motif, 61015) was used in western blot on human samples at 1:1000 (fig 1d). Nat Commun (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 1h
Active Motif histone H3 antibody (Active Motif, 39163) was used in western blot on human samples (fig 1h). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 3b
Active Motif histone H3 antibody (Active Motif, 39,135) was used in ChIP-Seq on human samples (fig 3b). BMC Med Genomics (2019) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 1a
  • western blot; human; 1:1000; loading ...; fig 3f
Active Motif histone H3 antibody (Active Motif, 39155) was used in ChIP-Seq on human samples (fig 1a) and in western blot on human samples at 1:1000 (fig 3f). Nat Commun (2019) ncbi
mouse monoclonal (MABI 0323)
  • immunocytochemistry; mouse; loading ...; fig 2s1d, 3g
Active Motif histone H3 antibody (Active Motif, 61017) was used in immunocytochemistry on mouse samples (fig 2s1d, 3g). elife (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig s20a
Active Motif histone H3 antibody (Active Motif, 39155) was used in western blot on mouse samples (fig s20a). Science (2019) ncbi
mouse monoclonal (MABI 0309)
  • immunocytochemistry; mouse; 1:100; loading ...; fig 4a
Active Motif histone H3 antibody (Active Motif, 39685) was used in immunocytochemistry on mouse samples at 1:100 (fig 4a). Cell (2019) ncbi
mouse monoclonal (MABI 0309)
  • chromatin immunoprecipitation; human; loading ...; fig 7d
Active Motif histone H3 antibody (Active Motif, 39685) was used in chromatin immunoprecipitation on human samples (fig 7d). Nucleic Acids Res (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig 5a
Active Motif histone H3 antibody (Active Motif, 39159) was used in western blot on mouse samples at 1:1000 (fig 5a). Bone Res (2018) ncbi
mouse monoclonal (MABI 0323)
  • immunocytochemistry; mouse; 1:500; loading ...; fig 1a
Active Motif histone H3 antibody (Active Motif, 61017) was used in immunocytochemistry on mouse samples at 1:500 (fig 1a). Genes Dev (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 5b
Active Motif histone H3 antibody (Active Motif, 39133) was used in ChIP-Seq on human samples (fig 5b). Cancer Cell (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 5b
Active Motif histone H3 antibody (Active Motif, 39155) was used in ChIP-Seq on human samples (fig 5b). Cancer Cell (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 5b
Active Motif histone H3 antibody (Active Motif, 61101) was used in ChIP-Seq on human samples (fig 5b). Cancer Cell (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 5b
Active Motif histone H3 antibody (Active Motif, 39141) was used in ChIP-Seq on human samples (fig 5b). Cancer Cell (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 5b
Active Motif histone H3 antibody (Active Motif, 39297) was used in ChIP-Seq on human samples (fig 5b). Cancer Cell (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 5b
Active Motif histone H3 antibody (Active Motif, 39161) was used in ChIP-Seq on human samples (fig 5b). Cancer Cell (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 5b
Active Motif histone H3 antibody (Active Motif, 39159) was used in ChIP-Seq on human samples (fig 5b). Cancer Cell (2018) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...; fig 3g
Active Motif histone H3 antibody (Active Motif, 39155) was used in chromatin immunoprecipitation on mouse samples (fig 3g). Nat Commun (2018) ncbi
mouse monoclonal (MABI 0319)
  • chromatin immunoprecipitation; mouse; loading ...; fig 3f
Active Motif histone H3 antibody (Active Motif, 61013) was used in chromatin immunoprecipitation on mouse samples (fig 3f). Nat Commun (2018) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; loading ...; fig 8a
Active Motif histone H3 antibody (Active Motif, 39133) was used in chromatin immunoprecipitation on mouse samples (fig 8a). J Biol Chem (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; zebrafish ; fig s1a
Active Motif histone H3 antibody (Active Motif, 39159) was used in ChIP-Seq on zebrafish samples (fig s1a). Cell (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; zebrafish ; fig s1a
Active Motif histone H3 antibody (Active Motif, 39297) was used in ChIP-Seq on zebrafish samples (fig s1a). Cell (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; zebrafish ; fig s1a
Active Motif histone H3 antibody (Active Motif, 39155) was used in ChIP-Seq on zebrafish samples (fig s1a). Cell (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; zebrafish ; fig s1a
Active Motif histone H3 antibody (Active Motif, 39599) was used in ChIP-Seq on zebrafish samples (fig s1a). Cell (2018) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 4a
Active Motif histone H3 antibody (Active Motif, 39159) was used in ChIP-Seq on mouse samples (fig 4a). Cell Rep (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 3a
Active Motif histone H3 antibody (Active Motif, 39155) was used in ChIP-Seq on human samples (fig 3a). elife (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; loading ...; fig 3d
Active Motif histone H3 antibody (Active Motif, 39133) was used in ChIP-Seq on human samples (fig 3d). Cell Rep (2017) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse; loading ...; fig s4c
Active Motif histone H3 antibody (Active Motif, AM39155) was used in immunocytochemistry on mouse samples (fig s4c). Proc Natl Acad Sci U S A (2017) ncbi
mouse monoclonal (MABI 0303)
  • western blot; mouse; 1:1000; loading ...; fig 5f
Active Motif histone H3 antibody (Active Motif, 39679) was used in western blot on mouse samples at 1:1000 (fig 5f). Sci Rep (2017) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; fruit fly ; 1:100; loading ...; tbl s2
Active Motif histone H3 antibody (Active Motif, 39297) was used in immunohistochemistry on fruit fly samples at 1:100 (tbl s2). Science (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4e
Active Motif histone H3 antibody (Active Motif, 39133) was used in western blot on human samples (fig 4e). Sci Adv (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4e
Active Motif histone H3 antibody (Active Motif, 39915) was used in western blot on human samples (fig 4e). Sci Adv (2017) ncbi
mouse monoclonal (MABI 0301)
  • western blot; human; loading ...; fig 5b
Active Motif histone H3 antibody (Active Motif, 39763) was used in western blot on human samples (fig 5b). J Biol Chem (2017) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; loading ...; fig 4b
Active Motif histone H3 antibody (Active Motif, 39281) was used in immunocytochemistry on human samples (fig 4b). EBioMedicine (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 6e
  • western blot; human; loading ...; fig 6b
In order to study the role of ACK1/TNK2 in histone H4 Tyr88-phosphorylation and androgen receptor expression in prostate cancer, Active Motif histone H3 antibody (Active Motif, 39915) was used in chromatin immunoprecipitation on human samples (fig 6e) and in western blot on human samples (fig 6b). Cancer Cell (2017) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:500; loading ...; fig 5b
In order to identify the elementary structural units of the DNA damage response, Active Motif histone H3 antibody (Active Motif, 39161) was used in immunocytochemistry on human samples at 1:500 (fig 5b). Nat Commun (2017) ncbi
mouse monoclonal (MABI 0309)
  • chromatin immunoprecipitation; mouse; fig 8d
Active Motif histone H3 antibody (Active Motif, 39685) was used in chromatin immunoprecipitation on mouse samples (fig 8d). Dev Cell (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig s9f
  • ChIP-Seq; human; loading ...; fig s9b
In order to define the transcriptional network specifies conferring microglia identity, Active Motif histone H3 antibody (Active Motif, 39135) was used in ChIP-Seq on mouse samples (fig s9f) and in ChIP-Seq on human samples (fig s9b). Science (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 39381) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 39131) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 39765) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 39915) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 39917) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 39379) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 39133) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 39697) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 39755) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
mouse monoclonal (12.1)
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 61061) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2b
Active Motif histone H3 antibody (Active Motif, 39139) was used in western blot on human samples (fig 2b). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 39155) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 1b
In order to research the role of PRC2 in the differentiation of pluripotent stem cells, Active Motif histone H3 antibody (Active motif, 39155) was used in ChIP-Seq on mouse samples (fig 1b). Cell Stem Cell (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 1b
In order to research the role of PRC2 in the differentiation of pluripotent stem cells, Active Motif histone H3 antibody (Active motif, 39297) was used in ChIP-Seq on mouse samples (fig 1b). Cell Stem Cell (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 1b
In order to research the role of PRC2 in the differentiation of pluripotent stem cells, Active Motif histone H3 antibody (Active motif, 39159) was used in ChIP-Seq on mouse samples (fig 1b). Cell Stem Cell (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 1b
In order to research the role of PRC2 in the differentiation of pluripotent stem cells, Active Motif histone H3 antibody (Active motif, 39133) was used in ChIP-Seq on mouse samples (fig 1b). Cell Stem Cell (2017) ncbi
mouse monoclonal (MABI 0332)
  • immunohistochemistry; roundworm ; 1:200; loading ...; fig 6b
In order to find that JMJD-5 regulates lysine 36 of histone 3 di-methylation and is required at late stages of double strand break repair mediated by homologous recombination, Active Motif histone H3 antibody (Active Motif, 61019) was used in immunohistochemistry on roundworm samples at 1:200 (fig 6b). PLoS Genet (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 6a
Active Motif histone H3 antibody (Active Motif, 39599) was used in western blot on human samples (fig 6a). Nucleic Acids Res (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 6a
Active Motif histone H3 antibody (Active Motif, 39281) was used in western blot on human samples (fig 6a). Nucleic Acids Res (2017) ncbi
domestic rabbit polyclonal
  • western blot; brewer's yeast; 1:5000; loading ...; fig 1a
Active Motif histone H3 antibody (Active Motif, 39255) was used in western blot on brewer's yeast samples at 1:5000 (fig 1a). BMC Genomics (2017) ncbi
domestic rabbit polyclonal
  • western blot; brewer's yeast; 1:2000; loading ...; fig 1b
Active Motif histone H3 antibody (Active Motif, 39145) was used in western blot on brewer's yeast samples at 1:2000 (fig 1b). BMC Genomics (2017) ncbi
domestic rabbit polyclonal
  • western blot; brewer's yeast; 1:5000; loading ...; fig 1a
Active Motif histone H3 antibody (Active Motif, 39913) was used in western blot on brewer's yeast samples at 1:5000 (fig 1a). BMC Genomics (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; brewer's yeast; loading ...; fig s2a
  • western blot; brewer's yeast; loading ...; fig 1a
Active Motif histone H3 antibody (Active Motif, 39159) was used in chromatin immunoprecipitation on brewer's yeast samples (fig s2a) and in western blot on brewer's yeast samples (fig 1a). BMC Genomics (2017) ncbi
domestic rabbit polyclonal
  • western blot; brewer's yeast; loading ...; fig 1a
Active Motif histone H3 antibody (Active Motif, 39163) was used in western blot on brewer's yeast samples (fig 1a). BMC Genomics (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 3f
  • western blot; human; loading ...; fig 3a
Active Motif histone H3 antibody (Active Motif, 39133) was used in chromatin immunoprecipitation on human samples (fig 3f) and in western blot on human samples (fig 3a). Proc Natl Acad Sci U S A (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig s4b
In order to study the role of Repo-Man in interphase, Active Motif histone H3 antibody (Active Motif, 39163) was used in western blot on human samples at 1:1000 (fig s4b). Nat Commun (2017) ncbi
mouse monoclonal
  • proximity ligation assay; human; loading ...; fig 4e
  • immunocytochemistry; human; 1:500; loading ...; fig 3e
In order to study the role of Repo-Man in interphase, Active Motif histone H3 antibody (Active Motif, 39535) was used in proximity ligation assay on human samples (fig 4e) and in immunocytochemistry on human samples at 1:500 (fig 3e). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 5a
Active Motif histone H3 antibody (Active Motif, 39137) was used in ChIP-Seq on mouse samples (fig 5a). Biochim Biophys Acta Gene Regul Mech (2017) ncbi
mouse monoclonal (MABI 0333)
  • western blot; human; loading ...; fig 4a
Active Motif histone H3 antibody (Active Motif, 61021) was used in western blot on human samples (fig 4a). Nat Genet (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 3e
In order to examine the role of metabolism in lymphatic development, Active Motif histone H3 antibody (Active Motif, 39139) was used in western blot on human samples (fig 3e). Nature (2017) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse; 1:100; loading ...; fig s3f
Active Motif histone H3 antibody (Active Motif, 39377) was used in immunocytochemistry on mouse samples at 1:100 (fig s3f). Development (2017) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - paraffin section; human; loading ...; fig 1b
Active Motif histone H3 antibody (Active Motif, 39155) was used in immunohistochemistry - paraffin section on human samples (fig 1b). Nat Med (2017) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 4c
  • immunohistochemistry; human; fig s6
Active Motif histone H3 antibody (Active Motif, 39141) was used in chromatin immunoprecipitation on human samples (fig 4c) and in immunohistochemistry on human samples (fig s6). Oncogene (2017) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; mouse; 1:200; fig s5
Active Motif histone H3 antibody (Active Motif, 39155) was used in immunohistochemistry on mouse samples at 1:200 (fig s5). Nat Commun (2016) ncbi
mouse monoclonal (MABI 0309)
  • ChIP-Seq; mouse; loading ...; tbl 2
  • ChIP-Seq; human; loading ...; tbl 2
Active Motif histone H3 antibody (Active Motif, 39685) was used in ChIP-Seq on mouse samples (tbl 2) and in ChIP-Seq on human samples (tbl 2). Epigenetics Chromatin (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; 1:1000; loading ...; fig 6a
Active Motif histone H3 antibody (Active Motif, 39143) was used in chromatin immunoprecipitation on mouse samples at 1:1000 (fig 6a). Nat Cell Biol (2016) ncbi
mouse monoclonal (MABI 0333)
  • immunohistochemistry - paraffin section; human; 1:200; loading ...; fig s3
Active Motif histone H3 antibody (Active Motif, MABI-0333) was used in immunohistochemistry - paraffin section on human samples at 1:200 (fig s3). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig s2
Active Motif histone H3 antibody (Active Motif, 39159) was used in chromatin immunoprecipitation on human samples (fig s2). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 1c
In order to elucidate the mechanism by which IKAROS regulates pre-B-cell precursors, Active Motif histone H3 antibody (Active Motif, AM39297) was used in ChIP-Seq on mouse samples (fig 1c). Genes Dev (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 5
Active Motif histone H3 antibody (Active Motif, 39159) was used in chromatin immunoprecipitation on human samples (fig 5). Cell (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; fruit fly ; 1:100; fig s8c
In order to demonstrate that PRC1 components act as neoplastic tumor suppressors independently of PRC2 function, Active Motif histone H3 antibody (Active Motif, 39155) was used in chromatin immunoprecipitation on fruit fly samples at 1:100 (fig s8c). Nat Genet (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; Xenopus laevis; fig 6b
In order to explore the role of Cp110 in ciliogenesis, Active Motif histone H3 antibody (Active Motif, 39159) was used in ChIP-Seq on Xenopus laevis samples (fig 6b). elife (2016) ncbi
mouse monoclonal (MABI 0332)
  • chromatin immunoprecipitation; human; fig s9
  • western blot; human; fig 2
Active Motif histone H3 antibody (Active Motif, 61019) was used in chromatin immunoprecipitation on human samples (fig s9) and in western blot on human samples (fig 2). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 2
Active Motif histone H3 antibody (Active Motif, 39255) was used in western blot on human samples (fig 2). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:500; loading ...; fig 6b
Active Motif histone H3 antibody (Active motif, 39139) was used in western blot on human samples at 1:500 (fig 6b). Oncotarget (2016) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; mouse; fig 3a
In order to assess the effects of middle- and low-dose radiation on intestinal stem cells, Active Motif histone H3 antibody (Active Motif, 39098) was used in immunohistochemistry on mouse samples (fig 3a). Radiat Res (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 6
Active Motif histone H3 antibody (active motif, 39917) was used in chromatin immunoprecipitation on human samples (fig 6). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:1000; fig 4
In order to test if a disruption in the structure of the nucleus contributes to the development of lupus autoimmunity, Active Motif histone H3 antibody (Active Motif, 39915) was used in immunocytochemistry on human samples at 1:1000 (fig 4). Dis Model Mech (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:1000; fig 4
In order to test if a disruption in the structure of the nucleus contributes to the development of lupus autoimmunity, Active Motif histone H3 antibody (Active Motif, 39133) was used in immunocytochemistry on human samples at 1:1000 (fig 4). Dis Model Mech (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:1000; fig 4
In order to test if a disruption in the structure of the nucleus contributes to the development of lupus autoimmunity, Active Motif histone H3 antibody (Active Motif, 39137) was used in immunocytochemistry on human samples at 1:1000 (fig 4). Dis Model Mech (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; fig 5
Active Motif histone H3 antibody (Active Motif, 39135) was used in ChIP-Seq on mouse samples (fig 5). elife (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:500; tbl 1
In order to research the expression and the functions of cancer/testis-antigens in seminomas, Active Motif histone H3 antibody (Active Motif, 39139) was used in western blot on human samples at 1:500 (tbl 1). Br J Cancer (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; rat; loading ...; fig 2b
Active Motif histone H3 antibody (active motif, 39163) was used in chromatin immunoprecipitation on rat samples (fig 2b). Science (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 5d
In order to propose that the ERK-AP-1 axis is important for translating TCR signal strength into proportional activation of downstream events, Active Motif histone H3 antibody (Active Motif, 39135) was used in ChIP-Seq on mouse samples (fig 5d). elife (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; tbl 1
  • western blot; mouse; fig 6
  • western blot; Xenopus laevis; fig 1
Active Motif histone H3 antibody (Active Motif, 61101) was used in ChIP-Seq on mouse samples (tbl 1), in western blot on mouse samples (fig 6) and in western blot on Xenopus laevis samples (fig 1). PLoS Genet (2016) ncbi
domestic rabbit polyclonal
  • western blot; Xenopus laevis; fig 1
  • western blot; mouse; fig 6
Active Motif histone H3 antibody (Active Motif, 61277) was used in western blot on Xenopus laevis samples (fig 1) and in western blot on mouse samples (fig 6). PLoS Genet (2016) ncbi
domestic rabbit polyclonal
Active Motif histone H3 antibody (Active Motif, 39651) was used . Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; loading ...; fig 4
Active Motif histone H3 antibody (Activemotif, 39159) was used in ChIP-Seq on mouse samples (fig 4). PLoS ONE (2016) ncbi
mouse monoclonal (MABI 0309)
  • chromatin immunoprecipitation; human; fig 4
Active Motif histone H3 antibody (ActiveMotif, 39685) was used in chromatin immunoprecipitation on human samples (fig 4). F1000Res (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 1s2
Active Motif histone H3 antibody (Active Motif, 39155) was used in western blot on mouse samples (fig 1s2). elife (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4
Active Motif histone H3 antibody (active motif, 39163) was used in western blot on human samples (fig 4). Oncogene (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 1
Active Motif histone H3 antibody (Active Motif, 39253) was used in western blot on human samples (fig 1). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 2a
  • immunocytochemistry; human; 1:1000; fig s3d
  • western blot; human; loading ...; fig 1a
Active Motif histone H3 antibody (Active Motif, 61101) was used in chromatin immunoprecipitation on human samples (fig 2a), in immunocytochemistry on human samples at 1:1000 (fig s3d) and in western blot on human samples (fig 1a). Science (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 39281) was used in western blot on human samples (fig 2a). PLoS ONE (2016) ncbi
mouse monoclonal (12.1)
  • western blot; human; loading ...; fig 2a
Active Motif histone H3 antibody (Active Motif, 61061) was used in western blot on human samples (fig 2a). PLoS ONE (2016) ncbi
mouse monoclonal (MABI 0301)
  • western blot; human; loading ...; fig 2b
Active Motif histone H3 antibody (Active Motif, 39763) was used in western blot on human samples (fig 2b). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 1
In order to assess the necessity of S-adenosyl methionine for inhibition of the methyltransferase G9a by the lysine 9 to methionine mutation on histone H3, Active Motif histone H3 antibody (Active Motif, 39161) was used in western blot on human samples (fig 1). Proc Natl Acad Sci U S A (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 1
In order to assess the necessity of S-adenosyl methionine for inhibition of the methyltransferase G9a by the lysine 9 to methionine mutation on histone H3, Active Motif histone H3 antibody (Active Motif, 39917) was used in western blot on human samples (fig 1). Proc Natl Acad Sci U S A (2016) ncbi
mouse monoclonal (MABI 0321)
  • western blot; mouse; fig s6d
Active Motif histone H3 antibody (Active Motif, 61015) was used in western blot on mouse samples (fig s6d). Science (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig s6d
Active Motif histone H3 antibody (Active Motif, 39159) was used in western blot on mouse samples (fig s6d). Science (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig s11b
  • western blot; mouse; fig s8a
Active Motif histone H3 antibody (Active Motif, 61101) was used in chromatin immunoprecipitation on mouse samples (fig s11b) and in western blot on mouse samples (fig s8a). Science (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig 6
Active Motif histone H3 antibody (Active Motif, 61101) was used in chromatin immunoprecipitation on mouse samples (fig 6). Nucleic Acids Res (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 6
Active Motif histone H3 antibody (Active Motif, 39159) was used in chromatin immunoprecipitation on human samples (fig 6). Stem Cell Reports (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; 1:250; loading ...; fig 4c
  • western blot; human; 1:1000; loading ...; fig 4a
Active Motif histone H3 antibody (ACTIVE MOTIF, 39919) was used in ChIP-Seq on human samples at 1:250 (fig 4c) and in western blot on human samples at 1:1000 (fig 4a). J Cell Sci (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 2
Active Motif histone H3 antibody (Active Motif, 39297) was used in western blot on mouse samples (fig 2). Biol Open (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 2
Active Motif histone H3 antibody (Active Motif, 39753) was used in western blot on mouse samples (fig 2). Biol Open (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 2
Active Motif histone H3 antibody (Active Motif, 39155) was used in western blot on mouse samples (fig 2). Biol Open (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 2
Active Motif histone H3 antibody (Active Motif, 39915) was used in western blot on mouse samples (fig 2). Biol Open (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 2
Active Motif histone H3 antibody (Active Motif, 61277) was used in western blot on mouse samples (fig 2). Biol Open (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig 4b
In order to report the global transcription rates and chromatin changes that accompany the transformation process induced by MLL-ENL, Active Motif histone H3 antibody (ActiveMotif, 39159) was used in chromatin immunoprecipitation on mouse samples (fig 4b). Cell Rep (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 1
In order to identify cellular factors that bind OriP and regulate histone modification, transcription regulation, and episome maintenance, Active Motif histone H3 antibody (Active Motif, 39161) was used in chromatin immunoprecipitation on human samples (fig 1). J Virol (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 1
In order to identify cellular factors that bind OriP and regulate histone modification, transcription regulation, and episome maintenance, Active Motif histone H3 antibody (Active Motif, 39141) was used in chromatin immunoprecipitation on human samples (fig 1). J Virol (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 1
In order to identify cellular factors that bind OriP and regulate histone modification, transcription regulation, and episome maintenance, Active Motif histone H3 antibody (Active Motif, 39155) was used in chromatin immunoprecipitation on human samples (fig 1). J Virol (2016) ncbi
mouse monoclonal (MABI 0309)
  • chromatin immunoprecipitation; human; fig 1
In order to identify cellular factors that bind OriP and regulate histone modification, transcription regulation, and episome maintenance, Active Motif histone H3 antibody (Active Motif, 39685) was used in chromatin immunoprecipitation on human samples (fig 1). J Virol (2016) ncbi
mouse monoclonal
  • immunohistochemistry - frozen section; mouse; 1:100; fig s10
Active Motif histone H3 antibody (Active Motif, 39535) was used in immunohistochemistry - frozen section on mouse samples at 1:100 (fig s10). J Clin Invest (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; 1:100; fig 2
Active Motif histone H3 antibody (Active Motif, 39133) was used in chromatin immunoprecipitation on human samples at 1:100 (fig 2). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; fruit fly ; fig 1e
Active Motif histone H3 antibody (Active motif, 39156) was used in chromatin immunoprecipitation on fruit fly samples (fig 1e). PLoS Genet (2016) ncbi
domestic rabbit polyclonal
Active Motif histone H3 antibody (Active motif, 39131/39132) was used . J Biol Chem (2016) ncbi
domestic rabbit polyclonal
Active Motif histone H3 antibody (Active motif, 39565/39565) was used . J Biol Chem (2016) ncbi
domestic rabbit polyclonal
Active Motif histone H3 antibody (Active motif, 39379/39380) was used . J Biol Chem (2016) ncbi
mouse monoclonal (MABI 0301)
  • immunoprecipitation; human; fig 1
  • western blot; human; fig 1
In order to examine how histone H3 threonine 118 alters chromosome structure, Active Motif histone H3 antibody (Active Motif, 39763) was used in immunoprecipitation on human samples (fig 1) and in western blot on human samples (fig 1). elife (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 4
Active Motif histone H3 antibody (Active Motif, 39239) was used in chromatin immunoprecipitation on human samples (fig 4). Clin Epigenetics (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse; 1:800; fig 2
In order to study zygotic genome activation and maternal LSD1/KDM1A as an essential regulator of chromatin and transcription landscapes, Active Motif histone H3 antibody (ActiveMotif, 39239) was used in immunocytochemistry on mouse samples at 1:800 (fig 2). elife (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; zebrafish ; fig 1
Active Motif histone H3 antibody (Active Motif, AM#39133) was used in ChIP-Seq on zebrafish samples (fig 1). Nature (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 2
  • western blot; human; fig 7
Active Motif histone H3 antibody (Active Motif, 39143) was used in chromatin immunoprecipitation on human samples (fig 2) and in western blot on human samples (fig 7). Biochimie (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig s3s
In order to study long noncoding RNA UPAT, colon tumorigenesis, and UHRF1, Active Motif histone H3 antibody (Active motif, 39159) was used in western blot on human samples (fig s3s). Proc Natl Acad Sci U S A (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; fig 5
Active Motif histone H3 antibody (Active motif, 39159) was used in western blot on human samples at 1:1000 (fig 5). Cell Res (2016) ncbi
mouse monoclonal (MABI 0301)
  • western blot; human; fig 1
Active Motif histone H3 antibody (Active Motif, 39763) was used in western blot on human samples (fig 1). Cell Cycle (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; fig 2b
  • western blot; mouse; fig 1c
Active Motif histone H3 antibody (Active Motif, 39159) was used in ChIP-Seq on mouse samples (fig 2b) and in western blot on mouse samples (fig 1c). PLoS Genet (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig 3
Active Motif histone H3 antibody (Active Motif, 39155) was used in ChIP-Seq on human samples (fig 3). PLoS Pathog (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; human; fig 3
Active Motif histone H3 antibody (Active Motif, 39297) was used in ChIP-Seq on human samples (fig 3). PLoS Pathog (2016) ncbi
domestic rabbit polyclonal
  • ChIP-Seq; mouse; tbl  s3
Active Motif histone H3 antibody (Active Motif, 39755) was used in ChIP-Seq on mouse samples (tbl  s3). PLoS Pathog (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 3
Active Motif histone H3 antibody (Active Motif, 39133) was used in chromatin immunoprecipitation on human samples (fig 3). Nature (2016) ncbi
domestic rabbit polyclonal
  • ELISA; Austrofundulus limnaeus; 1:1000; loading ...; fig 5c
In order to analyze chromatin in vertebrate embryo diapause, Active Motif histone H3 antibody (Active Motif, 39156) was used in ELISA on Austrofundulus limnaeus samples at 1:1000 (fig 5c). J Exp Biol (2016) ncbi
domestic rabbit polyclonal
  • ELISA; Austrofundulus limnaeus; 1:1000; loading ...; fig 5f
In order to analyze chromatin in vertebrate embryo diapause, Active Motif histone H3 antibody (Active Motif, 39159) was used in ELISA on Austrofundulus limnaeus samples at 1:1000 (fig 5f). J Exp Biol (2016) ncbi
mouse monoclonal (2AG-6F12-H4)
  • immunocytochemistry; mouse; 1:100; fig 6
Active Motif histone H3 antibody (Active Motif, 39285/6) was used in immunocytochemistry on mouse samples at 1:100 (fig 6). BMC Dev Biol (2015) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 3g
Active Motif histone H3 antibody (Active Motif, 39381) was used in western blot on mouse samples (fig 3g). Mol Cell Biol (2016) ncbi
mouse monoclonal (2AG-6F12-H4)
  • immunohistochemistry; human; loading ...; fig 7a
Active Motif histone H3 antibody (Active Motif, 39285) was used in immunohistochemistry on human samples (fig 7a). Epigenetics Chromatin (2015) ncbi
domestic rabbit polyclonal
In order to study how chromosomal changes contribute to cytomixis, Active Motif histone H3 antibody (Active Motif, 39239) was used . Front Plant Sci (2015) ncbi
mouse monoclonal (MABI 0301)
  • immunocytochemistry; mouse; loading ...; fig 1b
Active Motif histone H3 antibody (Active Motif, 39763) was used in immunocytochemistry on mouse samples (fig 1b). Development (2015) ncbi
domestic rabbit polyclonal
  • western blot; human; fig s3
In order to study how the Fanconi anemia pathway promotes homologous recombination at stalled replication forks, Active Motif histone H3 antibody (Active Motif, 39585) was used in western blot on human samples (fig s3). Nucleic Acids Res (2016) ncbi
mouse monoclonal (MABI 0301)
  • proximity ligation assay; human; 1:4000; fig 2
  • immunocytochemistry; human; 1:4000; fig 2
Active Motif histone H3 antibody (Active Motif, 39763) was used in proximity ligation assay on human samples at 1:4000 (fig 2) and in immunocytochemistry on human samples at 1:4000 (fig 2). Epigenetics Chromatin (2015) ncbi
mouse monoclonal (MABI 0323)
  • immunocytochemistry; mouse; fig 8
Active Motif histone H3 antibody (Active Motif, 61017) was used in immunocytochemistry on mouse samples (fig 8). Mol Cell Biol (2015) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 1
Active Motif histone H3 antibody (Active Motif, 39163) was used in western blot on mouse samples (fig 1). Oncogene (2016) ncbi
mouse monoclonal (MABI 0319)
  • chromatin immunoprecipitation; mouse; fig 2
Active Motif histone H3 antibody (Active Motif, 61013) was used in chromatin immunoprecipitation on mouse samples (fig 2). Nat Commun (2015) ncbi
mouse monoclonal (MABI 0323)
  • chromatin immunoprecipitation; human
  • western blot; human; loading ...; fig st2
Active Motif histone H3 antibody (Active motif, 61017) was used in chromatin immunoprecipitation on human samples and in western blot on human samples (fig st2). Oncotarget (2015) ncbi
mouse monoclonal (MABI 0323)
  • chromatin immunoprecipitation; human; fig 6
Active Motif histone H3 antibody (Active Motif, 61017) was used in chromatin immunoprecipitation on human samples (fig 6). Oncotarget (2015) ncbi
mouse monoclonal (MABI 0323)
  • immunohistochemistry; mouse; fig 2a
Active Motif histone H3 antibody (Active Motif, 61017) was used in immunohistochemistry on mouse samples (fig 2a). PLoS Genet (2015) ncbi
mouse monoclonal (MABI 0301)
  • western blot; human; loading ...; fig 1b
Active Motif histone H3 antibody (Active Motif, 39763) was used in western blot on human samples (fig 1b). Cell Commun Signal (2015) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; mouse; fig 3
Active Motif histone H3 antibody (Active motif, #39139) was used in chromatin immunoprecipitation on mouse samples (fig 3). Leukemia (2016) ncbi
mouse monoclonal
  • ChIP-Seq; mouse; fig 3a
Active Motif histone H3 antibody (Active Motif, 39535) was used in ChIP-Seq on mouse samples (fig 3a). BMC Biol (2015) ncbi
mouse monoclonal (MABI 0309)
  • chromatin immunoprecipitation; human; loading ...; fig 6b,6c
Active Motif histone H3 antibody (Active Motif, 39685) was used in chromatin immunoprecipitation on human samples (fig 6b,6c). PLoS ONE (2015) ncbi
mouse monoclonal
  • chromatin immunoprecipitation; human; fig 7
Active Motif histone H3 antibody (Active Motif, 39535) was used in chromatin immunoprecipitation on human samples (fig 7). Mol Cancer (2015) ncbi
mouse monoclonal (MABI 0301)
  • chromatin immunoprecipitation; human; loading ...; fig 4f
Active Motif histone H3 antibody (Active Motif, MABI 0301) was used in chromatin immunoprecipitation on human samples (fig 4f). Am J Pathol (2015) ncbi
domestic rabbit polyclonal
  • western blot; human
In order to study how EpCAM is upregulated in HBV-mediated hepatocellular carcinoma and hepatic cancer stem cells, Active Motif histone H3 antibody (Active Motif, 61277) was used in western blot on human samples . Oncogene (2016) ncbi
mouse monoclonal (MABI 0307)
  • flow cytometry; human
Active Motif histone H3 antibody (Active Motif, 39683) was used in flow cytometry on human samples . Curr Protoc Cytom (2015) ncbi
mouse monoclonal (MABI 0301)
  • ELISA; human
Active Motif histone H3 antibody (Active Motif, 39763) was used in ELISA on human samples . Theranostics (2015) ncbi
domestic rabbit polyclonal
Active Motif histone H3 antibody (Active Motif, 39137) was used . Mol Cell Biol (2015) ncbi
mouse monoclonal (7B11)
  • western blot; mouse; fig 6
Active Motif histone H3 antibody (Active Motif, 39536) was used in western blot on mouse samples (fig 6). Nat Commun (2014) ncbi
mouse monoclonal (MABI 0304)
  • chromatin immunoprecipitation; thale cress
  • immunohistochemistry; thale cress
In order to examine the mechanism of arabidopsis MRG domain proteins in relation to two flowering time genes, Active Motif histone H3 antibody (Active Motif, 61379) was used in chromatin immunoprecipitation on thale cress samples and in immunohistochemistry on thale cress samples . Nucleic Acids Res (2014) ncbi
mouse monoclonal (MABI 0333)
  • chromatin immunoprecipitation; thale cress
  • immunohistochemistry; thale cress
In order to examine the mechanism of arabidopsis MRG domain proteins in relation to two flowering time genes, Active Motif histone H3 antibody (Active Motif, 61021) was used in chromatin immunoprecipitation on thale cress samples and in immunohistochemistry on thale cress samples . Nucleic Acids Res (2014) ncbi
mouse monoclonal (MABI 0321)
  • western blot; human; fig s9e
Active Motif histone H3 antibody (Active Motif, 61015) was used in western blot on human samples (fig s9e). Nature (2014) ncbi
mouse monoclonal
  • chromatin immunoprecipitation; human
Active Motif histone H3 antibody (Active Motif, 39535) was used in chromatin immunoprecipitation on human samples . Arch Toxicol (2014) ncbi
mouse monoclonal (MABI 0323)
  • immunocytochemistry; mouse; 1:1000; fig 1
Active Motif histone H3 antibody (Active Motif, 61017) was used in immunocytochemistry on mouse samples at 1:1000 (fig 1). Cell Rep (2014) ncbi
mouse monoclonal (MABI 0319)
  • immunocytochemistry; human
  • western blot; human
Active Motif histone H3 antibody (Active Motif, 61013) was used in immunocytochemistry on human samples and in western blot on human samples . Eur Respir J (2014) ncbi
mouse monoclonal (MABI 0301)
  • immunohistochemistry; mouse; loading ...; fig s2
  • western blot; mouse; loading ...; fig 3c
Active Motif histone H3 antibody (Active Motif, 39763) was used in immunohistochemistry on mouse samples (fig s2) and in western blot on mouse samples (fig 3c). Biochem J (2014) ncbi
mouse monoclonal (MABI 0306)
  • western blot; human
Active Motif histone H3 antibody (Active Motif, 39681) was used in western blot on human samples . Genome Res (2014) ncbi
mouse monoclonal (MABI 0307)
  • chromatin immunoprecipitation; human
  • western blot; human
Active Motif histone H3 antibody (Active Motif, 39683) was used in chromatin immunoprecipitation on human samples and in western blot on human samples . Genome Res (2014) ncbi
mouse monoclonal
  • immunohistochemistry - paraffin section; mouse; 1:200
In order to examine the role of chromatin modification in nephrogenesis, Active Motif histone H3 antibody (Active Motif, 39535) was used in immunohistochemistry - paraffin section on mouse samples at 1:200. Epigenetics (2014) ncbi
mouse monoclonal
  • immunohistochemistry; roundworm ; 1:30,000
Active Motif histone H3 antibody (Active Motif, 39535) was used in immunohistochemistry on roundworm samples at 1:30,000. Cell Rep (2012) ncbi
domestic rabbit polyclonal
Active Motif histone H3 antibody (Active Motif, 39159) was used . Proc Natl Acad Sci U S A (2012) ncbi
domestic rabbit polyclonal
Active Motif histone H3 antibody (Active Motif, 39159) was used . Dev Biol (2013) ncbi
domestic rabbit polyclonal
Active Motif histone H3 antibody (Active Motif, 39155) was used . Dev Biol (2013) ncbi
mouse monoclonal (MABI 0301)
  • chromatin immunoprecipitation; mouse
Active Motif histone H3 antibody (Active Motif, 39763) was used in chromatin immunoprecipitation on mouse samples . Mol Cell Biol (2012) ncbi
mouse monoclonal
  • chromatin immunoprecipitation; mouse
Active Motif histone H3 antibody (Active Motif, 39535) was used in chromatin immunoprecipitation on mouse samples . PLoS ONE (2012) ncbi
mouse monoclonal (MABI 0301)
  • immunocytochemistry; human; 1:200
Active Motif histone H3 antibody (Active Motif, 39763) was used in immunocytochemistry on human samples at 1:200. ACS Nano (2012) ncbi
mouse monoclonal
  • chromatin immunoprecipitation; human
Active Motif histone H3 antibody (Active Motif, 39535) was used in chromatin immunoprecipitation on human samples . PLoS ONE (2012) ncbi
mouse monoclonal
  • chromatin immunoprecipitation; human
Active Motif histone H3 antibody (Active Motif, 39535) was used in chromatin immunoprecipitation on human samples . Int J Cancer (2012) ncbi
mouse monoclonal
  • chromatin immunoprecipitation; human
Active Motif histone H3 antibody (Active Motif, 39535) was used in chromatin immunoprecipitation on human samples . J Virol (2012) ncbi
mouse monoclonal (12.1)
  • western blot; human
Active Motif histone H3 antibody (Active Motif, 61061) was used in western blot on human samples . Sci Rep (2012) ncbi
mouse monoclonal (MABI 0301)
  • immunocytochemistry; human
  • immunocytochemistry; mouse
Active Motif histone H3 antibody (Active Motif, 39763) was used in immunocytochemistry on human samples and in immunocytochemistry on mouse samples . Aging (Albany NY) (2011) ncbi
mouse monoclonal (7B11)
  • chromatin immunoprecipitation; human
Active Motif histone H3 antibody (Active Motif, 39536) was used in chromatin immunoprecipitation on human samples . Nature (2011) ncbi
mouse monoclonal
  • immunocytochemistry; mouse
Active Motif histone H3 antibody (Active Motif, 39535) was used in immunocytochemistry on mouse samples . Proc Natl Acad Sci U S A (2010) ncbi
mouse monoclonal (2AG-6F12-H4)
  • western blot; human
  • immunocytochemistry; mouse; 1:100
Active Motif histone H3 antibody (Active Motif, 39285) was used in western blot on human samples and in immunocytochemistry on mouse samples at 1:100. J Proteome Res (2010) ncbi
mouse monoclonal
Active Motif histone H3 antibody (Active Motif, 39535) was used . J Biol Chem (2010) ncbi
mouse monoclonal
  • chromatin immunoprecipitation; human
Active Motif histone H3 antibody (Active Motif, 39535) was used in chromatin immunoprecipitation on human samples . Cancer Genomics Proteomics (2010) ncbi
mouse monoclonal
  • chromatin immunoprecipitation; human; 1:100
Active Motif histone H3 antibody (Active Motif, 39535) was used in chromatin immunoprecipitation on human samples at 1:100. Mol Cancer (2009) ncbi
CovalAb
mouse monoclonal
  • immunohistochemistry - frozen section; human; fig s4a
  • immunocytochemistry; human; loading ...; fig 5f
CovalAb histone H3 antibody (Covalab, mab0072-P) was used in immunohistochemistry - frozen section on human samples (fig s4a) and in immunocytochemistry on human samples (fig 5f). Nat Commun (2018) ncbi
Abnova
mouse monoclonal (2D7-H1)
  • western blot knockout validation; mouse; 1:40; fig 4
Abnova histone H3 antibody (Abnova, 2D7-H1) was used in western blot knockout validation on mouse samples at 1:40 (fig 4). Genes Dev (2015) ncbi
Cell Signaling Technology
domestic rabbit monoclonal (D2C8)
  • western blot; human; loading ...; fig 2c
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in western blot on human samples (fig 2c). Mol Ther Oncolytics (2022) ncbi
domestic rabbit monoclonal (C36B11)
  • immunocytochemistry; human; loading ...; fig 4a
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 9733BF) was used in immunocytochemistry on human samples (fig 4a). iScience (2022) ncbi
domestic rabbit monoclonal (D1H2)
  • other; human; 1:2000; loading ...; fig 3a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in other on human samples at 1:2000 (fig 3a). Biomolecules (2022) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; fig 4a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on human samples (fig 4a). iScience (2022) ncbi
domestic rabbit monoclonal (D2B12)
  • chromatin immunoprecipitation; mouse; loading ...; fig 7c
Cell Signaling Technology histone H3 antibody (Cell Signaling, D2B12) was used in chromatin immunoprecipitation on mouse samples (fig 7c). J Exp Med (2022) ncbi
domestic rabbit monoclonal (D5A7)
  • western blot; human; 1:1000; loading ...; fig 5e, s8b
  • western blot; mouse; 1:1000; loading ...; fig 2d
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4909) was used in western blot on human samples at 1:1000 (fig 5e, s8b) and in western blot on mouse samples at 1:1000 (fig 2d). Nat Commun (2022) ncbi
domestic rabbit monoclonal (C36B11)
  • other; mouse; 1:100; loading ...; fig 1d
  • western blot; mouse; 1:1000; loading ...; fig 2d
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in other on mouse samples at 1:100 (fig 1d) and in western blot on mouse samples at 1:1000 (fig 2d). Nat Commun (2022) ncbi
domestic rabbit monoclonal (C36B11)
  • other; mouse; loading ...; fig s7i
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in other on mouse samples (fig s7i). Sci Adv (2022) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; fig 4j
  • western blot; human; loading ...; fig 4c, 6e
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in chromatin immunoprecipitation on human samples (fig 4j) and in western blot on human samples (fig 4c, 6e). Clin Transl Med (2022) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:1000; loading ...; fig s2b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:1000 (fig s2b). Cell Rep (2022) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; 1:50; loading ...; fig 6f
Cell Signaling Technology histone H3 antibody (CST, 9733s) was used in chromatin immunoprecipitation on human samples at 1:50 (fig 6f). Br J Cancer (2022) ncbi
domestic rabbit monoclonal (D2B12)
  • western blot; human; loading ...; fig 9a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4620S) was used in western blot on human samples (fig 9a). Int J Biol Sci (2022) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 9e
Cell Signaling Technology histone H3 antibody (CST, 4353) was used in chromatin immunoprecipitation on human samples (fig 9e). Int J Biol Sci (2022) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 4j
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (fig 4j). Nat Commun (2022) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; mouse; 1:50; fig 8a
  • immunohistochemistry; mouse; 1:200; loading ...; fig 5a
  • western blot; mouse; 1:1000; fig 5e
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733s) was used in chromatin immunoprecipitation on mouse samples at 1:50 (fig 8a), in immunohistochemistry on mouse samples at 1:200 (fig 5a) and in western blot on mouse samples at 1:1000 (fig 5e). elife (2022) ncbi
domestic rabbit monoclonal (C36B11)
  • ChIP-Seq; mouse; 1:50; loading ...; fig 6a
  • flow cytometry; mouse; 1:1000; loading ...; fig 6c
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in ChIP-Seq on mouse samples at 1:50 (fig 6a) and in flow cytometry on mouse samples at 1:1000 (fig 6c). elife (2022) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:1000; loading ...; fig 5d
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on mouse samples at 1:1000 (fig 5d). Nat Commun (2022) ncbi
domestic rabbit monoclonal (C36B11)
  • ChIP-Seq; mouse; loading ...; fig 6b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in ChIP-Seq on mouse samples (fig 6b). Nat Commun (2022) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; pigs ; loading ...; fig 1i
Cell Signaling Technology histone H3 antibody (CST, 4499) was used in western blot on pigs samples (fig 1i). PLoS Pathog (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 3f
Cell Signaling Technology histone H3 antibody (CST, 2650) was used in western blot on human samples (fig 3f). Theranostics (2021) ncbi
domestic rabbit monoclonal (D3B5T)
  • immunocytochemistry; human; 1:1600; loading ...; fig 1a
Cell Signaling Technology histone H3 antibody (CST, 74829) was used in immunocytochemistry on human samples at 1:1600 (fig 1a). Neurooncol Adv (2021) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:2000; fig 4i
Cell Signaling Technology histone H3 antibody (CST, 4499) was used in western blot on mouse samples at 1:2000 (fig 4i). Cell Death Dis (2021) ncbi
domestic rabbit monoclonal (C36B11)
  • ChIP-Seq; human; fig 3c
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 9733) was used in ChIP-Seq on human samples (fig 3c). Cancer Res (2021) ncbi
domestic rabbit monoclonal (D5A7)
  • western blot; human; 1:1000; loading ...; fig 3d
Cell Signaling Technology histone H3 antibody (Cell Signaling Technologies, 4909) was used in western blot on human samples at 1:1000 (fig 3d). Nat Commun (2021) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:5000; fig 7h
Cell Signaling Technology histone H3 antibody (Cell Signalling Technology, CST4499S) was used in western blot on mouse samples at 1:5000 (fig 7h). BMC Biol (2021) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; loading ...; fig 4a, s1a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on mouse samples (fig 4a, s1a). Adv Sci (Weinh) (2021) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; mouse; loading ...; fig 4a, s1a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on mouse samples (fig 4a, s1a). Adv Sci (Weinh) (2021) ncbi
domestic rabbit monoclonal (C75H12)
  • chromatin immunoprecipitation; mouse; loading ...; fig 2f
Cell Signaling Technology histone H3 antibody (Cell Signaling, 2901) was used in chromatin immunoprecipitation on mouse samples (fig 2f). Nucleic Acids Res (2021) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; mouse; loading ...; fig 2g
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in chromatin immunoprecipitation on mouse samples (fig 2g). Nucleic Acids Res (2021) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:2000; loading ...; fig 2a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:2000 (fig 2a). J Biol Chem (2021) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; 1:1000; loading ...; fig 4h
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on human samples at 1:1000 (fig 4h). BMC Cancer (2021) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:2000; loading ...; fig 5j, 5m
Cell Signaling Technology histone H3 antibody (CST, 4499) was used in western blot on human samples at 1:2000 (fig 5j, 5m). J Cell Mol Med (2021) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:2000; loading ...; fig 3g, 3h, 3k
Cell Signaling Technology histone H3 antibody (CST, 4499) was used in western blot on human samples at 1:2000 (fig 3g, 3h, 3k). J Exp Clin Cancer Res (2021) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:200; loading ...; fig 4h
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499S) was used in western blot on human samples at 1:200 (fig 4h). Sci Rep (2021) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; human; 1:200; loading ...; fig 4h
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4658S) was used in western blot on human samples at 1:200 (fig 4h). Sci Rep (2021) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; mouse; fig 5l
Cell Signaling Technology histone H3 antibody (CST, 9733S) was used in chromatin immunoprecipitation on mouse samples (fig 5l). NPJ Regen Med (2021) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; 1:1000; loading ...; fig s1b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733S) was used in western blot on human samples at 1:1000 (fig s1b). Nat Commun (2021) ncbi
domestic rabbit monoclonal (C36B11)
  • immunocytochemistry; human; 1:1000; loading ...; fig 2a
  • western blot; human; 1:1000; loading ...; fig s5a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in immunocytochemistry on human samples at 1:1000 (fig 2a) and in western blot on human samples at 1:1000 (fig s5a). Cell Stem Cell (2021) ncbi
domestic rabbit monoclonal (D4W1U)
  • western blot; human; 1:1000; loading ...; fig s5a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 13969) was used in western blot on human samples at 1:1000 (fig s5a). Cell Stem Cell (2021) ncbi
domestic rabbit monoclonal (D5A7)
  • chromatin immunoprecipitation; human; loading ...; fig 6h
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4909) was used in chromatin immunoprecipitation on human samples (fig 6h). Cell Rep (2021) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry; human; fig 3c
  • western blot; human; loading ...; fig 1h, 3b
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 9733S) was used in immunohistochemistry on human samples (fig 3c) and in western blot on human samples (fig 1h, 3b). Proc Natl Acad Sci U S A (2021) ncbi
domestic rabbit monoclonal (D4W1U)
  • western blot; mouse; loading ...; fig 1f
Cell Signaling Technology histone H3 antibody (Cell Signaling Technologies, 13969) was used in western blot on mouse samples (fig 1f). Cell Death Discov (2021) ncbi
domestic rabbit monoclonal (C75H12)
  • immunohistochemistry - paraffin section; mouse; 1:2000; loading ...; fig e2j
Cell Signaling Technology histone H3 antibody (CST, 2901) was used in immunohistochemistry - paraffin section on mouse samples at 1:2000 (fig e2j). Nature (2021) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; human; 1:1000; loading ...; fig 2b
Cell Signaling Technology histone H3 antibody (CST, 4658S) was used in western blot on human samples at 1:1000 (fig 2b). Nature (2021) ncbi
domestic rabbit monoclonal (C36B11)
  • immunocytochemistry; mouse; fig s10a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733BF) was used in immunocytochemistry on mouse samples (fig s10a). Nature (2021) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry; mouse; 1:1000; loading ...; fig 6d
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 9733) was used in immunohistochemistry on mouse samples at 1:1000 (fig 6d). Sci Rep (2021) ncbi
domestic rabbit monoclonal (D4W1U)
  • immunocytochemistry; human; loading ...; fig 2b
  • western blot; human; 1:2000; loading ...; fig 2d, 5a
Cell Signaling Technology histone H3 antibody (CST, 13969) was used in immunocytochemistry on human samples (fig 2b) and in western blot on human samples at 1:2000 (fig 2d, 5a). iScience (2021) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:2000; loading ...; fig 5a
Cell Signaling Technology histone H3 antibody (CST, 4499) was used in western blot on human samples at 1:2000 (fig 5a). iScience (2021) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; loading ...; fig 7e
Cell Signaling Technology histone H3 antibody (CST, 9733) was used in western blot on human samples (fig 7e). iScience (2021) ncbi
domestic rabbit monoclonal (D1H2)
  • immunocytochemistry; human; loading ...; fig 4c
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in immunocytochemistry on human samples (fig 4c). Antioxidants (Basel) (2021) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:1000; loading ...; fig 4b, 4e, 6c, 6g
Cell Signaling Technology histone H3 antibody (CST, 4499) was used in western blot on human samples at 1:1000 (fig 4b, 4e, 6c, 6g). Cell Death Dis (2021) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:1000; loading ...; fig 6a
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on human samples at 1:1000 (fig 6a). Front Oncol (2020) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; loading ...; fig 6b, 7d
Cell Signaling Technology histone H3 antibody (Cell Signaling, C36B11) was used in chromatin immunoprecipitation on human samples (fig 6b, 7d). J Clin Invest (2021) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; rat; 1:1000; loading ...; fig 5a
Cell Signaling Technology histone H3 antibody (Cell Signaling Technologies, 4499) was used in western blot on rat samples at 1:1000 (fig 5a). elife (2020) ncbi
domestic rabbit monoclonal (D1H2)
  • immunohistochemistry; mouse; loading ...
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in immunohistochemistry on mouse samples . Cell Rep (2020) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry; mouse; loading ...; fig 4d
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 9733) was used in immunohistochemistry on mouse samples (fig 4d). Cell Rep (2020) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:1000; loading ...; fig 6a
Cell Signaling Technology histone H3 antibody (CST, 4499) was used in western blot on mouse samples at 1:1000 (fig 6a). Theranostics (2020) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 4e
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (fig 4e). J Clin Invest (2020) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry; mouse; loading ...; fig 6c
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in immunohistochemistry on mouse samples (fig 6c). J Clin Invest (2020) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:1000; loading ...; fig e7a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on mouse samples at 1:1000 (fig e7a). Nat Metab (2020) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on human samples . J Hematol Oncol (2020) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; mouse; 1:2000; loading ...; fig s7h
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on mouse samples at 1:2000 (fig s7h). Nat Commun (2020) ncbi
domestic rabbit monoclonal (D2C8)
  • immunocytochemistry; human; 1:400; loading ...; fig s8a
Cell Signaling Technology histone H3 antibody (CST, 3377) was used in immunocytochemistry on human samples at 1:400 (fig s8a). Proc Natl Acad Sci U S A (2020) ncbi
domestic rabbit monoclonal (D4W1U)
  • immunocytochemistry; human; loading ...; fig s1g
Cell Signaling Technology histone H3 antibody (Cell Signaling, 13969) was used in immunocytochemistry on human samples (fig s1g). Cell (2020) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry - paraffin section; human; 1:200; loading ...; fig 3d
  • immunocytochemistry; human; loading ...; fig 7
Cell Signaling Technology histone H3 antibody (CST, C36B11) was used in immunohistochemistry - paraffin section on human samples at 1:200 (fig 3d) and in immunocytochemistry on human samples (fig 7). Clin Epigenetics (2020) ncbi
domestic rabbit monoclonal (D3B5T)
  • immunohistochemistry - paraffin section; mouse; 1:1600; loading ...; fig 4d
  • western blot; mouse; 1:1000; fig 7b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 74829) was used in immunohistochemistry - paraffin section on mouse samples at 1:1600 (fig 4d) and in western blot on mouse samples at 1:1000 (fig 7b). Nat Commun (2020) ncbi
domestic rabbit monoclonal (D2C8)
  • immunohistochemistry; mouse; 1:500; loading ...; fig 4b, s6e, s6g
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 3377S) was used in immunohistochemistry on mouse samples at 1:500 (fig 4b, s6e, s6g). Nature (2020) ncbi
domestic rabbit monoclonal (D2C8)
  • other; freshwater planarian; 1:3000
Cell Signaling Technology histone H3 antibody (Cell Signaling, D2C8) was used in other on freshwater planarian samples at 1:3000. elife (2020) ncbi
domestic rabbit monoclonal (D2C8)
  • immunohistochemistry - frozen section; mouse; 1:300; loading ...; fig s9h
Cell Signaling Technology histone H3 antibody (CST, 3377T) was used in immunohistochemistry - frozen section on mouse samples at 1:300 (fig s9h). Nat Commun (2020) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry - paraffin section; human; 1:200; loading ...; fig 1d
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in immunohistochemistry - paraffin section on human samples at 1:200 (fig 1d). Neurol Med Chir (Tokyo) (2020) ncbi
domestic rabbit monoclonal (D2B12)
  • chromatin immunoprecipitation; human; loading ...; fig s5c, s6a, 5d
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4620) was used in chromatin immunoprecipitation on human samples (fig s5c, s6a, 5d). Cell Rep (2019) ncbi
mouse monoclonal (1B1B2)
  • western blot; human; fig 4c
Cell Signaling Technology histone H3 antibody (Cell Signaling, 1B1B2) was used in western blot on human samples (fig 4c). Nature (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; 1:500-1:2000; loading ...; fig 5f, 6d
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on human samples at 1:500-1:2000 (fig 5f, 6d). Cell Rep (2019) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human; 1:1000; loading ...; fig 6c
Cell Signaling Technology histone H3 antibody (CST, 3377) was used in western blot on human samples at 1:1000 (fig 6c). Genes Cancer (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • flow cytometry; mouse; loading ...; fig 2n
Cell Signaling Technology histone H3 antibody (Cell Signaling, C36B11) was used in flow cytometry on mouse samples (fig 2n). Science (2019) ncbi
domestic rabbit monoclonal (D5A7)
  • flow cytometry; mouse; loading ...; fig 2n
Cell Signaling Technology histone H3 antibody (Cell Signaling, D5A7) was used in flow cytometry on mouse samples (fig 2n). Science (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • immunocytochemistry; mouse; loading ...
Cell Signaling Technology histone H3 antibody (Cell signaling, 9733) was used in immunocytochemistry on mouse samples . Nature (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; 1:50; loading ...; fig 4i
  • western blot; human; 1:1000; loading ...; fig 4a, 4c, 6a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in chromatin immunoprecipitation on human samples at 1:50 (fig 4i) and in western blot on human samples at 1:1000 (fig 4a, 4c, 6a). Oncol Rep (2019) ncbi
domestic rabbit monoclonal (D2B12)
  • chromatin immunoprecipitation; human; 1:50; loading ...; fig 3f
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4620) was used in chromatin immunoprecipitation on human samples at 1:50 (fig 3f). Oncol Rep (2019) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:1000; loading ...; fig 4b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on mouse samples at 1:1000 (fig 4b). Aging (Albany NY) (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • ChIP-Seq; Xenopus laevis; loading ...; fig 3e
Cell Signaling Technology histone H3 antibody (CST, 9733BF) was used in ChIP-Seq on Xenopus laevis samples (fig 3e). Sci Adv (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • ChIP-Seq; chicken; loading ...; fig 3a
Cell Signaling Technology histone H3 antibody (Cell signalling, C36B11) was used in ChIP-Seq on chicken samples (fig 3a). Dev Biol (2020) ncbi
mouse monoclonal (1B1B2)
  • western blot; human; loading ...; fig 5b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 14269) was used in western blot on human samples (fig 5b). Cells (2019) ncbi
domestic rabbit monoclonal (C75H12)
  • western blot; mouse; loading ...; fig 2e
Cell Signaling Technology histone H3 antibody (Cell Signaling, 2901) was used in western blot on mouse samples (fig 2e). Nature (2019) ncbi
mouse monoclonal (1B1B2)
  • western blot; human; 1:1000; loading ...; fig s3a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 14269S) was used in western blot on human samples at 1:1000 (fig s3a). Sci Adv (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; 1:1000; loading ...; fig s3d
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on human samples at 1:1000 (fig s3d). Sci Adv (2019) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:1000; loading ...; fig 5c
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on human samples at 1:1000 (fig 5c). Cancer Res (2019) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig s1h
Cell Signaling Technology histone H3 antibody (Cell Signaling, D1H2) was used in western blot on human samples (fig s1h). Cell (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • immunocytochemistry; human; 1:200; loading ...; fig 5b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in immunocytochemistry on human samples at 1:200 (fig 5b). Nucleic Acids Res (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry; mouse; 1:200; fig e10k
  • western blot; human; 1:1000; loading ...; fig 3d
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in immunohistochemistry on mouse samples at 1:200 (fig e10k) and in western blot on human samples at 1:1000 (fig 3d). Nature (2019) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 6b
Cell Signaling Technology histone H3 antibody (CST, 4499) was used in western blot on human samples (fig 6b). Oxid Med Cell Longev (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; mouse; 1:5000; loading ...; fig 4s3d
Cell Signaling Technology histone H3 antibody (Cell Signaling, C36B11) was used in western blot on mouse samples at 1:5000 (fig 4s3d). elife (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • mass cytometry; human; loading ...; fig 3a
Cell Signaling Technology histone H3 antibody (Cell Signaling Technologies, 9733) was used in mass cytometry on human samples (fig 3a). Cell (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • ChIP-Seq; mouse; loading ...; fig 5a
  • western blot; mouse; 1:1000; loading ...; fig 1b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in ChIP-Seq on mouse samples (fig 5a) and in western blot on mouse samples at 1:1000 (fig 1b). Nat Commun (2019) ncbi
domestic rabbit monoclonal (D5A7)
  • ChIP-Seq; mouse; loading ...; fig 5a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4909) was used in ChIP-Seq on mouse samples (fig 5a). Nat Commun (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; mouse; 1:1000; loading ...; fig 3a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on mouse samples at 1:1000 (fig 3a). EMBO Mol Med (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry; human; 1:200; loading ...; fig 2a
Cell Signaling Technology histone H3 antibody (CST, 9733) was used in immunohistochemistry on human samples at 1:200 (fig 2a). Nat Commun (2019) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; mouse; loading ...; fig 5a
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4658) was used in western blot on mouse samples (fig 5a). Cancer Res (2019) ncbi
domestic rabbit monoclonal (D2B12)
  • western blot; human; loading ...; fig 6c
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4620S) was used in western blot on human samples (fig 6c). Sci Adv (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; mouse; 1:2000; loading ...; fig s4h
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 9733) was used in western blot on mouse samples at 1:2000 (fig s4h). Science (2019) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:2000; loading ...; fig s16c
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on mouse samples at 1:2000 (fig s16c). Science (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • ChIP-Seq; rat; loading ...; fig 3e
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733S) was used in ChIP-Seq on rat samples (fig 3e). Nature (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • immunocytochemistry; human; loading ...; fig 4b
Cell Signaling Technology histone H3 antibody (CST, 9733) was used in immunocytochemistry on human samples (fig 4b). Life Sci Alliance (2019) ncbi
domestic rabbit monoclonal (D2C8)
  • immunohistochemistry; mouse; loading ...; fig 3f
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in immunohistochemistry on mouse samples (fig 3f). Cell Rep (2019) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig e5e
Cell Signaling Technology histone H3 antibody (CST, 4499) was used in western blot on human samples (fig e5e). Nature (2019) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 5b
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on human samples (fig 5b). Mol Cell (2019) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 6h
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (fig 6h). Nat Cell Biol (2019) ncbi
domestic rabbit monoclonal (D4W1U)
  • western blot; human; loading ...; fig 3h
Cell Signaling Technology histone H3 antibody (Cell Signaling, 13969) was used in western blot on human samples (fig 3h). Nat Cell Biol (2019) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:500; loading ...; fig 1a
Cell Signaling Technology histone H3 antibody (Cell Signaling, CST4499s) was used in western blot on mouse samples at 1:500 (fig 1a). Brain (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; mouse; 1:500; loading ...; fig 1a
Cell Signaling Technology histone H3 antibody (Cell Signaling, C36B11) was used in western blot on mouse samples at 1:500 (fig 1a). Brain (2019) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:5000; loading ...; fig 4i
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499S) was used in western blot on mouse samples at 1:5000 (fig 4i). elife (2019) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:2000; loading ...; fig s4
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:2000 (fig s4). Front Immunol (2018) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 4b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499S) was used in western blot on human samples (fig 4b). Sci Adv (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • immunocytochemistry; mouse; loading ...; fig s6d
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733S) was used in immunocytochemistry on mouse samples (fig s6d). Cell (2019) ncbi
domestic rabbit monoclonal (D2C8)
  • flow cytometry; human; 1:50; loading ...; fig s1d
Cell Signaling Technology histone H3 antibody (Cell Signaling, D2C8) was used in flow cytometry on human samples at 1:50 (fig s1d). Nucleic Acids Res (2019) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 5c
Cell Signaling Technology histone H3 antibody (Cell Signaling, D1H2) was used in western blot on human samples (fig 5c). Nat Commun (2018) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 2b
  • western blot; mouse; loading ...; fig 1b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (fig 2b) and in western blot on mouse samples (fig 1b). Science (2018) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; mouse; 1:5000; fig 4e
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, C36B11) was used in western blot on mouse samples at 1:5000 (fig 4e). EMBO J (2019) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry - frozen section; mouse; loading ...; fig 5b
  • flow cytometry; mouse; loading ...; fig 5a
Cell Signaling Technology histone H3 antibody (Cell Signaling, C36B11) was used in immunohistochemistry - frozen section on mouse samples (fig 5b) and in flow cytometry on mouse samples (fig 5a). J Cell Biol (2018) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; loading ...; fig 3d
Cell Signaling Technology histone H3 antibody (CST, 4499) was used in western blot on mouse samples (fig 3d). Oncogene (2018) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:1000; loading ...; fig 2f
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on mouse samples at 1:1000 (fig 2f). Science (2018) ncbi
domestic rabbit monoclonal (C36B11)
  • ChIP-Seq; mouse; fig 3e
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in ChIP-Seq on mouse samples (fig 3e). Cancer Cell (2018) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:500; loading ...; fig 1a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on mouse samples at 1:500 (fig 1a). Nat Neurosci (2018) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human; 1:1000; loading ...; fig 2d
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in western blot on human samples at 1:1000 (fig 2d). Science (2018) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 7d
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (fig 7d). J Biol Chem (2018) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:5000; loading ...; fig s11c
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:5000 (fig s11c). Nat Commun (2018) ncbi
mouse monoclonal (1B1B2)
  • western blot; human; fig 3b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 14269) was used in western blot on human samples (fig 3b). Cell (2018) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:5000; loading ...; fig 1e
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:5000 (fig 1e). Nat Commun (2017) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; fig 1e
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on human samples (fig 1e). Cancer Res (2018) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; mouse; loading ...; fig s1h
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in western blot on mouse samples (fig s1h). Nature (2018) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:10,000; loading ...; fig s2f
Cell Signaling Technology histone H3 antibody (Cell Signaling Technologies, 4499S) was used in western blot on human samples at 1:10,000 (fig s2f). elife (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:2000; loading ...; fig 1a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:2000 (fig 1a). Nat Commun (2017) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; human; 1:2000; loading ...; fig 1a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4658) was used in western blot on human samples at 1:2000 (fig 1a). Nat Commun (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:5000; loading ...; fig 1b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:5000 (fig 1b). Stem Cells (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 5b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (fig 5b). Proc Natl Acad Sci U S A (2017) ncbi
domestic rabbit monoclonal (D5A7)
  • western blot; human; 1:1000; loading ...; fig 1c
In order to research the protective effect of MRG15 and PALB2 from genotoxic stress, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4909) was used in western blot on human samples at 1:1000 (fig 1c). Proc Natl Acad Sci U S A (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; rat; 1:1000; loading ...; fig 2b, 3f
  • western blot; mouse; 1:1000; loading ...; fig 3e
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on rat samples at 1:1000 (fig 2b, 3f) and in western blot on mouse samples at 1:1000 (fig 3e). Brain Res (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 2e
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on human samples (fig 2e). Oncotarget (2017) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; loading ...; fig 5b
Cell Signaling Technology histone H3 antibody (CST, 9733) was used in western blot on human samples (fig 5b). Sci Rep (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; loading ...; fig 5e
In order to find that MKRN2 is a novel p65 ubiquitin E3 ligase, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on mouse samples (fig 5e). Sci Rep (2017) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; loading ...; fig 7h
In order to demonstrate that WHSC1 drives indolent PTEN-null tumors to become metastatic prostate cancer, Cell Signaling Technology histone H3 antibody (cell signaling, 9733) was used in chromatin immunoprecipitation on human samples (fig 7h). J Clin Invest (2017) ncbi
  • western blot; human; loading ...; fig 2a
Cell Signaling Technology histone H3 antibody (CST, 9847) was used in western blot on human samples (fig 2a). Nat Commun (2017) ncbi
domestic rabbit monoclonal (C36B11)
  • immunocytochemistry; mouse; loading ...; fig 6
  • immunohistochemistry; mouse; fig 3b
  • western blot; mouse; fig 3b
Cell Signaling Technology histone H3 antibody (cell signalling, C36B11) was used in immunocytochemistry on mouse samples (fig 6), in immunohistochemistry on mouse samples (fig 3b) and in western blot on mouse samples (fig 3b). Biochim Biophys Acta Gene Regul Mech (2017) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; mouse; 1:1000; loading ...; fig 5D
Cell Signaling Technology histone H3 antibody (Cell Signaling, D2C8) was used in western blot on mouse samples at 1:1000 (fig 5D). Nucleic Acids Res (2017) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; mouse; 1:2000; loading ...; fig s6c
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, CST-9733s) was used in western blot on mouse samples at 1:2000 (fig s6c). Cell Rep (2017) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; mouse; loading ...; fig 1c
Cell Signaling Technology histone H3 antibody (CST, 3377) was used in western blot on mouse samples (fig 1c). PLoS ONE (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; loading ...; fig 1c
Cell Signaling Technology histone H3 antibody (CST, 4499) was used in western blot on mouse samples (fig 1c). PLoS ONE (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:1000; loading ...; fig s10
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:1000 (fig s10). Nat Chem Biol (2017) ncbi
domestic rabbit monoclonal (C36B11)
  • other; human; 1:2500; loading ...; fig 3
  • western blot; human; 1:1000; loading ...; fig s10
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in other on human samples at 1:2500 (fig 3) and in western blot on human samples at 1:1000 (fig s10). Nat Chem Biol (2017) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human; 1:1000; loading ...; fig 2d
In order to find AURKA activity as essential in non-small cell lung cancer cells lacking SMARCA4/BRG1, Cell Signaling Technology histone H3 antibody (Cell signaling, 33770) was used in western blot on human samples at 1:1000 (fig 2d). Nat Commun (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...
In order to investigate the role of FACT in sensing DNA torsional stress, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499S) was used in western blot on human samples . Nucleic Acids Res (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:2000; loading ...; fig 4e
Cell Signaling Technology histone H3 antibody (Cell signaling, 4499) was used in western blot on mouse samples at 1:2000 (fig 4e). Int J Mol Med (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; loading ...; fig 9f
Cell Signaling Technology histone H3 antibody (Cell Signaling Technologies, 4499) was used in western blot on mouse samples (fig 9f). Mol Cell Biol (2017) ncbi
domestic rabbit monoclonal (C75H12)
  • immunohistochemistry; human; 1:500; fig 3
  • western blot; human; loading ...; fig 4a
Cell Signaling Technology histone H3 antibody (Cell Signaling Tech, 2901) was used in immunohistochemistry on human samples at 1:500 (fig 3) and in western blot on human samples (fig 4a). Nat Genet (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 1c
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (fig 1c). Mol Biol Cell (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • immunocytochemistry; human; loading ...; fig 5
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in immunocytochemistry on human samples (fig 5). PLoS ONE (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • ChIP-Seq; human; loading ...; fig 2f
  • western blot; human; 1:2000; loading ...; fig 1e
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in ChIP-Seq on human samples (fig 2f) and in western blot on human samples at 1:2000 (fig 1e). Nat Med (2017) ncbi
domestic rabbit monoclonal (D2B12)
  • western blot; human; loading ...; fig 1b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4620S) was used in western blot on human samples (fig 1b). Front Immunol (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • chromatin immunoprecipitation; human; 1:2000; loading ...
In order to study lncBRM and YAP1 signaling in liver cancer stem cells and hepatocellular carcinoma, Cell Signaling Technology histone H3 antibody (Cell signalling, 4499) was used in chromatin immunoprecipitation on human samples at 1:2000. Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; loading ...; fig 6b
In order to test if posterior HOXD gene activation and Ewing sarcoma tumorigenicity are both regulated by MLL1 and/or menin, Cell Signaling Technology histone H3 antibody (Cell Signaling, 2650) was used in chromatin immunoprecipitation on human samples (fig 6b). Oncotarget (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; fig 5b
In order to test if BAG3 protects the heart from reperfusion injury, Cell Signaling Technology histone H3 antibody (Cell signaling, 4499) was used in western blot on mouse samples (fig 5b). JCI Insight (2016) ncbi
domestic rabbit monoclonal (D4W1U)
  • ChIP-Seq; human; loading ...; tbl 2
  • ChIP-Seq; mouse; loading ...; tbl 2
Cell Signaling Technology histone H3 antibody (Cell Signaling, 13969) was used in ChIP-Seq on human samples (tbl 2) and in ChIP-Seq on mouse samples (tbl 2). Epigenetics Chromatin (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • ChIP-Seq; mouse; loading ...; tbl 2
  • ChIP-Seq; human; loading ...; tbl 2
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in ChIP-Seq on mouse samples (tbl 2) and in ChIP-Seq on human samples (tbl 2). Epigenetics Chromatin (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human; 1:1000; loading ...; fig s3c
In order to identify and characterize an inhibitor of the COP9 signalosome, Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in western blot on human samples at 1:1000 (fig s3c). Nat Commun (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human; loading ...; fig s1d
Cell Signaling Technology histone H3 antibody (Cell signaling, 3377) was used in western blot on human samples (fig s1d). PLoS Pathog (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; 1:1000; loading ...; fig 3c
Cell Signaling Technology histone H3 antibody (Cell Signaling, C36B11) was used in western blot on human samples at 1:1000 (fig 3c). Nucleic Acids Res (2017) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:1000; loading ...; fig 3c
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:1000 (fig 3c). J Biol Chem (2016) ncbi
domestic rabbit monoclonal (C75H12)
  • western blot; human; fig 2
Cell Signaling Technology histone H3 antibody (Cell signaling, 2901) was used in western blot on human samples (fig 2). Sci Rep (2016) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; human; 1:1000; tbl s6
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4658) was used in western blot on human samples at 1:1000 (tbl s6). PLoS Genet (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • flow cytometry; mouse; loading ...; fig s4a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 5499) was used in flow cytometry on mouse samples (fig s4a). Proc Natl Acad Sci U S A (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; loading ...; fig 1b
  • ChIP-Seq; mouse; 1:40
  • immunocytochemistry; mouse; loading ...; fig 2f
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on human samples (fig 1b), in ChIP-Seq on mouse samples at 1:40 and in immunocytochemistry on mouse samples (fig 2f). Proc Natl Acad Sci U S A (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • immunohistochemistry; zebrafish ; fig 4
In order to report that ZNF644 is a co-regulator of G9a/H3K9me2-mediated gene silencing during neuronal differentiation, Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in immunohistochemistry on zebrafish samples (fig 4). Stem Cell Reports (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; fig 8
Cell Signaling Technology histone H3 antibody (Cell Signaling, D1H2) was used in western blot on human samples (fig 8). PLoS ONE (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:1000; fig s4c
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:1000 (fig s4c). Nat Commun (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 7
In order to test if blockade of glutathione and thioredoxin eliminates cancer stem cells using colorectal carcinoma samples, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (fig 7). Cancer Med (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; fig 5
  • western blot; human; fig 5
In order to investigate the functions of EZH2 in human T cells, Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in chromatin immunoprecipitation on human samples (fig 5) and in western blot on human samples (fig 5). Cell Death Dis (2016) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; human; 1:1000; fig 1
Cell Signaling Technology histone H3 antibody (CST, 4658) was used in western blot on human samples at 1:1000 (fig 1). Oncotarget (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; 1:1000; fig 3d,4b,7b
Cell Signaling Technology histone H3 antibody (CST, 9733) was used in western blot on human samples at 1:1000 (fig 3d,4b,7b). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; mouse; 1:100; fig 1
Cell Signaling Technology histone H3 antibody (Cell Signaling, 2650) was used in immunohistochemistry on mouse samples at 1:100 (fig 1). Aging (Albany NY) (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • ELISA; human; 1:1000; fig s3
  • western blot; human; fig s1
Cell Signaling Technology histone H3 antibody (CST, 9733) was used in ELISA on human samples at 1:1000 (fig s3) and in western blot on human samples (fig s1). PLoS ONE (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:3000; loading ...; fig 5
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on human samples at 1:3000 (fig 5). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human; 1:1000; loading ...; fig 5f
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in western blot on human samples at 1:1000 (fig 5f). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; fig 6
  • western blot; human; fig 4
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499P) was used in western blot on mouse samples (fig 6) and in western blot on human samples (fig 4). Nat Commun (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 5a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (fig 5a). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; fig 1
Cell Signaling Technology histone H3 antibody (Cell signaling, 4499L) was used in western blot on mouse samples (fig 1). elife (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; fig s1h
In order to correlate lnc-beta-Catm, EZH2, and Wnt-beta-catenin expression with hepatocellular carcinoma severity and prognosis, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (fig s1h). Nat Struct Mol Biol (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; loading ...; fig 1b
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on human samples (fig 1b). Science (2016) ncbi
domestic rabbit monoclonal (C75H12)
  • chromatin immunoprecipitation; human; loading ...; fig 2a
  • immunocytochemistry; human; 1:2000; loading ...; fig s3c
  • western blot; human; loading ...; fig 1a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 2901) was used in chromatin immunoprecipitation on human samples (fig 2a), in immunocytochemistry on human samples at 1:2000 (fig s3c) and in western blot on human samples (fig 1a). Science (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • immunocytochemistry; human; fig 3
  • western blot; human; fig 4
Cell Signaling Technology histone H3 antibody (Cell signaling, 3377) was used in immunocytochemistry on human samples (fig 3) and in western blot on human samples (fig 4). J Biol Chem (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; mouse; fig 3
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377S) was used in western blot on mouse samples (fig 3). PLoS Genet (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:2000; fig s4
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:2000 (fig s4). Nat Commun (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; fruit fly ; loading ...; fig s11b
  • immunocytochemistry; mouse; fig s6c
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in chromatin immunoprecipitation on fruit fly samples (fig s11b) and in immunocytochemistry on mouse samples (fig s6c). Science (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; fig 2
  • western blot; rat; fig 10
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on mouse samples (fig 2) and in western blot on rat samples (fig 10). Autophagy (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • immunohistochemistry - paraffin section; mouse; 1:2000; fig 3
In order to learn the requirement for epithelial cell fate decision in the lower mullerian duct by FGFR2IIIb-MAPK activity, Cell Signaling Technology histone H3 antibody (Cell signaling, CST3377) was used in immunohistochemistry - paraffin section on mouse samples at 1:2000 (fig 3). Mol Endocrinol (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:3000; fig 5
In order to investigate inhibition of neural stem cell proliferation through Wnt/beta-catenin pathway by its GAP domain via Porf-2, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on mouse samples at 1:3000 (fig 5). Front Cell Neurosci (2016) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; mouse; 1:1000; fig 3
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4658) was used in western blot on mouse samples at 1:1000 (fig 3). Hum Mol Genet (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 3e
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (fig 3e). J Mol Med (Berl) (2016) ncbi
mouse monoclonal (1B1B2)
  • chromatin immunoprecipitation; human; fig 4
  • western blot; human; fig 2
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 14269) was used in chromatin immunoprecipitation on human samples (fig 4) and in western blot on human samples (fig 2). Cell Rep (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human; 1:2000; fig 1
Cell Signaling Technology histone H3 antibody (Cell signaling, 3377) was used in western blot on human samples at 1:2000 (fig 1). Nat Commun (2016) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; human; 1:1000; loading ...; fig 12a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4658) was used in western blot on human samples at 1:1000 (fig 12a). J Biol Chem (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; 1:1000; loading ...; fig 12a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on human samples at 1:1000 (fig 12a). J Biol Chem (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human; fig 5
Cell Signaling Technology histone H3 antibody (Cell signaling, D2C8) was used in western blot on human samples (fig 5). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; fig 5
Cell Signaling Technology histone H3 antibody (Cell signaling, D1H2) was used in western blot on human samples (fig 5). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; fruit fly ; loading ...; tbl 1
In order to study chromatin packaging in fly sperm, Cell Signaling Technology histone H3 antibody (Cell signaling, 2650) was used in chromatin immunoprecipitation on fruit fly samples (tbl 1). Genom Data (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; tbl 1
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (tbl 1). elife (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:1000; fig 5
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on mouse samples at 1:1000 (fig 5). PLoS ONE (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:1000; loading ...; fig 5a
In order to analyze the TMPRSS2:ERG fusion gene in cell death, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:1000 (fig 5a). Mol Med Rep (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:2000; fig 4
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:2000 (fig 4). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; rat; 1:1000; fig 1
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on rat samples at 1:1000 (fig 1). J Neurosci (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:1000; fig 3
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:1000 (fig 3). PLoS ONE (2016) ncbi
domestic rabbit monoclonal (D2B12)
  • western blot; mouse; 1:2000; loading ...; fig 5d
In order to study the role of PHF8 during mesodermal and cardiac lineage commitment using mouse embryonic stem cells, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4620) was used in western blot on mouse samples at 1:2000 (fig 5d). Stem Cells (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • immunoprecipitation; human; 1:5000; loading ...; fig 3b
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 3377) was used in immunoprecipitation on human samples at 1:5000 (fig 3b). Nat Chem Biol (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • ChIP-Seq; mouse; fig 4
  • immunocytochemistry; mouse; 1:200; fig 4
  • western blot; mouse; 1:1000; fig 4
Cell Signaling Technology histone H3 antibody (Cell signaling, C36B11) was used in ChIP-Seq on mouse samples (fig 4), in immunocytochemistry on mouse samples at 1:200 (fig 4) and in western blot on mouse samples at 1:1000 (fig 4). elife (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry - paraffin section; mouse; 1:200; fig 7
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, C36B11) was used in immunohistochemistry - paraffin section on mouse samples at 1:200 (fig 7). Neoplasia (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:2000; fig 1
  • western blot; human; 1:2000; fig 1
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on mouse samples at 1:2000 (fig 1) and in western blot on human samples at 1:2000 (fig 1). Nat Commun (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; mouse; fig 7e
In order to study transcription factor Blimp-1 in coordinating plasma cell differentiation, Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in chromatin immunoprecipitation on mouse samples (fig 7e). Nat Immunol (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • flow cytometry; human; fig s1
In order to study regulation of adhesion and cell migration by recruitment to the leading edge by human phosphatase CDC14A, Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in flow cytometry on human samples (fig s1). Proc Natl Acad Sci U S A (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry; human; 1:200; fig s4
Cell Signaling Technology histone H3 antibody (Cell Signaling, C36B11) was used in immunohistochemistry on human samples at 1:200 (fig s4). Clin Cancer Res (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 1b
In order to present the role of nuclear Src and p300 signaling axis in pancreatic cancer, Cell Signaling Technology histone H3 antibody (Cell Signaling, D1H2) was used in western blot on human samples (fig 1b). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human; loading ...; fig 5a
In order to study the effect of galiellalactone in regards to cell cycle arrest and apoptosis via ATM/ATR pathway in prostate cancer cells, Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in western blot on human samples (fig 5a). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • flow cytometry; human; fig s5
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, D2C8) was used in flow cytometry on human samples (fig s5). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human; 1:1000; fig 2
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 3377) was used in western blot on human samples at 1:1000 (fig 2). Nat Cell Biol (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry; human; fig 2c
Cell Signaling Technology histone H3 antibody (Cell Signaling, C36B11) was used in immunohistochemistry on human samples (fig 2c). Genes Dev (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; fig 3
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in chromatin immunoprecipitation on human samples (fig 3). Nat Commun (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry - paraffin section; human; 1:200; loading ...; fig 6c
  • chromatin immunoprecipitation; human; loading ...; fig 4a
  • western blot; human; 1:2000; loading ...; fig 1c, 3a, 2c
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in immunohistochemistry - paraffin section on human samples at 1:200 (fig 6c), in chromatin immunoprecipitation on human samples (fig 4a) and in western blot on human samples at 1:2000 (fig 1c, 3a, 2c). Mol Cell Proteomics (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry - paraffin section; mouse; 1:500; fig s5
  • chromatin immunoprecipitation; mouse; fig 3
In order to assess the Wnt-dependent regulation and midbrain-to-forebrain identity switch by loss of Ezh2, Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 9733) was used in immunohistochemistry - paraffin section on mouse samples at 1:500 (fig s5) and in chromatin immunoprecipitation on mouse samples (fig 3). BMC Biol (2015) ncbi
domestic rabbit monoclonal (D2C8)
  • flow cytometry; human; fig 3
  • western blot; human; fig 2
In order to report that inappropriate activation of CDK2 in S phase affects checkpoint kinase 1 inhibitor sensitivity in a subset of cell lines, Cell Signaling Technology histone H3 antibody (Cell Signaling Tech, cst-3377) was used in flow cytometry on human samples (fig 3) and in western blot on human samples (fig 2). Oncotarget (2016) ncbi
domestic rabbit monoclonal (C75H12)
  • western blot; human; fig 1
Cell Signaling Technology histone H3 antibody (Cell signaling, 2901) was used in western blot on human samples (fig 1). Mol Cancer Ther (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; fig 3
  • immunocytochemistry; human; fig 4
  • western blot; human; fig 1
Cell Signaling Technology histone H3 antibody (Cell signaling, 9733) was used in chromatin immunoprecipitation on human samples (fig 3), in immunocytochemistry on human samples (fig 4) and in western blot on human samples (fig 1). Mol Cancer Ther (2016) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot knockout validation; human; fig 1
Cell Signaling Technology histone H3 antibody (Cell Signaling Tech, 9733) was used in western blot knockout validation on human samples (fig 1). Biol Proced Online (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; rat; fig 1
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on rat samples (fig 1). Nat Neurosci (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:2000; fig 2
In order to elucidate mechanisms that regulate T cell glycolytic metabolism, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:2000 (fig 2). Nat Immunol (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; loading ...; fig 2
Cell Signaling Technology histone H3 antibody (Cell signaling, 4499P) was used in western blot on mouse samples (fig 2). PLoS ONE (2015) ncbi
domestic rabbit monoclonal (D2B12)
  • western blot; mouse
In order to test if bisecting GlcNAc would stabilize BACE1 protein upon oxidative stress, Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4620) was used in western blot on mouse samples . Biochem J (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:2000; fig 4
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on mouse samples at 1:2000 (fig 4). PLoS ONE (2015) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; human; loading ...; fig 2g
In order to assess the effects of allosteric inhibitors on different mutant forms of isocitrate dehydrogenase 1 in leukemia, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4658P) was used in western blot on human samples (fig 2g). Nat Chem Biol (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 2g
In order to assess the effects of allosteric inhibitors on different mutant forms of isocitrate dehydrogenase 1 in leukemia, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499P) was used in western blot on human samples (fig 2g). Nat Chem Biol (2015) ncbi
domestic rabbit monoclonal (D2B12)
  • western blot; mouse; 1:1000; fig 6
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4620) was used in western blot on mouse samples at 1:1000 (fig 6). Nat Commun (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; fig 6
Cell Signaling Technology histone H3 antibody (Cell Signaling Tech, 9733) was used in chromatin immunoprecipitation on human samples (fig 6). Oncotarget (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:2000; fig 2
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on mouse samples at 1:2000 (fig 2). Nat Commun (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry - paraffin section; human; 1:100; fig 1
In order to determine the activation of PRC2, H3K27me3, and BMI1 in T and natural killer cell lymphomas, Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, C36B11) was used in immunohistochemistry - paraffin section on human samples at 1:100 (fig 1). Tumour Biol (2016) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; fig 2
Cell Signaling Technology histone H3 antibody (Cell Signalling, 4499L) was used in western blot on human samples (fig 2). Oncotarget (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; mouse
Cell Signaling Technology histone H3 antibody (Cell Signaling, C36B11) was used in chromatin immunoprecipitation on mouse samples . J Cell Sci (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; fig 5
Cell Signaling Technology histone H3 antibody (Cell signaling, 9733) was used in chromatin immunoprecipitation on human samples (fig 5). PLoS ONE (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; fig 1
Cell Signaling Technology histone H3 antibody (CST, D1H2) was used in western blot on human samples (fig 1). J Cell Biol (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • immunocytochemistry; mouse; fig 4
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in immunocytochemistry on mouse samples (fig 4). J Pathol (2015) ncbi
domestic rabbit monoclonal (D2C8)
  • immunocytochemistry; human; 1:1600; fig 2a
In order to use the Operetta high-content imager and Harmony software with PhenoLOGIC to perform multiparametric cell cycle analysis, Cell Signaling Technology histone H3 antibody (Cell Signaling Technologies, 3377) was used in immunocytochemistry on human samples at 1:1600 (fig 2a). PLoS ONE (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; mouse; fig s8
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 9733) was used in chromatin immunoprecipitation on mouse samples (fig s8). Nat Commun (2015) ncbi
domestic rabbit monoclonal (D85B4)
  • immunocytochemistry; mouse
  • western blot; mouse
In order to study the effect of G9a histone methyltransferase inhibitor on bone marrow mesenchymal stem cells, Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4658P) was used in immunocytochemistry on mouse samples and in western blot on mouse samples . Stem Cells Int (2015) ncbi
domestic rabbit monoclonal (D2B12)
  • chromatin immunoprecipitation; human; fig 3
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4620) was used in chromatin immunoprecipitation on human samples (fig 3). EMBO Mol Med (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; loading ...; fig 6a,6b,6c,7b
  • western blot; human; loading ...; fig 7a
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in chromatin immunoprecipitation on human samples (fig 6a,6b,6c,7b) and in western blot on human samples (fig 7a). PLoS ONE (2015) ncbi
domestic rabbit monoclonal (D54)
  • western blot; human; loading ...; fig 1c
Cell Signaling Technology histone H3 antibody (Cell signaling, 4473) was used in western blot on human samples (fig 1c). Cell Rep (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; fig 3
  • flow cytometry; human; fig s3
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in chromatin immunoprecipitation on human samples (fig 3) and in flow cytometry on human samples (fig s3). PLoS ONE (2015) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human; 1:1000; fig 4
Cell Signaling Technology histone H3 antibody (Cell signaling, 3377) was used in western blot on human samples at 1:1000 (fig 4). J Cell Biol (2015) ncbi
domestic rabbit monoclonal (D2B12)
  • chromatin immunoprecipitation; human; loading ...; fig 4f
Cell Signaling Technology histone H3 antibody (Cell Signaling, D2B12) was used in chromatin immunoprecipitation on human samples (fig 4f). Am J Pathol (2015) ncbi
domestic rabbit monoclonal (D85B4)
  • immunocytochemistry; mouse; 1:100
Cell Signaling Technology histone H3 antibody (CST, 4658S) was used in immunocytochemistry on mouse samples at 1:100. Microsc Microanal (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; fig 7
Cell Signaling Technology histone H3 antibody (Cell Signaling, (D1H2)XP) was used in western blot on human samples (fig 7). Nucleic Acids Res (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; fig 2
In order to characterize D-2-hydroxyglutarate in its oncogenic property of mutant IDH-containing cancer cells but is dispensable for cell growth, Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on human samples (fig 2). Oncotarget (2015) ncbi
domestic rabbit monoclonal (D2C8)
  • reverse phase protein lysate microarray; human; tbl s2
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 3377S) was used in reverse phase protein lysate microarray on human samples (tbl s2). Mol Syst Biol (2015) ncbi
domestic rabbit monoclonal (D2B12)
  • chromatin immunoprecipitation; human; 1:40; loading ...; fig 8a
Cell Signaling Technology histone H3 antibody (Cell Signaling Technologies, 4620) was used in chromatin immunoprecipitation on human samples at 1:40 (fig 8a). Nat Commun (2015) ncbi
domestic rabbit monoclonal (D9J1D)
  • western blot; human; fig 2
Cell Signaling Technology histone H3 antibody (Cell signaling, 14111S) was used in western blot on human samples (fig 2). J Biol Chem (2015) ncbi
domestic rabbit monoclonal (C75H12)
  • western blot; human; fig 2
Cell Signaling Technology histone H3 antibody (Cell signaling, 2901S) was used in western blot on human samples (fig 2). J Biol Chem (2015) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; human; fig 6
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4658P) was used in western blot on human samples (fig 6). Cell Rep (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human
In order to investigate DNA methylation profiles in small cell lung cancer, patient-derived xenografts, and cell lines at single-nucleotide resolution, Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in western blot on human samples . Oncogene (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human
In order to investigate DNA methylation profiles in small cell lung cancer, patient-derived xenografts, and cell lines at single-nucleotide resolution, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples . Oncogene (2015) ncbi
domestic rabbit monoclonal (D2C8)
  • immunohistochemistry; newts; 1:200; tbl 1
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 3377) was used in immunohistochemistry on newts samples at 1:200 (tbl 1). Methods Mol Biol (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; fig 7
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples (fig 7). Cancer Immunol Res (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • immunohistochemistry - paraffin section; human; 1:1000; fig 6
  • chromatin immunoprecipitation; human; 1:1000; fig 4
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in immunohistochemistry - paraffin section on human samples at 1:1000 (fig 6) and in chromatin immunoprecipitation on human samples at 1:1000 (fig 4). Nat Med (2015) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human; 1:2000
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in western blot on human samples at 1:2000. Oncotarget (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse; 1:2000; fig 1
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on mouse samples at 1:2000 (fig 1). Rejuvenation Res (2015) ncbi
domestic rabbit monoclonal (D2C8)
  • immunohistochemistry - paraffin section; mouse; 1:100
In order to study heart valve development and cardiac function in Galnt1 KO mice, Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in immunohistochemistry - paraffin section on mouse samples at 1:100. PLoS ONE (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; fig 3
Cell Signaling Technology histone H3 antibody (Cell signaling, 4499) was used in western blot on human samples (fig 3). Ann Surg Oncol (2015) ncbi
domestic rabbit monoclonal (D2C8)
  • immunohistochemistry; mouse; 1:100
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in immunohistochemistry on mouse samples at 1:100. Endocrinology (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; rat; 1:25,000
In order to investigate the role of mitochondria-associated miRNAs in traumatic brain injury, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on rat samples at 1:25,000. Exp Neurol (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; 2 ugs
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, #9733) was used in chromatin immunoprecipitation on human samples at 2 ugs. BMC Cancer (2014) ncbi
domestic rabbit monoclonal (D2B12)
  • chromatin immunoprecipitation; human; 2 ugs
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, #4620) was used in chromatin immunoprecipitation on human samples at 2 ugs. BMC Cancer (2014) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:1000
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, #4499) was used in western blot on human samples at 1:1000. BMC Cancer (2014) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on human samples . PLoS ONE (2014) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 3377) was used in western blot on human samples . DNA Repair (Amst) (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • ELISA; human; 1:1000
Cell Signaling Technology histone H3 antibody (CST, 9733) was used in ELISA on human samples at 1:1000. PLoS ONE (2014) ncbi
domestic rabbit monoclonal (D1H2)
  • immunocytochemistry; human
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in immunocytochemistry on human samples . J Biomol Screen (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • immunocytochemistry; human
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 9733) was used in immunocytochemistry on human samples . J Biomol Screen (2015) ncbi
domestic rabbit monoclonal (D2C8)
  • flow cytometry; human; loading ...; fig 5c
Cell Signaling Technology histone H3 antibody (Cell signaling, 3377P) was used in flow cytometry on human samples (fig 5c). Mol Pharm (2015) ncbi
domestic rabbit monoclonal (C36B11)
  • ChIP-Seq; human; 1:50
  • immunohistochemistry - paraffin section; human; 1:500
  • immunocytochemistry; human; 1:800
  • western blot; human; 1:1000
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in ChIP-Seq on human samples at 1:50, in immunohistochemistry - paraffin section on human samples at 1:500, in immunocytochemistry on human samples at 1:800 and in western blot on human samples at 1:1000. Nat Med (2014) ncbi
domestic rabbit monoclonal (D2B12)
  • western blot; human; 1:4000
Cell Signaling Technology histone H3 antibody (Cell Signalling, 4620) was used in western blot on human samples at 1:4000. J Cell Biochem (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human
Cell Signaling Technology histone H3 antibody (CST, 4499P) was used in western blot on human samples . Oncotarget (2014) ncbi
domestic rabbit monoclonal (D2C8)
  • flow cytometry; human; 1:800
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in flow cytometry on human samples at 1:800. Cancer Res (2014) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; mouse; fig 3
  • western blot; human; fig 5
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 9733) was used in western blot on mouse samples (fig 3) and in western blot on human samples (fig 5). Blood (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • immunocytochemistry; human
Cell Signaling Technology histone H3 antibody (CST, 4499) was used in immunocytochemistry on human samples . FEBS Lett (2014) ncbi
domestic rabbit monoclonal (C75H12)
  • immunohistochemistry - paraffin section; human; 1:1000
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 2901) was used in immunohistochemistry - paraffin section on human samples at 1:1000. Mol Cancer Res (2015) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; fig s5
In order to determine how CHD5 suppresses tumors, Cell Signaling Technology histone H3 antibody (Cell Signaling Tech., 4499) was used in western blot on human samples (fig s5). PLoS ONE (2014) ncbi
domestic rabbit monoclonal (D2C8)
  • flow cytometry; human
In order to identify the role of PCTAIRE1 in cancer cells, Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, D2C8) was used in flow cytometry on human samples . Cancer Res (2014) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:5000; fig s1
In order to describe mitochondrial biogenesis during hepatogenic differentiation of bone marrow-mesenchymal stem cells, Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on human samples at 1:5000 (fig s1). Int J Biochem Cell Biol (2014) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; fig 4
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4499) was used in western blot on human samples (fig 4). Carcinogenesis (2014) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human; fig 3
In order to study the oncogenic and developmental properties of TBX3, Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in chromatin immunoprecipitation on human samples (fig 3). elife (2014) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; loading ...; fig 1b
Cell Signaling Technology histone H3 antibody (Cell Signaling, D1H2) was used in western blot on human samples (fig 1b). Oncotarget (2014) ncbi
domestic rabbit monoclonal (D2B12)
  • chromatin immunoprecipitation; mouse
In order to demonstrate a novel role for Poldip2 in regulating the cell cycle, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4620S) was used in chromatin immunoprecipitation on mouse samples . PLoS ONE (2014) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 3377) was used in western blot on human samples . Mol Cell Biol (2014) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; human
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4658p) was used in western blot on human samples . Cancer Discov (2014) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499p) was used in western blot on human samples . Cancer Discov (2014) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; mouse
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on mouse samples . Clin Sci (Lond) (2014) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human
  • immunohistochemistry - paraffin section; rat; 0.07 ug/ml
Cell Signaling Technology histone H3 antibody (CST, 9733) was used in chromatin immunoprecipitation on human samples and in immunohistochemistry - paraffin section on rat samples at 0.07 ug/ml. Mol Cancer Ther (2014) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; human
  • western blot; human; 1:1000
In order to study the Involvement of EED in the organization of polycomb group complexes, Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in chromatin immunoprecipitation on human samples and in western blot on human samples at 1:1000. Nat Commun (2014) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human; 1:5000
In order to study the Involvement of EED in the organization of polycomb group complexes, Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples at 1:5000. Nat Commun (2014) ncbi
domestic rabbit monoclonal (D2C8)
  • immunocytochemistry; mouse; 1:200; fig 4
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in immunocytochemistry on mouse samples at 1:200 (fig 4). FASEB J (2014) ncbi
domestic rabbit monoclonal (D1H2)
  • western blot; human
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4499) was used in western blot on human samples . Cancer Res (2014) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in western blot on human samples . Oncogene (2014) ncbi
domestic rabbit monoclonal (D85B4)
  • chromatin immunoprecipitation; mouse
  • western blot; mouse; 1:1000
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 4658) was used in chromatin immunoprecipitation on mouse samples and in western blot on mouse samples at 1:1000. Neuroscience (2014) ncbi
domestic rabbit monoclonal (C36B11)
  • immunocytochemistry; human; 1:500
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, C36B11) was used in immunocytochemistry on human samples at 1:500. Mol Biosyst (2014) ncbi
domestic rabbit monoclonal (D2B12)
  • chromatin immunoprecipitation; mouse
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4620) was used in chromatin immunoprecipitation on mouse samples . J Biol Chem (2013) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; mouse; fig 3
Cell Signaling Technology histone H3 antibody (Cell Signaling Technology, 9733) was used in chromatin immunoprecipitation on mouse samples (fig 3). PLoS Genet (2013) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; mouse
In order to study the role of polycomb repressive complex 2 in leukemia progression, Cell Signaling Technology histone H3 antibody (Cell Signaling, C36B11) was used in western blot on mouse samples . Blood (2013) ncbi
domestic rabbit monoclonal (D1H2)
  • immunocytochemistry; human; 1:200
Cell Signaling Technology histone H3 antibody (Cell Signaling, D1H2) was used in immunocytochemistry on human samples at 1:200. J Virol (2013) ncbi
domestic rabbit monoclonal (D2C8)
  • western blot; human
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in western blot on human samples . Cell Cycle (2013) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; human
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4658) was used in western blot on human samples . J Biol Chem (2013) ncbi
domestic rabbit monoclonal (D2C8)
  • immunocytochemistry; human; 1:1000
Cell Signaling Technology histone H3 antibody (Cell signalling, 3377s) was used in immunocytochemistry on human samples at 1:1000. PLoS ONE (2013) ncbi
domestic rabbit monoclonal (C36B11)
  • chromatin immunoprecipitation; mouse; 1:50
Cell Signaling Technology histone H3 antibody (Cell Signaling, 9733) was used in chromatin immunoprecipitation on mouse samples at 1:50. Cell Death Dis (2013) ncbi
domestic rabbit monoclonal (D85B4)
  • western blot; mouse; 1:1000; fig 4c
Cell Signaling Technology histone H3 antibody (Cell Signaling, 4658) was used in western blot on mouse samples at 1:1000 (fig 4c). Neurobiol Dis (2013) ncbi
domestic rabbit monoclonal (D2C8)
  • immunocytochemistry; human
Cell Signaling Technology histone H3 antibody (Cell Signaling, 3377) was used in immunocytochemistry on human samples . Carcinogenesis (2013) ncbi
domestic rabbit monoclonal (C36B11)
  • western blot; human; 1:10,000
Cell Signaling Technology histone H3 antibody (CST, 9733) was used in western blot on human samples at 1:10,000. Proc Natl Acad Sci U S A (2010) ncbi
Diagenode
monoclonal
  • ChIP-Seq; fission yeast; loading ...; fig 6s1b
Diagenode histone H3 antibody (Diagenode, C15500003) was used in ChIP-Seq on fission yeast samples (fig 6s1b). elife (2020) ncbi
monoclonal
  • ChIP-Seq; fission yeast; loading ...; fig e3f
Diagenode histone H3 antibody (Diagenode, C15500003) was used in ChIP-Seq on fission yeast samples (fig e3f). Nature (2018) ncbi
MilliporeSigma
rat monoclonal (HTA28)
  • immunocytochemistry; mouse; 1:100; fig 7b
MilliporeSigma histone H3 antibody (Sigma-Aldrich, H9908) was used in immunocytochemistry on mouse samples at 1:100 (fig 7b). Cell Rep (2022) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; mouse; 1:1000; loading ...
MilliporeSigma histone H3 antibody (Sigma, H9908) was used in immunohistochemistry on mouse samples at 1:1000. elife (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 3b
MilliporeSigma histone H3 antibody (sigma, H0134) was used in western blot on human samples at 1:1000 (fig 3b). J Mol Med (Berl) (2016) ncbi
mouse monoclonal (AH3-120)
  • chromatin immunoprecipitation; human; fig s6f
In order to investigate the co-regulation of Brg1 and Smarcal1 and their transcriptional regulation of Atp-dependent chromatin remodeling factors, MilliporeSigma histone H3 antibody (Sigma-Aldrich, H0913) was used in chromatin immunoprecipitation on human samples (fig s6f). Sci Rep (2016) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry - paraffin section; mouse; 1:1500; fig 1
MilliporeSigma histone H3 antibody (Sigma, H9908) was used in immunohistochemistry - paraffin section on mouse samples at 1:1500 (fig 1). Breast Cancer Res (2016) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry - paraffin section; mouse; fig 7
MilliporeSigma histone H3 antibody (Sigma-Alrich, H9908) was used in immunohistochemistry - paraffin section on mouse samples (fig 7). Lab Invest (2016) ncbi
domestic rabbit polyclonal
MilliporeSigma histone H3 antibody (Sigma, H0164) was used . Oxid Med Cell Longev (2015) ncbi
rat monoclonal (HTA28)
  • immunocytochemistry; American tobacco; 1:200; fig 5
In order to study how chromosomal changes contribute to cytomixis, MilliporeSigma histone H3 antibody (Sigma, H9908) was used in immunocytochemistry on American tobacco samples at 1:200 (fig 5). Front Plant Sci (2015) ncbi
rat monoclonal (HTA28)
  • immunocytochemistry; mouse; 1:100; fig 2
In order to assess lineage specification constrained by gene expression of the chromatin remodeling protein CHD4, MilliporeSigma histone H3 antibody (Sigma-Aldrich, H9908) was used in immunocytochemistry on mouse samples at 1:100 (fig 2). Development (2015) ncbi
mouse monoclonal (AH3-120)
  • western blot; human; 1:500
MilliporeSigma histone H3 antibody (Sigma Aldrich, H0913) was used in western blot on human samples at 1:500. Biotechnol Bioeng (2015) ncbi
domestic rabbit polyclonal
MilliporeSigma histone H3 antibody (Sigma-Aldrich, H0164) was used . J Neurochem (2015) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry - frozen section; mouse; 1:200; fig 1
MilliporeSigma histone H3 antibody (Sigma, H9908) was used in immunohistochemistry - frozen section on mouse samples at 1:200 (fig 1). PLoS Genet (2015) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; mouse; 1:50; fig 5
In order to test if extracellular signals orient the mitotic spindle of cells in the spinal cord, MilliporeSigma histone H3 antibody (Sigma, HTA28) was used in immunohistochemistry on mouse samples at 1:50 (fig 5). Nat Commun (2015) ncbi
domestic rabbit polyclonal
In order to study how altered association with SMN and U1-snRNP can cause gain and loss of function by ALS-causative mutations in FUS/TLS, MilliporeSigma histone H3 antibody (Sigma, H0164) was used . Nat Commun (2015) ncbi
domestic rabbit polyclonal
MilliporeSigma histone H3 antibody (Sigma, H0164) was used . Development (2015) ncbi
domestic rabbit polyclonal
MilliporeSigma histone H3 antibody (Sigma-Aldrich, H0164) was used . Neurobiol Aging (2015) ncbi
domestic rabbit polyclonal
In order to assess the developmental origin of subcompartments in axons and dendrites, MilliporeSigma histone H3 antibody (Sigma, H0164) was used . Development (2015) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry; mouse
MilliporeSigma histone H3 antibody (Sigma-Aldrich, H9908) was used in immunohistochemistry on mouse samples . PLoS ONE (2014) ncbi
mouse monoclonal (AH3-120)
  • immunocytochemistry; human; 1:200
MilliporeSigma histone H3 antibody (Sigma, H0913) was used in immunocytochemistry on human samples at 1:200. Cryobiology (2014) ncbi
mouse monoclonal (AH3-120)
  • immunohistochemistry - paraffin section; human; fig 2
  • chromatin immunoprecipitation; human; 2-5 ug/ChIP; fig 2
In order to investigate the role of repressor element 1-silencing transcription factor in neurodegeneration during ageing, MilliporeSigma histone H3 antibody (Sigma, H0913) was used in immunohistochemistry - paraffin section on human samples (fig 2) and in chromatin immunoprecipitation on human samples at 2-5 ug/ChIP (fig 2). Nature (2014) ncbi
rat monoclonal (HTA28)
  • immunocytochemistry; human
In order to identify QARS (encoding glutaminyl-tRNA synthetase [QARS]) mutations in two unrelated families affected by progressive microcephaly, MilliporeSigma histone H3 antibody (Sigma-Aldrich, H9908) was used in immunocytochemistry on human samples . Am J Hum Genet (2014) ncbi
rat monoclonal (HTA28)
  • immunocytochemistry; Planorbella trivolvis; 1:1000
MilliporeSigma histone H3 antibody (Sigma-Aldrich, H9908) was used in immunocytochemistry on Planorbella trivolvis samples at 1:1000. BMC Dev Biol (2014) ncbi
rat monoclonal (HTA28)
  • immunohistochemistry - frozen section; mouse; 1:100
MilliporeSigma histone H3 antibody (Sigma-Aldrich, H9908) was used in immunohistochemistry - frozen section on mouse samples at 1:100. Biol Reprod (2013) ncbi
rat monoclonal (HTA28)
  • western blot; human
MilliporeSigma histone H3 antibody (Sigma-Aldrich, H9908) was used in western blot on human samples . Nucleic Acids Res (2013) ncbi
Articles Reviewed
  1. Bertrand Chapel A, Caligaris C, Fenouil T, Savary C, Aires S, Martel S, et al. SMAD2/3 mediate oncogenic effects of TGF-β in the absence of SMAD4. Commun Biol. 2022;5:1068 pubmed publisher
  2. Fei X, Wu X, Dou Y, Sun K, Guo Q, Zhang L, et al. TRIM22 orchestrates the proliferation of GBMs and the benefits of TMZ by coordinating the modification and degradation of RIG-I. Mol Ther Oncolytics. 2022;26:413-428 pubmed publisher
  3. Cai S, Hu T, Venkatesan M, Allam M, Schneider F, Ramalingam S, et al. Multiplexed protein profiling reveals spatial subcellular signaling networks. iScience. 2022;25:104980 pubmed publisher
  4. Pieger K, Schmitt V, Gauer C, Gie xdf l N, Prots I, Winner B, et al. Translocation of Distinct Alpha Synuclein Species from the Nucleus to Neuronal Processes during Neuronal Differentiation. Biomolecules. 2022;12: pubmed publisher
  5. Gonzalez M, Naimo G, Anwar T, Paol xec A, Tekula S, Kim S, et al. EZH2 T367 phosphorylation activates p38 signaling through lysine methylation to promote breast cancer progression. iScience. 2022;25:104827 pubmed publisher
  6. Sie C, Kant R, Peter C, Muschaweckh A, Pfaller M, Nirschl L, et al. IL-24 intrinsically regulates Th17 cell pathogenicity in mice. J Exp Med. 2022;219: pubmed publisher
  7. Carpanini S, Torvell M, Bevan R, Byrne R, Daskoulidou N, Saito T, et al. Terminal complement pathway activation drives synaptic loss in Alzheimer's disease models. Acta Neuropathol Commun. 2022;10:99 pubmed publisher
  8. Zhang Y, Fang Y, Tang Y, Han S, Jia J, Wan X, et al. SMYD5 catalyzes histone H3 lysine 36 trimethylation at promoters. Nat Commun. 2022;13:3190 pubmed publisher
  9. Ma L, Xie D, Luo M, Lin X, Nie H, Chen J, et al. Identification and characterization of BEND2 as a key regulator of meiosis during mouse spermatogenesis. Sci Adv. 2022;8:eabn1606 pubmed publisher
  10. Xing H, Gao M, Wang Y, Zhang X, Shi J, Wang X, et al. Genome-wide gain-of-function screening identifies EZH2 mediating resistance to PI3Kα inhibitors in oesophageal squamous cell carcinoma. Clin Transl Med. 2022;12:e835 pubmed publisher
  11. Taniguchi H, Caeser R, Chavan S, Zhan Y, Chow A, Manoj P, et al. WEE1 inhibition enhances the antitumor immune response to PD-L1 blockade by the concomitant activation of STING and STAT1 pathways in SCLC. Cell Rep. 2022;39:110814 pubmed publisher
  12. Yan W, Han Q, Gong L, Zhan X, Li W, Guo Z, et al. MBD3 promotes hepatocellular carcinoma progression and metastasis through negative regulation of tumour suppressor TFPI2. Br J Cancer. 2022;: pubmed publisher
  13. Aibara D, Takahashi S, Yagai T, Kim D, Brocker C, Levi M, et al. Gene repression through epigenetic modulation by PPARA enhances hepatocellular proliferation. iScience. 2022;25:104196 pubmed publisher
  14. Zhang X, Spencer W, Tabuchi N, Kitt M, Deneris E. Reorganization of postmitotic neuronal chromatin accessibility for maturation of serotonergic identity. elife. 2022;11: pubmed publisher
  15. Mauduit O, Aure M, Delcroix V, Basova L, Srivastava A, Umazume T, et al. A mesenchymal to epithelial switch in Fgf10 expression specifies an evolutionary-conserved population of ionocytes in salivary glands. Cell Rep. 2022;39:110663 pubmed publisher
  16. Qu K, Wang C, Huang L, Qin X, Zhang K, Zhong Y, et al. TET1s deficiency exacerbates oscillatory shear flow-induced atherosclerosis. Int J Biol Sci. 2022;18:2163-2180 pubmed publisher
  17. Jiang N, Xie B, Xiao W, Fan M, Xu S, Duan Y, et al. Fatty acid oxidation fuels glioblastoma radioresistance with CD47-mediated immune evasion. Nat Commun. 2022;13:1511 pubmed publisher
  18. Günes Günsel G, Conlon T, Jeridi A, Kim R, Ertuz Z, Lang N, et al. The arginine methyltransferase PRMT7 promotes extravasation of monocytes resulting in tissue injury in COPD. Nat Commun. 2022;13:1303 pubmed publisher
  19. Suzuki K, Tsuchiya M, Yoshida S, Ogawa K, Chen W, Kanzaki M, et al. Tissue accumulation of neutrophil extracellular traps mediates muscle hyperalgesia in a mouse model. Sci Rep. 2022;12:4136 pubmed publisher
  20. Guo T, Han X, He J, Feng J, Jing J, Jane x10d kov xe1 E, et al. KDM6B interacts with TFDP1 to activate P53 signaling in regulating mouse palatogenesis. elife. 2022;11: pubmed publisher
  21. Lopes N, Boucherit N, Santamaria J, Provin N, Charaix J, Ferrier P, et al. Thymocytes trigger self-antigen-controlling pathways in immature medullary thymic epithelial stages. elife. 2022;11: pubmed publisher
  22. Wu Q, Shichino Y, Abe T, Suetsugu T, Omori A, Kiyonari H, et al. Selective translation of epigenetic modifiers affects the temporal pattern and differentiation of neural stem cells. Nat Commun. 2022;13:470 pubmed publisher
  23. Korobeynikov V, Lyashchenko A, Blanco Redondo B, Jafar Nejad P, Shneider N. Antisense oligonucleotide silencing of FUS expression as a therapeutic approach in amyotrophic lateral sclerosis. Nat Med. 2022;28:104-116 pubmed publisher
  24. Chandrasekaran S, Espeso Gil S, Loh Y, Javidfar B, Kassim B, Zhu Y, et al. Neuron-specific chromosomal megadomain organization is adaptive to recent retrotransposon expansions. Nat Commun. 2021;12:7243 pubmed publisher
  25. Xia R, Liu T, Li W, Xu X. RNA-binding protein RBM24 represses colorectal tumourigenesis by stabilising PTEN mRNA. Clin Transl Med. 2021;11:e383 pubmed publisher
  26. Cameron B, Lehrmann E, Chih T, Walters J, Buksch R, Snyder S, et al. Loss of Elp1 perturbs histone H2A.Z and the Notch signaling pathway. Biol Open. 2021;10: pubmed publisher
  27. Reddy N, Majidi S, Kong L, Nemera M, Ferguson C, Moore M, et al. CHARGE syndrome protein CHD7 regulates epigenomic activation of enhancers in granule cell precursors and gyrification of the cerebellum. Nat Commun. 2021;12:5702 pubmed publisher
  28. Yue M, Liu T, Yan G, Luo X, Wang L. LINC01605, regulated by the EP300-SMYD2 complex, potentiates the binding between METTL3 and SPTBN2 in colorectal cancer. Cancer Cell Int. 2021;21:504 pubmed publisher
  29. Wang Z, Chen J, Wu X, Ma D, Zhang X, Li R, et al. PCV2 targets cGAS to inhibit type I interferon induction to promote other DNA virus infection. PLoS Pathog. 2021;17:e1009940 pubmed publisher
  30. Zheng Q, Li P, Zhou X, Qiang Y, Fan J, Lin Y, et al. Deficiency of the X-inactivation escaping gene KDM5C in clear cell renal cell carcinoma promotes tumorigenicity by reprogramming glycogen metabolism and inhibiting ferroptosis. Theranostics. 2021;11:8674-8691 pubmed publisher
  31. Lo Cascio C, McNamara J, Melendez E, Lewis E, Dufault M, Sanai N, et al. Nonredundant, isoform-specific roles of HDAC1 in glioma stem cells. JCI Insight. 2021;6: pubmed publisher
  32. Keane L, Cheray M, Saidi D, Kirby C, Friess L, González Rodríguez P, et al. Inhibition of microglial EZH2 leads to anti-tumoral effects in pediatric diffuse midline gliomas. Neurooncol Adv. 2021;3:vdab096 pubmed publisher
  33. Duboc V, Sulaiman F, Feneck E, Kucharska A, Bell D, Holder Espinasse M, et al. Tbx4 function during hindlimb development reveals a mechanism that explains the origins of proximal limb defects. Development. 2021;148: pubmed publisher
  34. Xu P, Xiong W, Lin Y, Fan L, Pan H, Li Y. Histone deacetylase 2 knockout suppresses immune escape of triple-negative breast cancer cells via downregulating PD-L1 expression. Cell Death Dis. 2021;12:779 pubmed publisher
  35. Su C, Lu F, Soldan S, Lamontagne R, Tang H, Napoletani G, et al. EBNA2 driven enhancer switching at the CIITA-DEXI locus suppresses HLA class II gene expression during EBV infection of B-lymphocytes. PLoS Pathog. 2021;17:e1009834 pubmed publisher
  36. Kanellis D, Espinoza J, Zisi A, Sakkas E, Bartkova J, Katsori A, et al. The exon-junction complex helicase eIF4A3 controls cell fate via coordinated regulation of ribosome biogenesis and translational output. Sci Adv. 2021;7: pubmed publisher
  37. Zhao Z, Szczepanski A, Tsuboyama N, Abdala Valencia H, Goo Y, Singer B, et al. PAX9 Determines Epigenetic State Transition and Cell Fate in Cancer. Cancer Res. 2021;81:4696-4708 pubmed publisher
  38. Laliotis G, Chavdoula E, Paraskevopoulou M, Kaba A, La Ferlita A, Singh S, et al. AKT3-mediated IWS1 phosphorylation promotes the proliferation of EGFR-mutant lung adenocarcinomas through cell cycle-regulated U2AF2 RNA splicing. Nat Commun. 2021;12:4624 pubmed publisher
  39. Coudert L, Osseni A, Gangloff Y, Schaeffer L, Leblanc P. The ESCRT-0 subcomplex component Hrs/Hgs is a master regulator of myogenesis via modulation of signaling and degradation pathways. BMC Biol. 2021;19:153 pubmed publisher
  40. Zhang Q, Agius S, Flanigan S, Uckelmann M, Levina V, Owen B, et al. PALI1 facilitates DNA and nucleosome binding by PRC2 and triggers an allosteric activation of catalysis. Nat Commun. 2021;12:4592 pubmed publisher
  41. Wei Y, Chen J, Xu X, Li F, Wu K, Jiang Y, et al. Restoration of H3k27me3 Modification Epigenetically Silences Cry1 Expression and Sensitizes Leptin Signaling to Reduce Obesity-Related Properties. Adv Sci (Weinh). 2021;8:2004319 pubmed publisher
  42. Kaplun D, Starshin A, Sharko F, Gainova K, Filonova G, Zhigalova N, et al. Kaiso Regulates DNA Methylation Homeostasis. Int J Mol Sci. 2021;22: pubmed publisher
  43. Biswas A, Zhou D, Fiches G, Wu Z, Liu X, Ma Q, et al. Inhibition of polo-like kinase 1 (PLK1) facilitates reactivation of gamma-herpesviruses and their elimination. PLoS Pathog. 2021;17:e1009764 pubmed publisher
  44. Wei X, Zhang Y, Xie L, Wang K, Wang X. Pharmacological inhibition of EZH2 by GSK126 decreases atherosclerosis by modulating foam cell formation and monocyte adhesion in apolipoprotein E-deficient mice. Exp Ther Med. 2021;22:841 pubmed publisher
  45. Hanson M, Karkache I, Molstad D, Norton A, Mansky K, Bradley E. Phlpp1 is induced by estrogen in osteoclasts and its loss in Ctsk-expressing cells does not protect against ovariectomy-induced bone loss. PLoS ONE. 2021;16:e0251732 pubmed publisher
  46. Wan C, Mahara S, Sun C, Doan A, Chua H, Xu D, et al. Genome-scale CRISPR-Cas9 screen of Wnt/β-catenin signaling identifies therapeutic targets for colorectal cancer. Sci Adv. 2021;7: pubmed publisher
  47. Al Zaeed N, Budai Z, Szondy Z, Sarang Z. TAM kinase signaling is indispensable for proper skeletal muscle regeneration in mice. Cell Death Dis. 2021;12:611 pubmed publisher
  48. Fang Y, Tang Y, Zhang Y, Pan Y, Jia J, Sun Z, et al. The H3K36me2 methyltransferase NSD1 modulates H3K27ac at active enhancers to safeguard gene expression. Nucleic Acids Res. 2021;49:6281-6295 pubmed publisher
  49. Qian X, Qu H, Zhang F, Peng S, Dou D, Yang Y, et al. Exosomal long noncoding RNA AGAP2-AS1 regulates trastuzumab resistance via inducing autophagy in breast cancer. Am J Cancer Res. 2021;11:1962-1981 pubmed
  50. Wu S, Fukumoto T, Lin J, Nacarelli T, Wang Y, Ong D, et al. Targeting glutamine dependence through GLS1 inhibition suppresses ARID1A-inactivated clear cell ovarian carcinoma. Nat Cancer. 2021;2:189-200 pubmed publisher
  51. Kim C, Jin J, Ye Z, Jadhav R, Gustafson C, Hu B, et al. Histone deficiency and accelerated replication stress in T cell aging. J Clin Invest. 2021;131: pubmed publisher
  52. Goswami S, Balasubramanian I, D Agostino L, Bandyopadhyay S, Patel R, Avasthi S, et al. RAB11A-mediated YAP localization to adherens and tight junctions is essential for colonic epithelial integrity. J Biol Chem. 2021;297:100848 pubmed publisher
  53. Yi S, Jang Y, Kim H, Lee K, Lee H, Kim Y, et al. The KDM4B-CCAR1-MED1 axis is a critical regulator of osteoclast differentiation and bone homeostasis. Bone Res. 2021;9:27 pubmed publisher
  54. Yuan C, Chen H, Tu S, Huang H, Pan Y, Gui X, et al. A systematic dissection of the epigenomic heterogeneity of lung adenocarcinoma reveals two different subclasses with distinct prognosis and core regulatory networks. Genome Biol. 2021;22:156 pubmed publisher
  55. Qin M, Han F, Wu J, Gao F, Li Y, Yan D, et al. KDM6B promotes ESCC cell proliferation and metastasis by facilitating C/EBPβ transcription. BMC Cancer. 2021;21:559 pubmed publisher
  56. Gusyatiner O, Bady P, Pham M, Lei Y, Park J, Daniel R, et al. BET inhibitors repress expression of interferon-stimulated genes and synergize with HDAC inhibitors in glioblastoma. Neuro Oncol. 2021;23:1680-1692 pubmed publisher
  57. Huang C, Lingadahalli S, Morova T, Ozturan D, Hu E, Yu I, et al. Functional mapping of androgen receptor enhancer activity. Genome Biol. 2021;22:149 pubmed publisher
  58. Hu J, Wang J, Li C, Shang Y. Fructose-1,6-bisphosphatase aggravates oxidative stress-induced apoptosis in asthma by suppressing the Nrf2 pathway. J Cell Mol Med. 2021;25:5001-5014 pubmed publisher
  59. Della Chiara G, Gervasoni F, Fakiola M, Godano C, D Oria C, Azzolin L, et al. Epigenomic landscape of human colorectal cancer unveils an aberrant core of pan-cancer enhancers orchestrated by YAP/TAZ. Nat Commun. 2021;12:2340 pubmed publisher
  60. Huang H, Hu J, Maryam A, Huang Q, Zhang Y, Ramakrishnan S, et al. Defining super-enhancer landscape in triple-negative breast cancer by multiomic profiling. Nat Commun. 2021;12:2242 pubmed publisher
  61. Zhu X, Chen L, Huang B, Li X, Yang L, Hu X, et al. Efficacy and mechanism of the combination of PARP and CDK4/6 inhibitors in the treatment of triple-negative breast cancer. J Exp Clin Cancer Res. 2021;40:122 pubmed publisher
  62. Andrade J, Shi C, Costa A, Choi J, Kim J, Doddaballapur A, et al. Control of endothelial quiescence by FOXO-regulated metabolites. Nat Cell Biol. 2021;23:413-423 pubmed publisher
  63. Rippe C, Morén B, Liu L, Stenkula K, Mustaniemi J, Wennström M, et al. NG2/CSPG4, CD146/MCAM and VAP1/AOC3 are regulated by myocardin-related transcription factors in smooth muscle cells. Sci Rep. 2021;11:5955 pubmed publisher
  64. Park Y, Lee J, Yan Z, McKernan K, O Haren T, Wang W, et al. Interplay of BAF and MLL4 promotes cell type-specific enhancer activation. Nat Commun. 2021;12:1630 pubmed publisher
  65. Lee M, Nam H, Kang H, Lee W, Lee G, Sung G, et al. Epigenetic regulation of p62/SQSTM1 overcomes the radioresistance of head and neck cancer cells via autophagy-dependent senescence induction. Cell Death Dis. 2021;12:250 pubmed publisher
  66. Jiang Y, Li F, Gao B, Ma M, Chen M, Wu Y, et al. KDM6B-mediated histone demethylation of LDHA promotes lung metastasis of osteosarcoma. Theranostics. 2021;11:3868-3881 pubmed publisher
  67. Mrouj K, Andrés Sánchez N, Dubra G, Singh P, Sobecki M, Chahar D, et al. Ki-67 regulates global gene expression and promotes sequential stages of carcinogenesis. Proc Natl Acad Sci U S A. 2021;118: pubmed publisher
  68. Kim J, Chae S, Kim S, Jung Y, Kang M, Heo W, et al. Cerebellar 5HT-2A receptor mediates stress-induced onset of dystonia. Sci Adv. 2021;7: pubmed publisher
  69. Di Luca M, Fitzpatrick E, Burtenshaw D, Liu W, Helt J, Hakimjavadi R, et al. The calcium binding protein S100β marks hedgehog-responsive resident vascular stem cells within vascular lesions. NPJ Regen Med. 2021;6:10 pubmed publisher
  70. Zheng F, Chen J, Zhang X, Wang Z, Chen J, Lin X, et al. The HIF-1α antisense long non-coding RNA drives a positive feedback loop of HIF-1α mediated transactivation and glycolysis. Nat Commun. 2021;12:1341 pubmed publisher
  71. Zhang C, Lu X, Huang J, He H, Chen L, Liu Y, et al. Epigenome screening highlights that JMJD6 confers an epigenetic vulnerability and mediates sunitinib sensitivity in renal cell carcinoma. Clin Transl Med. 2021;11:e328 pubmed publisher
  72. Bressan R, Southgate B, Ferguson K, Blin C, Grant V, Alfazema N, et al. Regional identity of human neural stem cells determines oncogenic responses to histone H3.3 mutants. Cell Stem Cell. 2021;28:877-893.e9 pubmed publisher
  73. Sela Y, Li J, Kuri P, Merrell A, Li N, Lengner C, et al. Dissecting phenotypic transitions in metastatic disease via photoconversion-based isolation. elife. 2021;10: pubmed publisher
  74. Choi J, Sebastian C, Ferrer C, Lewis C, Sade Feldman M, LaSalle T, et al. A unique subset of glycolytic tumour-propagating cells drives squamous cell carcinoma. Nat Metab. 2021;3:182-195 pubmed publisher
  75. Zhu C, Kim S, Mooradian A, Wang F, Li Z, Holohan S, et al. Cancer-associated exportin-6 upregulation inhibits the transcriptionally repressive and anticancer effects of nuclear profilin-1. Cell Rep. 2021;34:108749 pubmed publisher
  76. Tang B, Sun R, Wang D, Sheng H, Wei T, Wang L, et al. ZMYND8 preferentially binds phosphorylated EZH2 to promote a PRC2-dependent to -independent function switch in hypoxia-inducible factor-activated cancer. Proc Natl Acad Sci U S A. 2021;118: pubmed publisher
  77. Yang D, Xu X, Wang X, Feng W, Shen X, Zhang J, et al. β-elemene promotes the senescence of glioma cells through regulating YAP-CDK6 signaling. Am J Cancer Res. 2021;11:370-388 pubmed
  78. Chen T, Kuo T, Dandan M, Lee R, Chang M, Villivalam S, et al. The role of striated muscle Pik3r1 in glucose and protein metabolism following chronic glucocorticoid exposure. J Biol Chem. 2021;296:100395 pubmed publisher
  79. Li J, Mahata B, Escobar M, Goell J, Wang K, Khemka P, et al. Programmable human histone phosphorylation and gene activation using a CRISPR/Cas9-based chromatin kinase. Nat Commun. 2021;12:896 pubmed publisher
  80. Lee J, Park I, Kwak M, Rhee W, Kim S, Shin J. HMGB1 orchestrates STING-mediated senescence via TRIM30α modulation in cancer cells. Cell Death Discov. 2021;7:28 pubmed publisher
  81. Yuan G, Flores N, Hausmann S, Lofgren S, Kharchenko V, Angulo Ibáñez M, et al. Elevated NSD3 histone methylation activity drives squamous cell lung cancer. Nature. 2021;590:504-508 pubmed publisher
  82. Takei Y, Yun J, Zheng S, Ollikainen N, Pierson N, White J, et al. Integrated spatial genomics reveals global architecture of single nuclei. Nature. 2021;590:344-350 pubmed publisher
  83. Maddala R, Gao J, Mathias R, Lewis T, Arshavsky V, Levine A, et al. Absence of S100A4 in the mouse lens induces an aberrant retina-specific differentiation program and cataract. Sci Rep. 2021;11:2203 pubmed publisher
  84. Singh S, Abu Zaid A, Lin W, Low J, Abdolvahabi A, Jin H, et al. 17-DMAG dually inhibits Hsp90 and histone lysine demethylases in alveolar rhabdomyosarcoma. iScience. 2021;24:101996 pubmed publisher
  85. Krzeptowski W, Chudy P, Sokołowski G, Zukowska M, Kusienicka A, Seretny A, et al. Proximity Ligation Assay Detection of Protein-DNA Interactions-Is There a Link between Heme Oxygenase-1 and G-quadruplexes?. Antioxidants (Basel). 2021;10: pubmed publisher
  86. Huang Y, Cai K, Xu P, Wang L, Huang C, Fang Y, et al. CREBBP/EP300 mutations promoted tumor progression in diffuse large B-cell lymphoma through altering tumor-associated macrophage polarization via FBXW7-NOTCH-CCL2/CSF1 axis. Signal Transduct Target Ther. 2021;6:10 pubmed publisher
  87. Long Z, Deng L, Li C, He Q, He Y, Hu X, et al. Loss of EHF facilitates the development of treatment-induced neuroendocrine prostate cancer. Cell Death Dis. 2021;12:46 pubmed publisher
  88. Jiang Y, Xiang C, Zhong F, Zhang Y, Wang L, Zhao Y, et al. Histone H3K27 methyltransferase EZH2 and demethylase JMJD3 regulate hepatic stellate cells activation and liver fibrosis. Theranostics. 2021;11:361-378 pubmed publisher
  89. Fang M, Zhang M, Wang Y, Wei F, Wu J, Mou X, et al. Long Noncoding RNA AFAP1-AS1 Is a Critical Regulator of Nasopharyngeal Carcinoma Tumorigenicity. Front Oncol. 2020;10:601055 pubmed publisher
  90. Harro C, Perez Sanz J, Costich T, Payne K, Anadon C, Chaurio R, et al. Methyltransferase inhibitors restore SATB1 protective activity against cutaneous T cell lymphoma in mice. J Clin Invest. 2021;131: pubmed publisher
  91. Atkins A, Xu M, Li M, Rogers N, Pryzhkova M, Jordan P. SMC5/6 is required for replication fork stability and faithful chromosome segregation during neurogenesis. elife. 2020;9: pubmed publisher
  92. Macri S, Di Poï N. Heterochronic Developmental Shifts Underlying Squamate Cerebellar Diversity Unveil the Key Features of Amniote Cerebellogenesis. Front Cell Dev Biol. 2020;8:593377 pubmed publisher
  93. Sanders S, Hernandez L, Soh H, Karnam S, Walikonis R, Tzingounis A, et al. The palmitoyl acyltransferase ZDHHC14 controls Kv1-family potassium channel clustering at the axon initial segment. elife. 2020;9: pubmed publisher
  94. Wilson M, Reske J, Holladay J, Neupane S, Ngo J, Cuthrell N, et al. ARID1A Mutations Promote P300-Dependent Endometrial Invasion through Super-Enhancer Hyperacetylation. Cell Rep. 2020;33:108366 pubmed publisher
  95. Zhao Z, Zhang Z, Li J, Dong Q, Xiong J, Li Y, et al. Sustained TNF-α stimulation leads to transcriptional memory that greatly enhances signal sensitivity and robustness. elife. 2020;9: pubmed publisher
  96. Hu J, Wang H, Li X, Liu Y, Mi Y, Kong H, et al. Fibrinogen-like protein 2 aggravates nonalcoholic steatohepatitis via interaction with TLR4, eliciting inflammation in macrophages and inducing hepatic lipid metabolism disorder. Theranostics. 2020;10:9702-9720 pubmed publisher
  97. Schwartz Orbach L, Zhang C, Sidoli S, Amin R, Kaur D, Zhebrun A, et al. Caenorhabditis elegans nuclear RNAi factor SET-32 deposits the transgenerational histone modification, H3K23me3. elife. 2020;9: pubmed publisher
  98. Zatulovskiy E, Zhang S, Berenson D, Topacio B, Skotheim J. Cell growth dilutes the cell cycle inhibitor Rb to trigger cell division. Science. 2020;369:466-471 pubmed publisher
  99. Muller A, Dickmanns A, Resch C, Schakel K, Hailfinger S, Dobbelstein M, et al. The CDK4/6-EZH2 pathway is a potential therapeutic target for psoriasis. J Clin Invest. 2020;: pubmed publisher
  100. Reilly S, Hung C, Ahmadian M, Zhao P, Keinan O, Gomez A, et al. Catecholamines suppress fatty acid re-esterification and increase oxidation in white adipocytes via STAT3. Nat Metab. 2020;2:620-634 pubmed publisher
  101. Zhou X, Chen N, Xu H, Zhou X, Wang J, Fang X, et al. Regulation of Hippo-YAP signaling by insulin-like growth factor-1 receptor in the tumorigenesis of diffuse large B-cell lymphoma. J Hematol Oncol. 2020;13:77 pubmed publisher
  102. Perkail S, Andricovich J, Kai Y, Tzatsos A. BAP1 is a haploinsufficient tumor suppressor linking chronic pancreatitis to pancreatic cancer in mice. Nat Commun. 2020;11:3018 pubmed publisher
  103. Pellegrini L, Bonfio C, Chadwick J, Begum F, Skehel M, Lancaster M. Human CNS barrier-forming organoids with cerebrospinal fluid production. Science. 2020;: pubmed publisher
  104. Wang Z, Millard C, Lin C, Gurnett J, Wu M, Lee K, et al. Diverse nucleosome site-selectivity among histone deacetylase complexes. elife. 2020;9: pubmed publisher
  105. Shipkovenska G, Durango A, Kalocsay M, Gygi S, Moazed D. A conserved RNA degradation complex required for spreading and epigenetic inheritance of heterochromatin. elife. 2020;9: pubmed publisher
  106. Nielsen C, Zhang T, Barisic M, Kalitsis P, Hudson D. Topoisomerase IIα is essential for maintenance of mitotic chromosome structure. Proc Natl Acad Sci U S A. 2020;117:12131-12142 pubmed publisher
  107. Lahiguera Á, Hyroššová P, Figueras A, Garzón D, Moreno R, Soto Cerrato V, et al. Tumors defective in homologous recombination rely on oxidative metabolism: relevance to treatments with PARP inhibitors. EMBO Mol Med. 2020;12:e11217 pubmed publisher
  108. Golfier S, Quail T, Kimura H, Brugués J. Cohesin and condensin extrude DNA loops in a cell cycle-dependent manner. elife. 2020;9: pubmed publisher
  109. Sollberger G, Streeck R, Apel F, Caffrey B, Skoultchi A, Zychlinsky A. Linker histone H1.2 and H1.4 affect the neutrophil lineage determination. elife. 2020;9: pubmed publisher
  110. Smith S, Davidson L, Rebeiz M. Evolutionary expansion of apical extracellular matrix is required for the elongation of cells in a novel structure. elife. 2020;9: pubmed publisher
  111. Kakebeen A, Chitsazan A, Williams M, Saunders L, WILLS A. Chromatin accessibility dynamics and single cell RNA-Seq reveal new regulators of regeneration in neural progenitors. elife. 2020;9: pubmed publisher
  112. Nava M, Miroshnikova Y, Biggs L, Whitefield D, Metge F, Boucas J, et al. Heterochromatin-Driven Nuclear Softening Protects the Genome against Mechanical Stress-Induced Damage. Cell. 2020;181:800-817.e22 pubmed publisher
  113. Mondal B, Jin H, Kallappagoudar S, Sedkov Y, Martinez T, Sentmanat M, et al. The histone deacetylase complex MiDAC regulates a neurodevelopmental gene expression program to control neurite outgrowth. elife. 2020;9: pubmed publisher
  114. Douglas P, Ye R, Radhamani S, Cobban A, Jenkins N, Bartlett E, et al. Nocodazole-Induced Expression and Phosphorylation of Anillin and Other Mitotic Proteins Are Decreased in DNA-Dependent Protein Kinase Catalytic Subunit-Deficient Cells and Rescued by Inhibition of the Anaphase-Promoting Complex/Cyclosome with proTAME. Mol Cell Biol. 2020;40: pubmed publisher
  115. Lepack A, Werner C, Stewart A, Fulton S, Zhong P, Farrelly L, et al. Dopaminylation of histone H3 in ventral tegmental area regulates cocaine seeking. Science. 2020;368:197-201 pubmed publisher
  116. Nelson B, Hodge R, Daza R, Tripathi P, Arnold S, Millen K, et al. Intermediate progenitors support migration of neural stem cells into dentate gyrus outer neurogenic niches. elife. 2020;9: pubmed publisher
  117. Raiymbek G, An S, Khurana N, Gopinath S, Larkin A, Biswas S, et al. An H3K9 methylation-dependent protein interaction regulates the non-enzymatic functions of a putative histone demethylase. elife. 2020;9: pubmed publisher
  118. Zhang Y, Beketaev I, Segura A, Yu W, Xi Y, Chang J, et al. Contribution of Increased Expression of Yin Yang 2 to Development of Cardiomyopathy. Front Mol Biosci. 2020;7:35 pubmed publisher
  119. Gilan O, Rioja I, Knezevic K, Bell M, Yeung M, Harker N, et al. Selective targeting of BD1 and BD2 of the BET proteins in cancer and immunoinflammation. Science. 2020;368:387-394 pubmed publisher
  120. Guven A, Kalebic N, Long K, Florio M, Vaid S, Brandl H, et al. Extracellular matrix-inducing Sox9 promotes both basal progenitor proliferation and gliogenesis in developing neocortex. elife. 2020;9: pubmed publisher
  121. Cai W, Greer C, Chen J, Arnal Estapé A, Cao J, Yan Q, et al. Specific chromatin landscapes and transcription factors couple breast cancer subtype with metastatic relapse to lung or brain. BMC Med Genomics. 2020;13:33 pubmed publisher
  122. Liu H, Liu Y, Yang F, Zhang L, Zhang F, Hu X, et al. Acetylation of MORC2 by NAT10 regulates cell-cycle checkpoint control and resistance to DNA-damaging chemotherapy and radiotherapy in breast cancer. Nucleic Acids Res. 2020;48:3638-3656 pubmed publisher
  123. Lamaa A, Humbert J, Aguirrebengoa M, Cheng X, Nicolas E, Cote J, et al. Integrated analysis of H2A.Z isoforms function reveals a complex interplay in gene regulation. elife. 2020;9: pubmed publisher
  124. Hoffmann F, Niebel D, Aymans P, Ferring Schmitt S, Dietrich D, Landsberg J. H3K27me3 and EZH2 expression in melanoma: relevance for melanoma progression and response to immune checkpoint blockade. Clin Epigenetics. 2020;12:24 pubmed publisher
  125. Lu C, Wei Y, Wang X, Zhang Z, Yin J, Li W, et al. DNA-methylation-mediated activating of lncRNA SNHG12 promotes temozolomide resistance in glioblastoma. Mol Cancer. 2020;19:28 pubmed publisher
  126. Viscarra J, Wang Y, Nguyen H, Choi Y, Sul H. Histone demethylase JMJD1C is phosphorylated by mTOR to activate de novo lipogenesis. Nat Commun. 2020;11:796 pubmed publisher
  127. Yang F, Huang X, Zang R, Chen J, Fidalgo M, Sanchez Priego C, et al. DUX-miR-344-ZMYM2-Mediated Activation of MERVL LTRs Induces a Totipotent 2C-like State. Cell Stem Cell. 2020;26:234-250.e7 pubmed publisher
  128. Yang S, Ma C, Wu H, Zhang H, Yuan F, Yang G, et al. Tectorigenin attenuates diabetic nephropathy by improving vascular endothelium dysfunction through activating AdipoR1/2 pathway. Pharmacol Res. 2020;153:104678 pubmed publisher
  129. Ballabio C, Anderle M, Gianesello M, Lago C, Miele E, Cardano M, et al. Modeling medulloblastoma in vivo and with human cerebellar organoids. Nat Commun. 2020;11:583 pubmed publisher
  130. Onn L, Portillo M, Ilic S, Cleitman G, Stein D, Kaluski S, et al. SIRT6 is a DNA double-strand break sensor. elife. 2020;9: pubmed publisher
  131. Ricci B, Millner T, Pomella N, Zhang X, Guglielmi L, Badodi S, et al. Polycomb-mediated repression of EphrinA5 promotes growth and invasion of glioblastoma. Oncogene. 2020;39:2523-2538 pubmed publisher
  132. Mosaheb M, Dobrikova E, Brown M, Yang Y, Cable J, Okada H, et al. Genetically stable poliovirus vectors activate dendritic cells and prime antitumor CD8 T cell immunity. Nat Commun. 2020;11:524 pubmed publisher
  133. Cooper A, Butto T, Hammer N, Jagannath S, Fend Guella D, Akhtar J, et al. Inhibition of histone deacetylation rescues phenotype in a mouse model of Birk-Barel intellectual disability syndrome. Nat Commun. 2020;11:480 pubmed publisher
  134. Zhang B, Ma S, Rachmin I, He M, Baral P, Choi S, et al. Hyperactivation of sympathetic nerves drives depletion of melanocyte stem cells. Nature. 2020;577:676-681 pubmed publisher
  135. Karge A, Bonar N, Wood S, Petersen C. tec-1 kinase negatively regulates regenerative neurogenesis in planarians. elife. 2020;9: pubmed publisher
  136. Aldaz P, Otaegi Ugartemendia M, Sáenz Antoñanzas A, Garcia Puga M, Moreno Valladares M, Flores J, et al. SOX9 promotes tumor progression through the axis BMI1-p21CIP. Sci Rep. 2020;10:357 pubmed publisher
  137. Laukoter S, Beattie R, Pauler F, Amberg N, Nakayama K, Hippenmeyer S. Imprinted Cdkn1c genomic locus cell-autonomously promotes cell survival in cerebral cortex development. Nat Commun. 2020;11:195 pubmed publisher
  138. Liu Q, Borcherding N, Shao P, Maina P, Zhang W, Qi H. Contribution of synergism between PHF8 and HER2 signalling to breast cancer development and drug resistance. EBioMedicine. 2020;51:102612 pubmed publisher
  139. Li Y, Xu S, Xu Q, Chen Y. Clostridium difficile toxin B induces colonic inflammation through the TRIM46/DUSP1/MAPKs and NF-κB signalling pathway. Artif Cells Nanomed Biotechnol. 2020;48:452-462 pubmed publisher
  140. Enomoto T, Aoki M, Hamasaki M, Abe H, Nonaka M, Inoue T, et al. Midline Glioma in Adults: Clinicopathological, Genetic, and Epigenetic Analysis. Neurol Med Chir (Tokyo). 2020;60:136-146 pubmed publisher
  141. Birot A, Tormos Pérez M, Vaur S, Feytout A, Jaegy J, Alonso Gil D, et al. The CDK Pef1 and protein phosphatase 4 oppose each other for regulating cohesin binding to fission yeast chromosomes. elife. 2020;9: pubmed publisher
  142. Li B, Li M, Li X, Li H, Lai Y, Huang S, et al. Sirt1-inducible deacetylation of p21 promotes cardiomyocyte proliferation. Aging (Albany NY). 2019;11:12546-12567 pubmed publisher
  143. Senigl F, Maman Y, Dinesh R, Alinikula J, Seth R, Pecnova L, et al. Topologically Associated Domains Delineate Susceptibility to Somatic Hypermutation. Cell Rep. 2019;29:3902-3915.e8 pubmed publisher
  144. Casanova M, Moscatelli M, Chauvière L, Huret C, Samson J, Liyakat Ali T, et al. A primate-specific retroviral enhancer wires the XACT lncRNA into the core pluripotency network in humans. Nat Commun. 2019;10:5652 pubmed publisher
  145. Volkman H, Cambier S, Gray E, Stetson D. Tight nuclear tethering of cGAS is essential for preventing autoreactivity. elife. 2019;8: pubmed publisher
  146. Wu Y, Chen K, Xing G, Li L, Ma B, Hu Z, et al. Phospholipid remodeling is critical for stem cell pluripotency by facilitating mesenchymal-to-epithelial transition. Sci Adv. 2019;5:eaax7525 pubmed publisher
  147. Lynn R, Weber E, Sotillo E, Gennert D, Xu P, Good Z, et al. c-Jun overexpression in CAR T cells induces exhaustion resistance. Nature. 2019;576:293-300 pubmed publisher
  148. Bazopoulou D, Knoefler D, Zheng Y, Ulrich K, Oleson B, Xie L, et al. Developmental ROS individualizes organismal stress resistance and lifespan. Nature. 2019;576:301-305 pubmed publisher
  149. Wall C, Rose C, Adrian M, Zeng Y, Kirkpatrick D, Bingol B. PPEF2 Opposes PINK1-Mediated Mitochondrial Quality Control by Dephosphorylating Ubiquitin. Cell Rep. 2019;29:3280-3292.e7 pubmed publisher
  150. Santos Barriopedro I, Li Y, Bahl S, Seto E. HDAC8 affects MGMT levels in glioblastoma cell lines via interaction with the proteasome receptor ADRM1. Genes Cancer. 2019;10:119-133 pubmed publisher
  151. Montaldo N, Bordin D, Brambilla A, Rösinger M, Fordyce Martin S, Bjørås K, et al. Alkyladenine DNA glycosylase associates with transcription elongation to coordinate DNA repair with gene expression. Nat Commun. 2019;10:5460 pubmed publisher
  152. Hang S, Paik D, Yao L, Kim E, Jamma T, Lu J, et al. Bile acid metabolites control TH17 and Treg cell differentiation. Nature. 2019;576:143-148 pubmed publisher
  153. Wu S, Turner K, Nguyen N, Raviram R, Erb M, Santini J, et al. Circular ecDNA promotes accessible chromatin and high oncogene expression. Nature. 2019;575:699-703 pubmed publisher
  154. Currais A, Huang L, Goldberg J, Petrascheck M, Ates G, Pinto Duarte A, et al. Elevating acetyl-CoA levels reduces aspects of brain aging. elife. 2019;8: pubmed publisher
  155. Leone R, Zhao L, Englert J, Sun I, Oh M, Sun I, et al. Glutamine blockade induces divergent metabolic programs to overcome tumor immune evasion. Science. 2019;366:1013-1021 pubmed publisher
  156. Hamilton W, Mosesson Y, Monteiro R, Emdal K, Knudsen T, Francavilla C, et al. Dynamic lineage priming is driven via direct enhancer regulation by ERK. Nature. 2019;: pubmed publisher
  157. Mills W, Lee Y, Kochendoerfer A, Dunleavy E, Karpen G. RNA from a simple-tandem repeat is required for sperm maturation and male fertility in Drosophila melanogaster. elife. 2019;8: pubmed publisher
  158. Zhang L, Tian S, Pei M, Zhao M, Wang L, Jiang Y, et al. Crosstalk between histone modification and DNA methylation orchestrates the epigenetic regulation of the costimulatory factors, Tim‑3 and galectin‑9, in cervical cancer. Oncol Rep. 2019;42:2655-2669 pubmed publisher
  159. Mews P, Egervári G, Nativio R, Sidoli S, Donahue G, Lombroso S, et al. Alcohol metabolism contributes to brain histone acetylation. Nature. 2019;574:717-721 pubmed publisher
  160. Zhang D, Tang Z, Huang H, Zhou G, Cui C, Weng Y, et al. Metabolic regulation of gene expression by histone lactylation. Nature. 2019;574:575-580 pubmed publisher
  161. Farhy C, Hariharan S, Ylanko J, Orozco L, Zeng F, Pass I, et al. Improving drug discovery using image-based multiparametric analysis of the epigenetic landscape. elife. 2019;8: pubmed publisher
  162. Lin F, Meng X, Guo Y, Cao W, Liu W, Xia Q, et al. Epigenetic initiation of the TH17 differentiation program is promoted by Cxxc finger protein 1. Sci Adv. 2019;5:eaax1608 pubmed publisher
  163. Liu D, Wu L, Wu Y, Wei X, Wang W, Zhang S, et al. Heat shock factor 1-mediated transcription activation of Omi/HtrA2 induces myocardial mitochondrial apoptosis in the aging heart. Aging (Albany NY). 2019;11:8982-8997 pubmed publisher
  164. Lin T, Chan H, Chen S, Sarvagalla S, Chen P, Coumar M, et al. BIRC5/Survivin is a novel ATG12-ATG5 conjugate interactor and an autophagy-induced DNA damage suppressor in human cancer and mouse embryonic fibroblast cells. Autophagy. 2019;:1-18 pubmed publisher
  165. Kuang Z, Wang Y, Li Y, Ye C, Ruhn K, Behrendt C, et al. The intestinal microbiota programs diurnal rhythms in host metabolism through histone deacetylase 3. Science. 2019;365:1428-1434 pubmed publisher
  166. Kuznetsov J, Agüero T, Owens D, Kurtenbach S, Field M, Durante M, et al. BAP1 regulates epigenetic switch from pluripotency to differentiation in developmental lineages giving rise to BAP1-mutant cancers. Sci Adv. 2019;5:eaax1738 pubmed publisher
  167. Tambalo M, Anwar M, Ahmed M, Streit A. Enhancer activation by FGF signalling during otic induction. Dev Biol. 2020;457:69-82 pubmed publisher
  168. Barbero G, Castro M, Villanueva M, Quezada M, Fernández N, Demorrow S, et al. An Autocrine Wnt5a Loop Promotes NF-κB Pathway Activation and Cytokine/Chemokine Secretion in Melanoma. Cells. 2019;8: pubmed publisher
  169. Weinberg D, Papillon Cavanagh S, Chen H, Yue Y, Chen X, Rajagopalan K, et al. The histone mark H3K36me2 recruits DNMT3A and shapes the intergenic DNA methylation landscape. Nature. 2019;573:281-286 pubmed publisher
  170. Sanghvi V, Leibold J, Mina M, Mohan P, Berishaj M, Li Z, et al. The Oncogenic Action of NRF2 Depends on De-glycation by Fructosamine-3-Kinase. Cell. 2019;178:807-819.e21 pubmed publisher
  171. Tang W, Martik M, Li Y, Bronner M. Cardiac neural crest contributes to cardiomyocytes in amniotes and heart regeneration in zebrafish. elife. 2019;8: pubmed publisher
  172. Kuhn T, Pascual García P, Gozalo A, Little S, Capelson M. Chromatin targeting of nuclear pore proteins induces chromatin decondensation. J Cell Biol. 2019;218:2945-2961 pubmed publisher
  173. Lee J, Termglinchan V, Diecke S, Itzhaki I, Lam C, Garg P, et al. Activation of PDGF pathway links LMNA mutation to dilated cardiomyopathy. Nature. 2019;572:335-340 pubmed publisher
  174. Yu R, Sun L, Sun Y, Han X, Qin L, Dang W. Cellular response to moderate chromatin architectural defects promotes longevity. Sci Adv. 2019;5:eaav1165 pubmed publisher
  175. Colomer C, Margalef P, Villanueva A, Vert A, Pecharroman I, Sole L, et al. IKKα Kinase Regulates the DNA Damage Response and Drives Chemo-resistance in Cancer. Mol Cell. 2019;75:669-682.e5 pubmed publisher
  176. Sin Chan P, Mumal I, Suwal T, Ho B, Fan X, Singh I, et al. A C19MC-LIN28A-MYCN Oncogenic Circuit Driven by Hijacked Super-enhancers Is a Distinct Therapeutic Vulnerability in ETMRs: A Lethal Brain Tumor. Cancer Cell. 2019;36:51-67.e7 pubmed publisher
  177. Shan C, Lu Z, Li Z, Sheng H, Fan J, Qi Q, et al. 4-hydroxyphenylpyruvate dioxygenase promotes lung cancer growth via pentose phosphate pathway (PPP) flux mediated by LKB1-AMPK/HDAC10/G6PD axis. Cell Death Dis. 2019;10:525 pubmed publisher
  178. Piunti A, Smith E, Morgan M, Ugarenko M, Khaltyan N, Helmin K, et al. CATACOMB: An endogenous inducible gene that antagonizes H3K27 methylation activity of Polycomb repressive complex 2 via an H3K27M-like mechanism. Sci Adv. 2019;5:eaax2887 pubmed publisher
  179. Jain A, Agostini L, McCarthy G, Chand S, Ramirez A, Nevler A, et al. Poly (ADP) ribose glycohydrolase can be effectively targeted in pancreatic cancer. Cancer Res. 2019;: pubmed publisher
  180. Curt J, Salmani B, Thor S. Anterior CNS expansion driven by brain transcription factors. elife. 2019;8: pubmed publisher
  181. Wang H, Xiang D, Liu B, He A, Randle H, Zhang K, et al. Inadequate DNA Damage Repair Promotes Mammary Transdifferentiation, Leading to BRCA1 Breast Cancer. Cell. 2019;178:135-151.e19 pubmed publisher
  182. Fabry M, Ciabrelli F, Munafò M, Eastwood E, Kneuss E, Falciatori I, et al. piRNA-guided co-transcriptional silencing coopts nuclear export factors. elife. 2019;8: pubmed publisher
  183. Azkanaz M, Rodríguez López A, de Boer B, Huiting W, Angrand P, Vellenga E, et al. Protein quality control in the nucleolus safeguards recovery of epigenetic regulators after heat shock. elife. 2019;8: pubmed publisher
  184. Gil Ranedo J, Gonzaga E, Jaworek K, Berger C, Bossing T, Barros C. STRIPAK Members Orchestrate Hippo and Insulin Receptor Signaling to Promote Neural Stem Cell Reactivation. Cell Rep. 2019;27:2921-2933.e5 pubmed publisher
  185. Li J, Dong A, Saydaminova K, Chang H, Wang G, Ochiai H, et al. Single-Molecule Nanoscopy Elucidates RNA Polymerase II Transcription at Single Genes in Live Cells. Cell. 2019;: pubmed publisher
  186. Wu S, Fatkhutdinov N, Rosin L, Luppino J, Iwasaki O, Tanizawa H, et al. ARID1A spatially partitions interphase chromosomes. Sci Adv. 2019;5:eaaw5294 pubmed publisher
  187. Traynor S, Møllegaard N, Jørgensen M, Brückmann N, Pedersen C, Terp M, et al. Remodeling and destabilization of chromosome 1 pericentromeric heterochromatin by SSX proteins. Nucleic Acids Res. 2019;47:6668-6684 pubmed publisher
  188. Rubio K, Singh I, Dobersch S, Sarvari P, Günther S, Cordero J, et al. Inactivation of nuclear histone deacetylases by EP300 disrupts the MiCEE complex in idiopathic pulmonary fibrosis. Nat Commun. 2019;10:2229 pubmed publisher
  189. Pivetti S, Fernandez Perez D, D Ambrosio A, Barbieri C, Manganaro D, Rossi A, et al. Loss of PRC1 activity in different stem cell compartments activates a common transcriptional program with cell type-dependent outcomes. Sci Adv. 2019;5:eaav1594 pubmed publisher
  190. Beh L, Debelouchina G, Clay D, Thompson R, Lindblad K, Hutton E, et al. Identification of a DNA N6-Adenine Methyltransferase Complex and Its Impact on Chromatin Organization. Cell. 2019;: pubmed publisher
  191. Aztekin C, Hiscock T, Marioni J, Gurdon J, Simons B, Jullien J. Identification of a regeneration-organizing cell in the Xenopus tail. Science. 2019;364:653-658 pubmed publisher
  192. Sheng Y, Ji Z, Zhao H, Wang J, Cheng C, Xu W, et al. Downregulation of the histone methyltransferase SETD2 promotes imatinib resistance in chronic myeloid leukaemia cells. Cell Prolif. 2019;:e12611 pubmed publisher
  193. Meyer M, Benkusky N, Kaufmann M, Lee S, Redfield R, Jones G, et al. Targeted genomic deletions identify diverse enhancer functions and generate a kidney-specific, endocrine-deficient Cyp27b1 pseudo-null mouse. J Biol Chem. 2019;294:9518-9535 pubmed publisher
  194. O Geen H, Bates S, Carter S, Nisson K, Halmai J, Fink K, et al. Ezh2-dCas9 and KRAB-dCas9 enable engineering of epigenetic memory in a context-dependent manner. Epigenetics Chromatin. 2019;12:26 pubmed publisher
  195. Shi K, Yin X, Cai M, Yan Y, Jia C, Ma P, et al. PAX8 regulon in human ovarian cancer links lineage dependency with epigenetic vulnerability to HDAC inhibitors. elife. 2019;8: pubmed publisher
  196. Eckert M, Coscia F, Chryplewicz A, Chang J, Hernandez K, Pan S, et al. Proteomics reveals NNMT as a master metabolic regulator of cancer-associated fibroblasts. Nature. 2019;: pubmed publisher
  197. Yen W, Sharma R, Cols M, Lau C, Chaudhry A, Chowdhury P, et al. Distinct Requirements of CHD4 during B Cell Development and Antibody Response. Cell Rep. 2019;27:1472-1486.e5 pubmed publisher
  198. Benchetrit H, Jaber M, Zayat V, Sebban S, Pushett A, Makedonski K, et al. Direct Induction of the Three Pre-implantation Blastocyst Cell Types from Fibroblasts. Cell Stem Cell. 2019;24:983-994.e7 pubmed publisher
  199. Gao R, Liang X, Cheedipudi S, Cordero J, Jiang X, Zhang Q, et al. Pioneering function of Isl1 in the epigenetic control of cardiomyocyte cell fate. Cell Res. 2019;29:486-501 pubmed publisher
  200. Chowdhry S, Zanca C, Rajkumar U, Koga T, Diao Y, Raviram R, et al. NAD metabolic dependency in cancer is shaped by gene amplification and enhancer remodelling. Nature. 2019;569:570-575 pubmed publisher
  201. Zhang H, Wang J, Wang Y, Gao C, Gu Y, Huang J, et al. Salvianolic Acid A Protects the Kidney against Oxidative Stress by Activating the Akt/GSK-3β/Nrf2 Signaling Pathway and Inhibiting the NF-κB Signaling Pathway in 5/6 Nephrectomized Rats. Oxid Med Cell Longev. 2019;2019:2853534 pubmed publisher
  202. Tian X, Firsanov D, Zhang Z, Cheng Y, Luo L, Tombline G, et al. SIRT6 Is Responsible for More Efficient DNA Double-Strand Break Repair in Long-Lived Species. Cell. 2019;177:622-638.e22 pubmed publisher
  203. Koupenova M, Corkrey H, Vitseva O, Manni G, Pang C, Clancy L, et al. The role of platelets in mediating a response to human influenza infection. Nat Commun. 2019;10:1780 pubmed publisher
  204. Greenberg M, Teissandier A, Walter M, Noordermeer D, Bourc his D. Dynamic enhancer partitioning instructs activation of a growth-related gene during exit from naïve pluripotency. elife. 2019;8: pubmed publisher
  205. Kweon S, Chen Y, Moon E, Kvederaviciute K, Klimasauskas S, Feldman D. An Adversarial DNA N6-Methyladenine-Sensor Network Preserves Polycomb Silencing. Mol Cell. 2019;74:1138-1147.e6 pubmed publisher
  206. Wagner J, Rapsomaniki M, Chevrier S, Anzeneder T, Langwieder C, Dykgers A, et al. A Single-Cell Atlas of the Tumor and Immune Ecosystem of Human Breast Cancer. Cell. 2019;177:1330-1345.e18 pubmed publisher
  207. Lavarone E, Barbieri C, Pasini D. Dissecting the role of H3K27 acetylation and methylation in PRC2 mediated control of cellular identity. Nat Commun. 2019;10:1679 pubmed publisher
  208. Bennett S, Cobos S, Meykler M, Fallah M, Rana N, Chen K, et al. Characterizing Histone Post-translational Modification Alterations in Yeast Neurodegenerative Proteinopathy Models. J Vis Exp. 2019;: pubmed publisher
  209. Lytle N, Ferguson L, Rajbhandari N, Gilroy K, Fox R, Deshpande A, et al. A Multiscale Map of the Stem Cell State in Pancreatic Adenocarcinoma. Cell. 2019;177:572-586.e22 pubmed publisher
  210. Lin C, Hsu Y, Huang Y, Shih Y, Wang C, Chiang W, et al. A KDM6A-KLF10 reinforcing feedback mechanism aggravates diabetic podocyte dysfunction. EMBO Mol Med. 2019;11: pubmed publisher
  211. Rajderkar S, Mann J, Panaretos C, Yumoto K, Li H, Mishina Y, et al. Trim33 is required for appropriate development of pre-cardiogenic mesoderm. Dev Biol. 2019;450:101-114 pubmed publisher
  212. Lima Fernandes E, Murison A, da Silva Medina T, Wang Y, Ma A, Leung C, et al. Targeting bivalency de-represses Indian Hedgehog and inhibits self-renewal of colorectal cancer-initiating cells. Nat Commun. 2019;10:1436 pubmed publisher
  213. Krimpenfort P, Snoek M, Lambooij J, Song J, van der Weide R, Bhaskaran R, et al. A natural WNT signaling variant potently synergizes with Cdkn2ab loss in skin carcinogenesis. Nat Commun. 2019;10:1425 pubmed publisher
  214. Vodnala S, Eil R, Kishton R, Sukumar M, Yamamoto T, Ha N, et al. T cell stemness and dysfunction in tumors are triggered by a common mechanism. Science. 2019;363: pubmed publisher
  215. Kelly M, So J, Rogers A, Gregory G, Li J, Zethoven M, et al. Bcor loss perturbs myeloid differentiation and promotes leukaemogenesis. Nat Commun. 2019;10:1347 pubmed publisher
  216. Perdomo J, Leung H, Ahmadi Z, Yan F, Chong J, Passam F, et al. Neutrophil activation and NETosis are the major drivers of thrombosis in heparin-induced thrombocytopenia. Nat Commun. 2019;10:1322 pubmed publisher
  217. Li H, Petersen S, García Mariscal A, Brakebusch C. Negative Regulation of p53-Induced Senescence by N-WASP Is Crucial for DMBA/TPA-Induced Skin Tumor Formation. Cancer Res. 2019;79:2167-2181 pubmed publisher
  218. Wei X, Guo J, Li Q, Jia Q, Jing Q, Li Y, et al. Bach1 regulates self-renewal and impedes mesendodermal differentiation of human embryonic stem cells. Sci Adv. 2019;5:eaau7887 pubmed publisher
  219. Pergu R, Dagar S, Kumar H, Kumar R, Bhattacharya J, Mylavarapu S. The chaperone ERp29 is required for tunneling nanotube formation by stabilizing MSec. J Biol Chem. 2019;294:7177-7193 pubmed publisher
  220. Chakraborty A, Laukka T, Myllykoski M, Ringel A, Booker M, Tolstorukov M, et al. Histone demethylase KDM6A directly senses oxygen to control chromatin and cell fate. Science. 2019;363:1217-1222 pubmed publisher
  221. Farrelly L, Thompson R, Zhao S, Lepack A, Lyu Y, Bhanu N, et al. Histone serotonylation is a permissive modification that enhances TFIID binding to H3K4me3. Nature. 2019;567:535-539 pubmed publisher
  222. Aranda S, Alcaine Colet A, Blanco E, Borras E, Caillot C, Sabidó E, et al. Chromatin capture links the metabolic enzyme AHCY to stem cell proliferation. Sci Adv. 2019;5:eaav2448 pubmed publisher
  223. Li W, Wang H, Zhao X, Duan H, Cheng B, Liu Y, et al. A methylation-phosphorylation switch determines Plk1 kinase activity and function in DNA damage repair. Sci Adv. 2019;5:eaau7566 pubmed publisher
  224. Lee J, Dindorf J, Eberhardt M, Lai X, Ostalecki C, Koliha N, et al. Innate extracellular vesicles from melanoma patients suppress β-catenin in tumor cells by miRNA-34a. Life Sci Alliance. 2019;2: pubmed publisher
  225. Zhang S, Deng T, Tang W, He B, Furusawa T, Ambs S, et al. Epigenetic regulation of REX1 expression and chromatin binding specificity by HMGNs. Nucleic Acids Res. 2019;47:4449-4461 pubmed publisher
  226. Crippa S, Rossella V, Aprile A, Silvestri L, Rivis S, Scaramuzza S, et al. Bone marrow stromal cells from β-thalassemia patients have impaired hematopoietic supportive capacity. J Clin Invest. 2019;129:1566-1580 pubmed publisher
  227. Liu X, Wang Y, Lu H, Li J, Yan X, Xiao M, et al. Genome-wide analysis identifies NR4A1 as a key mediator of T cell dysfunction. Nature. 2019;567:525-529 pubmed publisher
  228. Lin K, Qiang W, Zhu M, Ding Y, Shi Q, Chen X, et al. Mammalian Pum1 and Pum2 Control Body Size via Translational Regulation of the Cell Cycle Inhibitor Cdkn1b. Cell Rep. 2019;26:2434-2450.e6 pubmed publisher
  229. Nassa G, Salvati A, Tarallo R, Gigantino V, Alexandrova E, Memoli D, et al. Inhibition of histone methyltransferase DOT1L silences ERα gene and blocks proliferation of antiestrogen-resistant breast cancer cells. Sci Adv. 2019;5:eaav5590 pubmed publisher
  230. Majumdar T, Sharma S, Kumar M, Hussain M, Chauhan N, Kalia I, et al. Tryptophan-kynurenine pathway attenuates β-catenin-dependent pro-parasitic role of STING-TICAM2-IRF3-IDO1 signalosome in Toxoplasma gondii infection. Cell Death Dis. 2019;10:161 pubmed publisher
  231. Garcia Bermudez J, Baudrier L, Bayraktar E, Shen Y, La K, Guarecuco R, et al. Squalene accumulation in cholesterol auxotrophic lymphomas prevents oxidative cell death. Nature. 2019;567:118-122 pubmed publisher
  232. Frank T, Tuppi M, Hugle M, Dötsch V, van Wijk S, Fulda S. Cell cycle arrest in mitosis promotes interferon-induced necroptosis. Cell Death Differ. 2019;: pubmed publisher
  233. Nava M, Dutta P, Zemke N, Farias Eisner R, Vadgama J, Wu Y. Transcriptomic and ChIP-sequence interrogation of EGFR signaling in HER2+ breast cancer cells reveals a dynamic chromatin landscape and S100 genes as targets. BMC Med Genomics. 2019;12:32 pubmed publisher
  234. Mathieu J, Detraux D, Kuppers D, Wang Y, Cavanaugh C, Sidhu S, et al. Folliculin regulates mTORC1/2 and WNT pathways in early human pluripotency. Nat Commun. 2019;10:632 pubmed publisher
  235. Suzuki T, Kikuguchi C, Nishijima S, Nagashima T, Takahashi A, Okada M, et al. Postnatal liver functional maturation requires Cnot complex-mediated decay of mRNAs encoding cell cycle and immature liver genes. Development. 2019;146: pubmed publisher
  236. Wei J, Kishton R, Angel M, Conn C, Dalla Venezia N, Marcel V, et al. Ribosomal Proteins Regulate MHC Class I Peptide Generation for Immunosurveillance. Mol Cell. 2019;73:1162-1173.e5 pubmed publisher
  237. Guo J, Dai X, Laurent B, Zheng N, Gan W, Zhang J, et al. AKT methylation by SETDB1 promotes AKT kinase activity and oncogenic functions. Nat Cell Biol. 2019;21:226-237 pubmed publisher
  238. So C, Ramachandran S, Martin A. E3 Ubiquitin Ligases RNF20 and RNF40 Are Required for Double-Stranded Break (DSB) Repair: Evidence for Monoubiquitination of Histone H2B Lysine 120 as a Novel Axis of DSB Signaling and Repair. Mol Cell Biol. 2019;39: pubmed publisher
  239. Del Rosario B, Kriz A, Del Rosario A, Anselmo A, Fry C, White F, et al. Exploration of CTCF post-translation modifications uncovers Serine-224 phosphorylation by PLK1 at pericentric regions during the G2/M transition. elife. 2019;8: pubmed publisher
  240. Zheng Y, Liu A, Wang Z, Cao Q, Wang W, Lin L, et al. Inhibition of EHMT1/2 rescues synaptic and cognitive functions for Alzheimer's disease. Brain. 2019;142:787-807 pubmed publisher
  241. Sharifnia T, Wawer M, Chen T, Huang Q, Weir B, Sizemore A, et al. Small-molecule targeting of brachyury transcription factor addiction in chordoma. Nat Med. 2019;25:292-300 pubmed publisher
  242. Vítor A, Sridhara S, Sabino J, Afonso A, Grosso A, Martin R, et al. Single-molecule imaging of transcription at damaged chromatin. Sci Adv. 2019;5:eaau1249 pubmed publisher
  243. Philips R, Lee J, Gaonkar K, Chanana P, Chung J, Romero Arocha S, et al. HDAC3 restrains CD8-lineage genes to maintain a bi-potential state in CD4+CD8+ thymocytes for CD4-lineage commitment. elife. 2019;8: pubmed publisher
  244. Shen B, Vardy K, Hughes P, Tasdogan A, Zhao Z, Yue R, et al. Integrin alpha11 is an Osteolectin receptor and is required for the maintenance of adult skeletal bone mass. elife. 2019;8: pubmed publisher
  245. Gómez Fernández P, Urtasun A, Paton A, Paton J, Borrego F, Dersh D, et al. Long Interleukin-22 Binding Protein Isoform-1 Is an Intracellular Activator of the Unfolded Protein Response. Front Immunol. 2018;9:2934 pubmed publisher
  246. May J, Kouri F, Hurley L, Liu J, Tommasini Ghelfi S, Ji Y, et al. IDH3α regulates one-carbon metabolism in glioblastoma. Sci Adv. 2019;5:eaat0456 pubmed publisher
  247. Jachimowicz R, Beleggia F, Isensee J, Velpula B, Goergens J, Bustos M, et al. UBQLN4 Represses Homologous Recombination and Is Overexpressed in Aggressive Tumors. Cell. 2019;176:505-519.e22 pubmed publisher
  248. Nicetto D, Donahue G, Jain T, Peng T, Sidoli S, Sheng L, et al. H3K9me3-heterochromatin loss at protein-coding genes enables developmental lineage specification. Science. 2019;363:294-297 pubmed publisher
  249. Żylicz J, Bousard A, Zumer K, Dossin F, Mohammad E, da Rocha S, et al. The Implication of Early Chromatin Changes in X Chromosome Inactivation. Cell. 2019;176:182-197.e23 pubmed publisher
  250. Collins P, Cella M, Porter S, Li S, Gurewitz G, Hong H, et al. Gene Regulatory Programs Conferring Phenotypic Identities to Human NK Cells. Cell. 2019;176:348-360.e12 pubmed publisher
  251. Ciolli Mattioli C, Rom A, Franke V, Imami K, Arrey G, Terne M, et al. Alternative 3' UTRs direct localization of functionally diverse protein isoforms in neuronal compartments. Nucleic Acids Res. 2019;47:2560-2573 pubmed publisher
  252. Liddiard K, Ruis B, Kan Y, Cleal K, Ashelford K, Hendrickson E, et al. DNA Ligase 1 is an essential mediator of sister chromatid telomere fusions in G2 cell cycle phase. Nucleic Acids Res. 2019;47:2402-2424 pubmed publisher
  253. Haldeman J, Conway A, Arlotto M, Slentz D, Muoio D, Becker T, et al. Creation of versatile cloning platforms for transgene expression and dCas9-based epigenome editing. Nucleic Acids Res. 2019;47:e23 pubmed publisher
  254. Volkmar N, Thezenas M, Louie S, Juszkiewicz S, Nomura D, Hegde R, et al. The ER membrane protein complex promotes biogenesis of sterol-related enzymes maintaining cholesterol homeostasis. J Cell Sci. 2019;132: pubmed publisher
  255. Li F, Zeng Z, Xing S, Gullicksrud J, Shan Q, Choi J, et al. Ezh2 programs TFH differentiation by integrating phosphorylation-dependent activation of Bcl6 and polycomb-dependent repression of p19Arf. Nat Commun. 2018;9:5452 pubmed publisher
  256. Laferrière F, Maniecka Z, Pérez Berlanga M, Hruska Plochan M, Gilhespy L, Hock E, et al. TDP-43 extracted from frontotemporal lobar degeneration subject brains displays distinct aggregate assemblies and neurotoxic effects reflecting disease progression rates. Nat Neurosci. 2019;22:65-77 pubmed publisher
  257. Fiore A, Ugel S, De Sanctis F, Sandri S, Fracasso G, Trovato R, et al. Induction of immunosuppressive functions and NF-κB by FLIP in monocytes. Nat Commun. 2018;9:5193 pubmed publisher
  258. Chen X, Zhi X, Wang J, Su J. RANKL signaling in bone marrow mesenchymal stem cells negatively regulates osteoblastic bone formation. Bone Res. 2018;6:34 pubmed publisher
  259. Inoue A, Chen Z, Yin Q, Zhang Y. Maternal Eed knockout causes loss of H3K27me3 imprinting and random X inactivation in the extraembryonic cells. Genes Dev. 2018;32:1525-1536 pubmed publisher
  260. Guo A, Wang Y, Chen B, Wang Y, Yuan J, Zhang L, et al. E-C coupling structural protein junctophilin-2 encodes a stress-adaptive transcription regulator. Science. 2018;362: pubmed publisher
  261. Grigoryan A, Guidi N, Senger K, Liehr T, Soller K, Marka G, et al. LaminA/C regulates epigenetic and chromatin architecture changes upon aging of hematopoietic stem cells. Genome Biol. 2018;19:189 pubmed publisher
  262. Kyei G, Meng S, Ramani R, Niu A, Lagisetti C, Webb T, et al. Splicing Factor 3B Subunit 1 Interacts with HIV Tat and Plays a Role in Viral Transcription and Reactivation from Latency. MBio. 2018;9: pubmed publisher
  263. Biffi G, Oni T, Spielman B, Hao Y, Elyada E, Park Y, et al. IL1-Induced JAK/STAT Signaling Is Antagonized by TGFβ to Shape CAF Heterogeneity in Pancreatic Ductal Adenocarcinoma. Cancer Discov. 2019;9:282-301 pubmed publisher
  264. Chen X, Wanggou S, Bodalia A, Zhu M, Dong W, Fan J, et al. A Feedforward Mechanism Mediated by Mechanosensitive Ion Channel PIEZO1 and Tissue Mechanics Promotes Glioma Aggression. Neuron. 2018;100:799-815.e7 pubmed publisher
  265. Lee H, Willi M, Shin H, Liu C, Hennighausen L. Progressing super-enhancer landscape during mammary differentiation controls tissue-specific gene regulation. Nucleic Acids Res. 2018;46:10796-10809 pubmed publisher
  266. Tischler J, Gruhn W, Reid J, Allgeyer E, Buettner F, Marr C, et al. Metabolic regulation of pluripotency and germ cell fate through α-ketoglutarate. EMBO J. 2019;38: pubmed publisher
  267. Godfrey T, Wildman B, Beloti M, Kemper A, Ferraz E, Roy B, et al. The microRNA-23a cluster regulates the developmental HoxA cluster function during osteoblast differentiation. J Biol Chem. 2018;293:17646-17660 pubmed publisher
  268. Zhang Y, Wang J, Huang W, Cai J, Ba J, Wang Y, et al. Nuclear Nestin deficiency drives tumor senescence via lamin A/C-dependent nuclear deformation. Nat Commun. 2018;9:3613 pubmed publisher
  269. Stewart E, McEvoy J, Wang H, Chen X, Honnell V, Ocarz M, et al. Identification of Therapeutic Targets in Rhabdomyosarcoma through Integrated Genomic, Epigenomic, and Proteomic Analyses. Cancer Cell. 2018;34:411-426.e19 pubmed publisher
  270. Peterson J, Wang D, Shettigar V, Roof S, Canan B, Bakkar N, et al. NF-κB inhibition rescues cardiac function by remodeling calcium genes in a Duchenne muscular dystrophy model. Nat Commun. 2018;9:3431 pubmed publisher
  271. Piragyte I, Clapes T, Polyzou A, Klein Geltink R, Lefkopoulos S, Yin N, et al. A metabolic interplay coordinated by HLX regulates myeloid differentiation and AML through partly overlapping pathways. Nat Commun. 2018;9:3090 pubmed publisher
  272. Klein R, Tung P, Somanath P, Fehling H, Knoepfler P. Genomic functions of developmental pluripotency associated factor 4 (Dppa4) in pluripotent stem cells and cancer. Stem Cell Res. 2018;31:83-94 pubmed publisher
  273. Zhang J, Wu T, Simon J, Takada M, Saito R, Fan C, et al. VHL substrate transcription factor ZHX2 as an oncogenic driver in clear cell renal cell carcinoma. Science. 2018;361:290-295 pubmed publisher
  274. Liszczak G, Diehl K, Dann G, Muir T. Acetylation blocks DNA damage-induced chromatin ADP-ribosylation. Nat Chem Biol. 2018;14:837-840 pubmed publisher
  275. Yasuda Yamahara M, Rogg M, Yamahara K, Maier J, Huber T, Schell C. AIF1L regulates actomyosin contractility and filopodial extensions in human podocytes. PLoS ONE. 2018;13:e0200487 pubmed publisher
  276. Trepte P, Kruse S, Kostova S, Hoffmann S, Buntru A, Tempelmeier A, et al. LuTHy: a double-readout bioluminescence-based two-hybrid technology for quantitative mapping of protein-protein interactions in mammalian cells. Mol Syst Biol. 2018;14:e8071 pubmed publisher
  277. Pulikkan J, Hegde M, Ahmad H, Belaghzal H, Illendula A, Yu J, et al. CBFβ-SMMHC Inhibition Triggers Apoptosis by Disrupting MYC Chromatin Dynamics in Acute Myeloid Leukemia. Cell. 2018;174:172-186.e21 pubmed publisher
  278. Yu R, Wang X, Moazed D. Epigenetic inheritance mediated by coupling of RNAi and histone H3K9 methylation. Nature. 2018;558:615-619 pubmed publisher
  279. Casey A, Sinha A, Singhania R, Livingstone J, Waterhouse P, Tharmapalan P, et al. Mammary molecular portraits reveal lineage-specific features and progenitor cell vulnerabilities. J Cell Biol. 2018;217:2951-2974 pubmed publisher
  280. Alabdi L, He M, Yang Q, Norvil A, Gowher H. The transcription factor Vezf1 represses the expression of the antiangiogenic factor Cited2 in endothelial cells. J Biol Chem. 2018;293:11109-11118 pubmed publisher
  281. Tamassia N, Arruda Silva F, Calzetti F, Lonardi S, Gasperini S, Gardiman E, et al. A Reappraisal on the Potential Ability of Human Neutrophils to Express and Produce IL-17 Family Members In Vitro: Failure to Reproducibly Detect It. Front Immunol. 2018;9:795 pubmed publisher
  282. Pircher J, Czermak T, Ehrlich A, Eberle C, Gaitzsch E, Margraf A, et al. Cathelicidins prime platelets to mediate arterial thrombosis and tissue inflammation. Nat Commun. 2018;9:1523 pubmed publisher
  283. Lu J, Liu L, Zheng M, Li X, Wu A, Wu Q, et al. MEKK2 and MEKK3 suppress Hedgehog pathway-dependent medulloblastoma by inhibiting GLI1 function. Oncogene. 2018;37:3864-3878 pubmed publisher
  284. Fujimoto M, Takii R, Katiyar A, Srivastava P, Nakai A. Poly(ADP-Ribose) Polymerase 1 Promotes the Human Heat Shock Response by Facilitating Heat Shock Transcription Factor 1 Binding to DNA. Mol Cell Biol. 2018;38: pubmed publisher
  285. Kornberg M, Bhargava P, Kim P, Putluri V, Snowman A, Putluri N, et al. Dimethyl fumarate targets GAPDH and aerobic glycolysis to modulate immunity. Science. 2018;360:449-453 pubmed publisher
  286. Andricovich J, Perkail S, Kai Y, Casasanta N, Peng W, Tzatsos A. Loss of KDM6A Activates Super-Enhancers to Induce Gender-Specific Squamous-like Pancreatic Cancer and Confers Sensitivity to BET Inhibitors. Cancer Cell. 2018;33:512-526.e8 pubmed publisher
  287. Ng P, Li J, Jeong K, Shao S, Chen H, Tsang Y, et al. Systematic Functional Annotation of Somatic Mutations in Cancer. Cancer Cell. 2018;33:450-462.e10 pubmed publisher
  288. Qin L, Ma K, Wang Z, Hu Z, Matas E, Wei J, et al. Social deficits in Shank3-deficient mouse models of autism are rescued by histone deacetylase (HDAC) inhibition. Nat Neurosci. 2018;21:564-575 pubmed publisher
  289. Pines A, Dijk M, Makowski M, Meulenbroek E, Vrouwe M, van der Weegen Y, et al. TRiC controls transcription resumption after UV damage by regulating Cockayne syndrome protein A. Nat Commun. 2018;9:1040 pubmed publisher
  290. Mohamed T, Ang Y, Radzinsky E, Zhou P, Huang Y, Elfenbein A, et al. Regulation of Cell Cycle to Stimulate Adult Cardiomyocyte Proliferation and Cardiac Regeneration. Cell. 2018;173:104-116.e12 pubmed publisher
  291. Huang T, Fowler F, Chen C, Shen Z, SLECKMAN B, Tyler J. The Histone Chaperones ASF1 and CAF-1 Promote MMS22L-TONSL-Mediated Rad51 Loading onto ssDNA during Homologous Recombination in Human Cells. Mol Cell. 2018;69:879-892.e5 pubmed publisher
  292. Silva C, Peyre E, Adhikari M, Tielens S, Tanco S, Van Damme P, et al. Cell-Intrinsic Control of Interneuron Migration Drives Cortical Morphogenesis. Cell. 2018;172:1063-1078.e19 pubmed publisher
  293. Hoshii T, Cifani P, Feng Z, Huang C, Koche R, Chen C, et al. A Non-catalytic Function of SETD1A Regulates Cyclin K and the DNA Damage Response. Cell. 2018;172:1007-1021.e17 pubmed publisher
  294. Vlachogiannis G, Hedayat S, Vatsiou A, Jamin Y, Fernández Mateos J, Khan K, et al. Patient-derived organoids model treatment response of metastatic gastrointestinal cancers. Science. 2018;359:920-926 pubmed publisher
  295. Liu X, Wu H, Krzisch M, Wu X, Graef J, Muffat J, et al. Rescue of Fragile X Syndrome Neurons by DNA Methylation Editing of the FMR1 Gene. Cell. 2018;172:979-992.e6 pubmed publisher
  296. Murphy P, Wu S, James C, Wike C, Cairns B. Placeholder Nucleosomes Underlie Germline-to-Embryo DNA Methylation Reprogramming. Cell. 2018;172:993-1006.e13 pubmed publisher
  297. Deng H, Zeng J, Zhang T, Gong L, Zhang H, Cheung E, et al. Histone H3.3K27M Mobilizes Multiple Cancer/Testis (CT) Antigens in Pediatric Glioma. Mol Cancer Res. 2018;16:623-633 pubmed publisher
  298. Bogdan D, Falcone J, Kanjiya M, Park S, Carbonetti G, Studholme K, et al. Fatty acid-binding protein 5 controls microsomal prostaglandin E synthase 1 (mPGES-1) induction during inflammation. J Biol Chem. 2018;293:5295-5306 pubmed publisher
  299. Li F, Liu J, Bao R, Yan G, Feng X, Xu Y, et al. Acetylation accumulates PFKFB3 in cytoplasm to promote glycolysis and protects cells from cisplatin-induced apoptosis. Nat Commun. 2018;9:508 pubmed publisher
  300. Ahmad S, Mu X, Yang F, Greenwald E, Park J, Jacob E, et al. Breaching Self-Tolerance to Alu Duplex RNA Underlies MDA5-Mediated Inflammation. Cell. 2018;172:797-810.e13 pubmed publisher
  301. McClurg U, Nabbi A, Ricordel C, Korolchuk S, McCracken S, Heer R, et al. Human ex vivo prostate tissue model system identifies ING3 as an oncoprotein. Br J Cancer. 2018;118:713-726 pubmed publisher
  302. Griffin J, del Viso F, Duncan A, Robson A, Hwang W, Kulkarni S, et al. RAPGEF5 Regulates Nuclear Translocation of β-Catenin. Dev Cell. 2018;44:248-260.e4 pubmed publisher
  303. Arrizabalaga O, Moreno Cugnon L, Auzmendi Iriarte J, Aldaz P, Ibanez de Caceres I, Garros Regulez L, et al. High expression of MKP1/DUSP1 counteracts glioma stem cell activity and mediates HDAC inhibitor response. Oncogenesis. 2017;6:401 pubmed publisher
  304. Oldrini B, Hsieh W, Erdjument Bromage H, Codega P, Carro M, Curiel García A, et al. EGFR feedback-inhibition by Ran-binding protein 6 is disrupted in cancer. Nat Commun. 2017;8:2035 pubmed publisher
  305. Wu Y, Zhang Z, Cenciarini M, Proietti C, Amasino M, Hong T, et al. Tamoxifen Resistance in Breast Cancer Is Regulated by the EZH2-ERα-GREB1 Transcriptional Axis. Cancer Res. 2018;78:671-684 pubmed publisher
  306. Zhang J, Bu X, Wang H, Zhu Y, Geng Y, Nihira N, et al. Cyclin D-CDK4 kinase destabilizes PD-L1 via cullin 3-SPOP to control cancer immune surveillance. Nature. 2018;553:91-95 pubmed publisher
  307. Shukla S, Cyrta J, Murphy D, Walczak E, Ran L, Agrawal P, et al. Aberrant Activation of a Gastrointestinal Transcriptional Circuit in Prostate Cancer Mediates Castration Resistance. Cancer Cell. 2017;32:792-806.e7 pubmed publisher
  308. Matson J, Dumitru R, Coryell P, Baxley R, Chen W, Twaroski K, et al. Rapid DNA replication origin licensing protects stem cell pluripotency. elife. 2017;6: pubmed publisher
  309. Somyajit K, Gupta R, Sedlackova H, Neelsen K, Ochs F, Rask M, et al. Redox-sensitive alteration of replisome architecture safeguards genome integrity. Science. 2017;358:797-802 pubmed publisher
  310. Fujita J, Freire P, Coarfa C, Benham A, Gunaratne P, Schneider M, et al. Ronin Governs Early Heart Development by Controlling Core Gene Expression Programs. Cell Rep. 2017;21:1562-1573 pubmed publisher
  311. Kelso T, Porter D, Amaral M, Shokhirev M, Benner C, Hargreaves D. Chromatin accessibility underlies synthetic lethality of SWI/SNF subunits in ARID1A-mutant cancers. elife. 2017;6: pubmed publisher
  312. Noutsou M, Li J, Ling J, Jones J, Wang Y, Chen Y, et al. The Cohesin Complex Is Necessary for Epidermal Progenitor Cell Function through Maintenance of Self-Renewal Genes. Cell Rep. 2017;20:3005-3013 pubmed publisher
  313. Sunwoo H, Colognori D, Froberg J, Jeon Y, Lee J. Repeat E anchors Xist RNA to the inactive X chromosomal compartment through CDKN1A-interacting protein (CIZ1). Proc Natl Acad Sci U S A. 2017;114:10654-10659 pubmed publisher
  314. Casoni F, Croci L, Bosone C, D Ambrosio R, Badaloni A, Gaudesi D, et al. Zfp423/ZNF423 regulates cell cycle progression, the mode of cell division and the DNA-damage response in Purkinje neuron progenitors. Development. 2017;144:3686-3697 pubmed publisher
  315. Khanal T, Choi K, Leung Y, Wang J, Kim D, Janakiram V, et al. Loss of NR2E3 represses AHR by LSD1 reprogramming, is associated with poor prognosis in liver cancer. Sci Rep. 2017;7:10662 pubmed publisher
  316. Gao X, Lee H, Li W, Platt R, Barrasa M, Ma Q, et al. Thyroid hormone receptor beta and NCOA4 regulate terminal erythrocyte differentiation. Proc Natl Acad Sci U S A. 2017;114:10107-10112 pubmed publisher
  317. Rong X, Wang B, Palladino E, de Aguiar Vallim T, Ford D, Tontonoz P. ER phospholipid composition modulates lipogenesis during feeding and in obesity. J Clin Invest. 2017;127:3640-3651 pubmed publisher
  318. Liu X, Zhang Y, Chen Y, Li M, Zhou F, Li K, et al. In Situ Capture of Chromatin Interactions by Biotinylated dCas9. Cell. 2017;170:1028-1043.e19 pubmed publisher
  319. Wang Y, Zhang J, Su Y, Shen Y, Jiang D, Hou Y, et al. G9a regulates breast cancer growth by modulating iron homeostasis through the repression of ferroxidase hephaestin. Nat Commun. 2017;8:274 pubmed publisher
  320. Rubin A, Barajas B, Furlan Magaril M, Lopez Pajares V, Mumbach M, Howard I, et al. Lineage-specific dynamic and pre-established enhancer-promoter contacts cooperate in terminal differentiation. Nat Genet. 2017;49:1522-1528 pubmed publisher
  321. Wanet A, Caruso M, Domelevo Entfellner J, Najar M, Fattaccioli A, Demazy C, et al. The Transcription Factor 7-Like 2-Peroxisome Proliferator-Activated Receptor Gamma Coactivator-1 Alpha Axis Connects Mitochondrial Biogenesis and Metabolic Shift with Stem Cell Commitment to Hepatic Differentiation. Stem Cells. 2017;35:2184-2197 pubmed publisher
  322. Krapivinsky G, Krapivinsky L, Renthal N, Santa Cruz A, Manasian Y, Clapham D. Histone phosphorylation by TRPM6's cleaved kinase attenuates adjacent arginine methylation to regulate gene expression. Proc Natl Acad Sci U S A. 2017;114:E7092-E7100 pubmed publisher
  323. Zenk F, Loeser E, Schiavo R, Kilpert F, Bogdanović O, Iovino N. Germ line-inherited H3K27me3 restricts enhancer function during maternal-to-zygotic transition. Science. 2017;357:212-216 pubmed publisher
  324. Yuen K, Slaughter B, Gerton J. Condensin II is anchored by TFIIIC and H3K4me3 in the mammalian genome and supports the expression of active dense gene clusters. Sci Adv. 2017;3:e1700191 pubmed publisher
  325. Perez Leal O, Barrero C, Merali S. Pharmacological stimulation of nuclear factor (erythroid-derived 2)-like 2 translation activates antioxidant responses. J Biol Chem. 2017;292:14108-14121 pubmed publisher
  326. Bleuyard J, Fournier M, Nakato R, Couturier A, Katou Y, Ralf C, et al. MRG15-mediated tethering of PALB2 to unperturbed chromatin protects active genes from genotoxic stress. Proc Natl Acad Sci U S A. 2017;114:7671-7676 pubmed publisher
  327. van Groningen T, Koster J, Valentijn L, Zwijnenburg D, Akogul N, Hasselt N, et al. Neuroblastoma is composed of two super-enhancer-associated differentiation states. Nat Genet. 2017;49:1261-1266 pubmed publisher
  328. Liang X, Yuan X, Yu J, Wu Y, Li K, Sun C, et al. Histone Chaperone ASF1A Predicts Poor Outcomes for Patients With Gastrointestinal Cancer and Drives Cancer Progression by Stimulating Transcription of β-Catenin Target Genes. EBioMedicine. 2017;21:104-116 pubmed publisher
  329. Mahajan K, Malla P, Lawrence H, Chen Z, Kumar Sinha C, Malik R, et al. ACK1/TNK2 Regulates Histone H4 Tyr88-phosphorylation and AR Gene Expression in Castration-Resistant Prostate Cancer. Cancer Cell. 2017;31:790-803.e8 pubmed publisher
  330. Sodero A, Rodríguez Silva M, Salio C, Sassoè Pognetto M, Chambers J. Sab is differentially expressed in the brain and affects neuronal activity. Brain Res. 2017;1670:76-85 pubmed publisher
  331. Natale F, Rapp A, Yu W, Maiser A, Harz H, Scholl A, et al. Identification of the elementary structural units of the DNA damage response. Nat Commun. 2017;8:15760 pubmed publisher
  332. Raices M, Bukata L, Sakuma S, Borlido J, Hernandez L, Hart D, et al. Nuclear Pores Regulate Muscle Development and Maintenance by Assembling a Localized Mef2C Complex. Dev Cell. 2017;41:540-554.e7 pubmed publisher
  333. Bj Rås K, Sousa M, Sharma A, Fonseca D, S Gaard C, Bj Rås M, et al. Monitoring of the spatial and temporal dynamics of BER/SSBR pathway proteins, including MYH, UNG2, MPG, NTH1 and NEIL1-3, during DNA replication. Nucleic Acids Res. 2017;45:8291-8301 pubmed publisher
  334. Mews P, Donahue G, Drake A, Luczak V, Abel T, Berger S. Acetyl-CoA synthetase regulates histone acetylation and hippocampal memory. Nature. 2017;546:381-386 pubmed publisher
  335. Gosselin D, Skola D, Coufal N, Holtman I, Schlachetzki J, Sajti E, et al. An environment-dependent transcriptional network specifies human microglia identity. Science. 2017;356: pubmed publisher
  336. Pasutto F, Zenkel M, Hoja U, Berner D, Uebe S, Ferrazzi F, et al. Pseudoexfoliation syndrome-associated genetic variants affect transcription factor binding and alternative splicing of LOXL1. Nat Commun. 2017;8:15466 pubmed publisher
  337. Mildner A, Schönheit J, Giladi A, David E, Lara Astiaso D, Lorenzo Vivas E, et al. Genomic Characterization of Murine Monocytes Reveals C/EBP? Transcription Factor Dependence of Ly6C- Cells. Immunity. 2017;46:849-862.e7 pubmed publisher
  338. Natsume T, Nishimura K, Minocherhomji S, Bhowmick R, Hickson I, Kanemaki M. Acute inactivation of the replicative helicase in human cells triggers MCM8-9-dependent DNA synthesis. Genes Dev. 2017;31:816-829 pubmed publisher
  339. del Toro D, Ruff T, Cederfjäll E, Villalba A, Seyit Bremer G, Borrell V, et al. Regulation of Cerebral Cortex Folding by Controlling Neuronal Migration via FLRT Adhesion Molecules. Cell. 2017;169:621-635.e16 pubmed publisher
  340. Ma S, Wan X, Deng Z, Shi L, Hao C, Zhou Z, et al. Epigenetic regulator CXXC5 recruits DNA demethylase Tet2 to regulate TLR7/9-elicited IFN response in pDCs. J Exp Med. 2017;214:1471-1491 pubmed publisher
  341. Wang X, Wang R, Luo M, Li C, Wang H, Huan C, et al. (DEAD)-box RNA helicase 3 modulates NF-κB signal pathway by controlling the phosphorylation of PP2A-C subunit. Oncotarget. 2017;8:33197-33213 pubmed publisher
  342. Yan Y, Zhao W, Huang Y, Tong H, Xia Y, Jiang Q, et al. Loss of Polycomb Group Protein Pcgf1 Severely Compromises Proper Differentiation of Embryonic Stem Cells. Sci Rep. 2017;7:46276 pubmed publisher
  343. Shin C, Ito Y, Ichikawa S, Tokunaga M, Sakata Sogawa K, Tanaka T. MKRN2 is a novel ubiquitin E3 ligase for the p65 subunit of NF-κB and negatively regulates inflammatory responses. Sci Rep. 2017;7:46097 pubmed publisher
  344. Sidhaye J, Norden C. Concerted action of neuroepithelial basal shrinkage and active epithelial migration ensures efficient optic cup morphogenesis. elife. 2017;6: pubmed publisher
  345. Li X, Song N, Liu L, Liu X, Ding X, Song X, et al. USP9X regulates centrosome duplication and promotes breast carcinogenesis. Nat Commun. 2017;8:14866 pubmed publisher
  346. Luo D, de Morrée A, Boutet S, Quach N, Natu V, Rustagi A, et al. Deltex2 represses MyoD expression and inhibits myogenic differentiation by acting as a negative regulator of Jmjd1c. Proc Natl Acad Sci U S A. 2017;114:E3071-E3080 pubmed publisher
  347. Krejci J, Legartova S, Bartova E. Neural Differentiation in HDAC1-Depleted Cells Is Accompanied by Coilin Downregulation and the Accumulation of Cajal Bodies in Nucleoli. Stem Cells Int. 2017;2017:1021240 pubmed publisher
  348. Chen G, Nie S, Han C, Ma K, Xu Y, Zhang Z, et al. Antidyskinetic Effects of MEK Inhibitor Are Associated with Multiple Neurochemical Alterations in the Striatum of Hemiparkinsonian Rats. Front Neurosci. 2017;11:112 pubmed publisher
  349. Lee H, Willi M, Wang C, Yang C, Smith H, Liu C, et al. Functional assessment of CTCF sites at cytokine-sensing mammary enhancers using CRISPR/Cas9 gene editing in mice. Nucleic Acids Res. 2017;45:4606-4618 pubmed publisher
  350. Kazakevych J, Sayols S, Messner B, Krienke C, Soshnikova N. Dynamic changes in chromatin states during specification and differentiation of adult intestinal stem cells. Nucleic Acids Res. 2017;45:5770-5784 pubmed publisher
  351. Li N, Xue W, Yuan H, Dong B, Ding Y, Liu Y, et al. AKT-mediated stabilization of histone methyltransferase WHSC1 promotes prostate cancer metastasis. J Clin Invest. 2017;127:1284-1302 pubmed publisher
  352. Liang Z, Brown K, Carroll T, Taylor B, Vidal I, Hendrich B, et al. A high-resolution map of transcriptional repression. elife. 2017;6: pubmed publisher
  353. Zhang X, Li B, Rezaeian A, Xu X, Chou P, Jin G, et al. H3 ubiquitination by NEDD4 regulates H3 acetylation and tumorigenesis. Nat Commun. 2017;8:14799 pubmed publisher
  354. Cruz Molina S, Respuela P, Tebartz C, Kolovos P, Nikolic M, Fueyo R, et al. PRC2 Facilitates the Regulatory Topology Required for Poised Enhancer Function during Pluripotent Stem Cell Differentiation. Cell Stem Cell. 2017;20:689-705.e9 pubmed publisher
  355. Douet J, Corujo D, Malinverni R, Renauld J, Sansoni V, Posavec Marjanović M, et al. MacroH2A histone variants maintain nuclear organization and heterochromatin architecture. J Cell Sci. 2017;130:1570-1582 pubmed publisher
  356. Lau M, Schwartz M, Kundu S, Savol A, Wang P, Marr S, et al. Mutation of a nucleosome compaction region disrupts Polycomb-mediated axial patterning. Science. 2017;355:1081-1084 pubmed publisher
  357. Teveroni E, Pellegrino M, Sacconi S, Calandra P, Cascino I, Farioli Vecchioli S, et al. Estrogens enhance myoblast differentiation in facioscapulohumeral muscular dystrophy by antagonizing DUX4 activity. J Clin Invest. 2017;127:1531-1545 pubmed publisher
  358. Rakhimova A, Ura S, Hsu D, Wang H, Pears C, Lakin N. Site-specific ADP-ribosylation of histone H2B in response to DNA double strand breaks. Sci Rep. 2017;7:43750 pubmed publisher
  359. Nguyen K, Das B, Dobrowolski C, Karn J. Multiple Histone Lysine Methyltransferases Are Required for the Establishment and Maintenance of HIV-1 Latency. MBio. 2017;8: pubmed publisher
  360. Wan L, Wen H, Li Y, Lyu J, Xi Y, Hoshii T, et al. ENL links histone acetylation to oncogenic gene expression in acute myeloid leukaemia. Nature. 2017;543:265-269 pubmed publisher
  361. Ragni C, Diguet N, Le Garrec J, Novotova M, Resende T, Pop S, et al. Amotl1 mediates sequestration of the Hippo effector Yap1 downstream of Fat4 to restrict heart growth. Nat Commun. 2017;8:14582 pubmed publisher
  362. Soboleva T, Parker B, Nekrasov M, Hart Smith G, Tay Y, Tng W, et al. A new link between transcriptional initiation and pre-mRNA splicing: The RNA binding histone variant H2A.B. PLoS Genet. 2017;13:e1006633 pubmed publisher
  363. Canver M, Lessard S, Pinello L, Wu Y, Ilboudo Y, Stern E, et al. Variant-aware saturating mutagenesis using multiple Cas9 nucleases identifies regulatory elements at trait-associated loci. Nat Genet. 2017;49:625-634 pubmed publisher
  364. Gherardi S, Ripoche D, Mikaelian I, Chanal M, Teinturier R, Goehrig D, et al. Menin regulates Inhbb expression through an Akt/Ezh2-mediated H3K27 histone modification. Biochim Biophys Acta Gene Regul Mech. 2017;1860:427-437 pubmed publisher
  365. Conaway E, de Oliveira D, McInnis C, Snapper S, Horwitz B. Inhibition of Inflammatory Gene Transcription by IL-10 Is Associated with Rapid Suppression of Lipopolysaccharide-Induced Enhancer Activation. J Immunol. 2017;198:2906-2915 pubmed publisher
  366. Xu H, Di Antonio M, McKinney S, Mathew V, Ho B, O Neil N, et al. CX-5461 is a DNA G-quadruplex stabilizer with selective lethality in BRCA1/2 deficient tumours. Nat Commun. 2017;8:14432 pubmed publisher
  367. Amendola P, Zaghet N, Ramalho J, Vilstrup Johansen J, Boxem M, Salcini A. JMJD-5/KDM8 regulates H3K36me2 and is required for late steps of homologous recombination and genome integrity. PLoS Genet. 2017;13:e1006632 pubmed publisher
  368. Guitart A, Panagopoulou T, Villacreces A, Vukovic M, Sepúlveda C, Allen L, et al. Fumarate hydratase is a critical metabolic regulator of hematopoietic stem cell functions. J Exp Med. 2017;214:719-735 pubmed publisher
  369. Jung J, Nayak A, Schaeffer V, Starzetz T, Kirsch A, Muller S, et al. Multiplex image-based autophagy RNAi screening identifies SMCR8 as ULK1 kinase activity and gene expression regulator. elife. 2017;6: pubmed publisher
  370. Meisenberg C, Ashour M, El Shafie L, Liao C, Hodgson A, Pilborough A, et al. Epigenetic changes in histone acetylation underpin resistance to the topoisomerase I inhibitor irinotecan. Nucleic Acids Res. 2017;45:1159-1176 pubmed publisher
  371. Tu Y, Liu H, Zhu X, Shen H, Ma X, Wang F, et al. Ataxin-3 promotes genome integrity by stabilizing Chk1. Nucleic Acids Res. 2017;45:4532-4549 pubmed publisher
  372. Li G, Ji T, Chen J, Fu Y, Hou L, Feng Y, et al. CRL4DCAF8 Ubiquitin Ligase Targets Histone H3K79 and Promotes H3K9 Methylation in the Liver. Cell Rep. 2017;18:1499-1511 pubmed publisher
  373. Tormos A, Rius Pérez S, Jorques M, Rada P, Ramírez L, Valverde A, et al. p38α regulates actin cytoskeleton and cytokinesis in hepatocytes during development and aging. PLoS ONE. 2017;12:e0171738 pubmed publisher
  374. Wu N, Jia D, Bates B, Basom R, Eberhart C, MacPherson D. A mouse model of MYCN-driven retinoblastoma reveals MYCN-independent tumor reemergence. J Clin Invest. 2017;127:888-898 pubmed publisher
  375. Kuan I, Liang K, Wang Y, Kuo T, Meir Y, Wu S, et al. EpEX/EpCAM and Oct4 or Klf4 alone are sufficient to generate induced pluripotent stem cells through STAT3 and HIF2α. Sci Rep. 2017;7:41852 pubmed publisher
  376. He Y, Selvaraju S, Curtin M, Jakob C, Zhu H, Comess K, et al. The EED protein-protein interaction inhibitor A-395 inactivates the PRC2 complex. Nat Chem Biol. 2017;13:389-395 pubmed publisher
  377. Yamagata K, Kobayashi A. The cysteine-rich domain of TET2 binds preferentially to mono- and dimethylated histone H3K36. J Biochem. 2017;161:327-330 pubmed publisher
  378. Barateau A, Vadrot N, Vicart P, Ferreiro A, Mayer M, Heron D, et al. A Novel Lamin A Mutant Responsible for Congenital Muscular Dystrophy Causes Distinct Abnormalities of the Cell Nucleus. PLoS ONE. 2017;12:e0169189 pubmed publisher
  379. Young C, Hillyer C, Hokamp K, Fitzpatrick D, Konstantinov N, Welty J, et al. Distinct histone methylation and transcription profiles are established during the development of cellular quiescence in yeast. BMC Genomics. 2017;18:107 pubmed publisher
  380. Gong Y, Handa N, Kowalczykowski S, de Lange T. PHF11 promotes DSB resection, ATR signaling, and HR. Genes Dev. 2017;31:46-58 pubmed publisher
  381. Bershteyn M, Nowakowski T, Pollen A, Di Lullo E, Nene A, Wynshaw Boris A, et al. Human iPSC-Derived Cerebral Organoids Model Cellular Features of Lissencephaly and Reveal Prolonged Mitosis of Outer Radial Glia. Cell Stem Cell. 2017;20:435-449.e4 pubmed publisher
  382. Tagal V, Wei S, Zhang W, Brekken R, Posner B, Peyton M, et al. SMARCA4-inactivating mutations increase sensitivity to Aurora kinase A inhibitor VX-680 in non-small cell lung cancers. Nat Commun. 2017;8:14098 pubmed publisher
  383. Gopal S, Veracini L, Grall D, Butori C, Schaub S, Audebert S, et al. Fibronectin-guided migration of carcinoma collectives. Nat Commun. 2017;8:14105 pubmed publisher
  384. Sherman M, Yu R, Tseng T, Sousa C, Liu S, Truitt M, et al. Stromal cues regulate the pancreatic cancer epigenome and metabolome. Proc Natl Acad Sci U S A. 2017;114:1129-1134 pubmed publisher
  385. de Castro I, Budzak J, Di Giacinto M, Ligammari L, Gokhan E, Spanos C, et al. Repo-Man/PP1 regulates heterochromatin formation in interphase. Nat Commun. 2017;8:14048 pubmed publisher
  386. Maatouk D, Natarajan A, Shibata Y, Song L, Crawford G, Ohler U, et al. Genome-wide identification of regulatory elements in Sertoli cells. Development. 2017;144:720-730 pubmed publisher
  387. Choi Y, Lin C, Risso D, Chen S, Kim T, Tan M, et al. Deficiency of microRNA miR-34a expands cell fate potential in pluripotent stem cells. Science. 2017;355: pubmed publisher
  388. Safina A, Cheney P, Pal M, Brodsky L, Ivanov A, Kirsanov K, et al. FACT is a sensor of DNA torsional stress in eukaryotic cells. Nucleic Acids Res. 2017;45:1925-1945 pubmed publisher
  389. Wu H, Gordon J, Whitfield T, Tai P, Van Wijnen A, Stein J, et al. Chromatin dynamics regulate mesenchymal stem cell lineage specification and differentiation to osteogenesis. Biochim Biophys Acta Gene Regul Mech. 2017;1860:438-449 pubmed publisher
  390. Li C, Chang L, Chen Z, Liu Z, Wang Y, Ye Q. The role of lncRNA MALAT1 in the regulation of hepatocyte proliferation during liver regeneration. Int J Mol Med. 2017;39:347-356 pubmed publisher
  391. Fitter S, Matthews M, Martin S, Xie J, Ooi S, Walkley C, et al. mTORC1 Plays an Important Role in Skeletal Development by Controlling Preosteoblast Differentiation. Mol Cell Biol. 2017;37: pubmed publisher
  392. Papillon Cavanagh S, Lu C, Gayden T, Mikael L, Bechet D, Karamboulas C, et al. Impaired H3K36 methylation defines a subset of head and neck squamous cell carcinomas. Nat Genet. 2017;49:180-185 pubmed publisher
  393. Herold N, Rudd S, Ljungblad L, Sanjiv K, Myrberg I, Paulin C, et al. Targeting SAMHD1 with the Vpx protein to improve cytarabine therapy for hematological malignancies. Nat Med. 2017;23:256-263 pubmed publisher
  394. Muralidharan B, Khatri Z, Maheshwari U, Gupta R, Roy B, Pradhan S, et al. LHX2 Interacts with the NuRD Complex and Regulates Cortical Neuron Subtype Determinants Fezf2 and Sox11. J Neurosci. 2017;37:194-203 pubmed publisher
  395. Fantini D, Huang S, Asara J, Bagchi S, Raychaudhuri P. Chromatin association of XRCC5/6 in the absence of DNA damage depends on the XPE gene product DDB2. Mol Biol Cell. 2017;28:192-200 pubmed publisher
  396. Schauwecker S, Kim J, Licht J, Clevenger C. Histone H1 and Chromosomal Protein HMGN2 Regulate Prolactin-induced STAT5 Transcription Factor Recruitment and Function in Breast Cancer Cells. J Biol Chem. 2017;292:2237-2254 pubmed publisher
  397. Zhu F, Hwang B, Miyamoto S, Rui L. Nuclear Import of JAK1 Is Mediated by a Classical NLS and Is Required for Survival of Diffuse Large B-cell Lymphoma. Mol Cancer Res. 2017;15:348-357 pubmed publisher
  398. Wong B, Wang X, Zecchin A, Thienpont B, Cornelissen I, Kalucka J, et al. The role of fatty acid ?-oxidation in lymphangiogenesis. Nature. 2017;542:49-54 pubmed publisher
  399. Zeng X, Willi M, Shin H, Hennighausen L, Wang C. Lineage-Specific and Non-specific Cytokine-Sensing Genes Respond Differentially to the Master Regulator STAT5. Cell Rep. 2016;17:3333-3346 pubmed publisher
  400. Jiang P, Gan M, Yen S, McLean P, Dickson D. Histones facilitate α-synuclein aggregation during neuronal apoptosis. Acta Neuropathol. 2017;133:547-558 pubmed publisher
  401. Archacki R, Yatusevich R, Buszewicz D, Krzyczmonik K, Patryn J, Iwanicka Nowicka R, et al. Arabidopsis SWI/SNF chromatin remodeling complex binds both promoters and terminators to regulate gene expression. Nucleic Acids Res. 2017;45:3116-3129 pubmed publisher
  402. Zhou L, Baibakov B, Canagarajah B, Xiong B, Dean J. Genetic mosaics and time-lapse imaging identify functions of histone H3.3 residues in mouse oocytes and embryos. Development. 2017;144:519-528 pubmed publisher
  403. Ang Y, Rivas R, Ribeiro A, Srivas R, Rivera J, Stone N, et al. Disease Model of GATA4 Mutation Reveals Transcription Factor Cooperativity in Human Cardiogenesis. Cell. 2016;167:1734-1749.e22 pubmed publisher
  404. Assadi G, Vesterlund L, Bonfiglio F, Mazzurana L, Cordeddu L, Schepis D, et al. Functional Analyses of the Crohn's Disease Risk Gene LACC1. PLoS ONE. 2016;11:e0168276 pubmed publisher
  405. Göllner S, Oellerich T, Agrawal Singh S, Schenk T, Klein H, Rohde C, et al. Loss of the histone methyltransferase EZH2 induces resistance to multiple drugs in acute myeloid leukemia. Nat Med. 2017;23:69-78 pubmed publisher
  406. Neeli I, Radic M. Current Challenges and Limitations in Antibody-Based Detection of Citrullinated Histones. Front Immunol. 2016;7:528 pubmed
  407. Pan G, Ameur A, Enroth S, Bysani M, Nord H, Cavalli M, et al. PATZ1 down-regulates FADS1 by binding to rs174557 and is opposed by SP1/SREBP1c. Nucleic Acids Res. 2017;45:2408-2422 pubmed publisher
  408. Zhu P, Wang Y, Wu J, Huang G, Liu B, Ye B, et al. LncBRM initiates YAP1 signalling activation to drive self-renewal of liver cancer stem cells. Nat Commun. 2016;7:13608 pubmed publisher
  409. Sareddy G, Viswanadhapalli S, Surapaneni P, Suzuki T, Brenner A, Vadlamudi R. Novel KDM1A inhibitors induce differentiation and apoptosis of glioma stem cells via unfolded protein response pathway. Oncogene. 2017;36:2423-2434 pubmed publisher
  410. Cooper S, Grijzenhout A, Underwood E, Ancelin K, Zhang T, Nesterova T, et al. Jarid2 binds mono-ubiquitylated H2A lysine 119 to mediate crosstalk between Polycomb complexes PRC1 and PRC2. Nat Commun. 2016;7:13661 pubmed publisher
  411. Svoboda L, Bailey N, Van Noord R, Krook M, Harris A, Cramer C, et al. Tumorigenicity of Ewing sarcoma is critically dependent on the trithorax proteins MLL1 and menin. Oncotarget. 2017;8:458-471 pubmed publisher
  412. Su F, Myers V, Knezevic T, Wang J, Gao E, Madesh M, et al. Bcl-2-associated athanogene 3 protects the heart from ischemia/reperfusion injury. JCI Insight. 2016;1:e90931 pubmed publisher
  413. Lu W, Liu S, Li B, Xie Y, Izban M, Ballard B, et al. SKP2 loss destabilizes EZH2 by promoting TRAF6-mediated ubiquitination to suppress prostate cancer. Oncogene. 2017;36:1364-1373 pubmed publisher
  414. Okashita N, Suwa Y, Nishimura O, Sakashita N, Kadota M, Nagamatsu G, et al. PRDM14 Drives OCT3/4 Recruitment via Active Demethylation in the Transition from Primed to Naive Pluripotency. Stem Cell Reports. 2016;7:1072-1086 pubmed publisher
  415. Ibañez Rodriguez M, Noctor S, Muñoz E. Cellular Basis of Pineal Gland Development: Emerging Role of Microglia as Phenotype Regulator. PLoS ONE. 2016;11:e0167063 pubmed publisher
  416. Bileck A, Mayer R, Kreutz D, Weiss T, Taschner Mandl S, Meier S, et al. Evaluation of inflammation-related signaling events covering phosphorylation and nuclear translocation of proteins based on mass spectrometry data. J Proteomics. 2017;152:161-171 pubmed publisher
  417. de León Bautista M, Cárdenas Aguayo M, Casique Aguirre D, Almaraz Salinas M, Parraguirre Martínez S, Olivo Díaz A, et al. Immunological and Functional Characterization of RhoGDI3 and Its Molecular Targets RhoG and RhoB in Human Pancreatic Cancerous and Normal Cells. PLoS ONE. 2016;11:e0166370 pubmed publisher
  418. Busby M, Xue C, Li C, Farjoun Y, Gienger E, Yofe I, et al. Systematic comparison of monoclonal versus polyclonal antibodies for mapping histone modifications by ChIP-seq. Epigenetics Chromatin. 2016;9:49 pubmed
  419. Niu N, Shao R, Yan G, Zou W. Bromodomain and Extra-terminal (BET) Protein Inhibitors Suppress Chondrocyte Differentiation and Restrain Bone Growth. J Biol Chem. 2016;291:26647-26657 pubmed publisher
  420. Hansen R, Mund A, Poulsen S, Sandoval M, Klement K, Tsouroula K, et al. SCAI promotes DNA double-strand break repair in distinct chromosomal contexts. Nat Cell Biol. 2016;18:1357-1366 pubmed publisher
  421. Alfano L, Costa C, Caporaso A, Antonini D, Giordano A, Pentimalli F. HUR protects NONO from degradation by mir320, which is induced by p53 upon UV irradiation. Oncotarget. 2016;7:78127-78139 pubmed publisher
  422. Zhu L, Gómez Durán A, Saretzki G, Jin S, Tilgner K, Melguizo Sanchís D, et al. The mitochondrial protein CHCHD2 primes the differentiation potential of human induced pluripotent stem cells to neuroectodermal lineages. J Cell Biol. 2016;215:187-202 pubmed
  423. Chakraborty D, Cui W, Rosario G, Scott R, Dhakal P, Renaud S, et al. HIF-KDM3A-MMP12 regulatory circuit ensures trophoblast plasticity and placental adaptations to hypoxia. Proc Natl Acad Sci U S A. 2016;113:E7212-E7221 pubmed
  424. Natisvili T, Yandim C, Silva R, Emanuelli G, Krueger F, Nageshwaran S, et al. Transcriptional Activation of Pericentromeric Satellite Repeats and Disruption of Centromeric Clustering upon Proteasome Inhibition. PLoS ONE. 2016;11:e0165873 pubmed publisher
  425. Lin W, FRANCIS J, Li H, Gao X, Pedamallu C, Ernst P, et al. Kmt2a cooperates with menin to suppress tumorigenesis in mouse pancreatic islets. Cancer Biol Ther. 2016;17:1274-1281 pubmed publisher
  426. Day K, Lorenzatti Hiles G, Kozminsky M, Dawsey S, Paul A, Broses L, et al. HER2 and EGFR Overexpression Support Metastatic Progression of Prostate Cancer to Bone. Cancer Res. 2017;77:74-85 pubmed publisher
  427. Schlierf A, Altmann E, Quancard J, Jefferson A, Assenberg R, Renatus M, et al. Targeted inhibition of the COP9 signalosome for treatment of cancer. Nat Commun. 2016;7:13166 pubmed publisher
  428. Ren K, Zhang W, Chen X, Ma Y, Dai Y, Fan Y, et al. An Epigenetic Compound Library Screen Identifies BET Inhibitors That Promote HSV-1 and -2 Replication by Bridging P-TEFb to Viral Gene Promoters through BRD4. PLoS Pathog. 2016;12:e1005950 pubmed publisher
  429. Strikoudis A, Lazaris C, Trimarchi T, Galvao Neto A, Yang Y, Ntziachristos P, et al. Regulation of transcriptional elongation in pluripotency and cell differentiation by the PHD-finger protein Phf5a. Nat Cell Biol. 2016;18:1127-1138 pubmed publisher
  430. Chen Y, Xu J, Skanderup A, Dong Y, Brannon A, Wang L, et al. Molecular analysis of aggressive renal cell carcinoma with unclassified histology reveals distinct subsets. Nat Commun. 2016;7:13131 pubmed publisher
  431. Willi M, Yoo K, Wang C, Trajanoski Z, Hennighausen L. Differential cytokine sensitivities of STAT5-dependent enhancers rely on Stat5 autoregulation. Nucleic Acids Res. 2016;44:10277-10291 pubmed
  432. Zhuang J, Kamp W, Li J, Liu C, Kang J, Wang P, et al. Forkhead Box O3A (FOXO3) and the Mitochondrial Disulfide Relay Carrier (CHCHD4) Regulate p53 Protein Nuclear Activity in Response to Exercise. J Biol Chem. 2016;291:24819-24827 pubmed
  433. Ho T, Huang J, Zhou N, Zhang Z, Koirala P, Zhou X, et al. Regulation of PCGEM1 by p54/nrb in prostate cancer. Sci Rep. 2016;6:34529 pubmed publisher
  434. Wu R, Wang Z, Zhang H, Gan H, Zhang Z. H3K9me3 demethylase Kdm4d facilitates the formation of pre-initiative complex and regulates DNA replication. Nucleic Acids Res. 2017;45:169-180 pubmed publisher
  435. Liu Y, Wang T, Zhang R, Fu W, Wang X, Wang F, et al. Calorie restriction protects against experimental abdominal aortic aneurysms in mice. J Exp Med. 2016;213:2473-2488 pubmed
  436. Fang L, Chen D, Yu C, Li H, Brocato J, Huang L, et al. Mechanisms Underlying Acrolein-Mediated Inhibition of Chromatin Assembly. Mol Cell Biol. 2016;36:2995-3008 pubmed publisher
  437. Schmitt A, Garcia J, Hung T, Flynn R, Shen Y, Qu K, et al. An inducible long noncoding RNA amplifies DNA damage signaling. Nat Genet. 2016;48:1370-1376 pubmed publisher
  438. Ow J, Palanichamy Kala M, Rao V, Choi M, Bharathy N, Taneja R. G9a inhibits MEF2C activity to control sarcomere assembly. Sci Rep. 2016;6:34163 pubmed publisher
  439. Hu Y, Zhang Z, Kashiwagi M, Yoshida T, Joshi I, Jena N, et al. Superenhancer reprogramming drives a B-cell-epithelial transition and high-risk leukemia. Genes Dev. 2016;30:1971-90 pubmed publisher
  440. Amabile A, Migliara A, Capasso P, Biffi M, Cittaro D, Naldini L, et al. Inheritable Silencing of Endogenous Genes by Hit-and-Run Targeted Epigenetic Editing. Cell. 2016;167:219-232.e14 pubmed publisher
  441. Ghazavi F, de Moerloose B, Van Loocke W, Wallaert A, Helsmoortel H, Ferster A, et al. Unique long non-coding RNA expression signature in ETV6/RUNX1-driven B-cell precursor acute lymphoblastic leukemia. Oncotarget. 2016;7:73769-73780 pubmed publisher
  442. Loubiere V, Delest A, Thomas A, Bonev B, Schuettengruber B, Sati S, et al. Coordinate redeployment of PRC1 proteins suppresses tumor formation during Drosophila development. Nat Genet. 2016;48:1436-1442 pubmed publisher
  443. Matsukawa K, Hashimoto T, Matsumoto T, Ihara R, Chihara T, Miura M, et al. Familial Amyotrophic Lateral Sclerosis-linked Mutations in Profilin 1 Exacerbate TDP-43-induced Degeneration in the Retina of Drosophila melanogaster through an Increase in the Cytoplasmic Localization of TDP-43. J Biol Chem. 2016;291:23464-23476 pubmed
  444. Wang D, Kon N, Lasso G, Jiang L, Leng W, Zhu W, et al. Acetylation-regulated interaction between p53 and SET reveals a widespread regulatory mode. Nature. 2016;538:118-122 pubmed publisher
  445. Walentek P, Quigley I, Sun D, Sajjan U, Kintner C, Harland R. Ciliary transcription factors and miRNAs precisely regulate Cp110 levels required for ciliary adhesions and ciliogenesis. elife. 2016;5: pubmed publisher
  446. Mansuroglu Z, Benhelli Mokrani H, Marcato V, Sultan A, Violet M, Chauderlier A, et al. Loss of Tau protein affects the structure, transcription and repair of neuronal pericentromeric heterochromatin. Sci Rep. 2016;6:33047 pubmed publisher
  447. García Carpizo V, Sarmentero J, Han B, Grana O, Ruiz Llorente S, Pisano D, et al. NSD2 contributes to oncogenic RAS-driven transcription in lung cancer cells through long-range epigenetic activation. Sci Rep. 2016;6:32952 pubmed publisher
  448. Mair B, Konopka T, Kerzendorfer C, Sleiman K, Salic S, Serra V, et al. Gain- and Loss-of-Function Mutations in the Breast Cancer Gene GATA3 Result in Differential Drug Sensitivity. PLoS Genet. 2016;12:e1006279 pubmed publisher
  449. Ueda T, Nakata Y, Nagamachi A, Yamasaki N, Kanai A, Sera Y, et al. Propagation of trimethylated H3K27 regulated by polycomb protein EED is required for embryogenesis, hematopoietic maintenance, and tumor suppression. Proc Natl Acad Sci U S A. 2016;113:10370-5 pubmed publisher
  450. Nettersheim D, Jostes S, Fabry M, Honecker F, Schumacher V, Kirfel J, et al. A signaling cascade including ARID1A, GADD45B and DUSP1 induces apoptosis and affects the cell cycle of germ cell cancers after romidepsin treatment. Oncotarget. 2016;7:74931-74946 pubmed publisher
  451. Otsuka K, Suzuki K. Differences in Radiation Dose Response between Small and Large Intestinal Crypts. Radiat Res. 2016;186:302-14 pubmed publisher
  452. Doobin D, Kemal S, Dantas T, Vallee R. Severe NDE1-mediated microcephaly results from neural progenitor cell cycle arrests at multiple specific stages. Nat Commun. 2016;7:12551 pubmed publisher
  453. Romani B, Kamali Jamil R, Hamidi Fard M, Rahimi P, Momen S, Aghasadeghi M, et al. HIV-1 Vpr reactivates latent HIV-1 provirus by inducing depletion of class I HDACs on chromatin. Sci Rep. 2016;6:31924 pubmed publisher
  454. Olsen J, Wong L, Deimling S, Miles A, Guo H, Li Y, et al. G9a and ZNF644 Physically Associate to Suppress Progenitor Gene Expression during Neurogenesis. Stem Cell Reports. 2016;7:454-470 pubmed publisher
  455. Sathianathan A, Ravichandran P, Lippi J, Cohen L, Messina A, Shaju S, et al. The Eaf3/5/7 Subcomplex Stimulates NuA4 Interaction with Methylated Histone H3 Lys-36 and RNA Polymerase II. J Biol Chem. 2016;291:21195-21207 pubmed
  456. Yang J, Song T, Jo C, Park J, Lee H, Song I, et al. Differential regulation of the histone chaperone HIRA during muscle cell differentiation by a phosphorylation switch. Exp Mol Med. 2016;48:e252 pubmed publisher
  457. Khanom R, Nguyen C, Kayamori K, Zhao X, Morita K, Miki Y, et al. Keratin 17 Is Induced in Oral Cancer and Facilitates Tumor Growth. PLoS ONE. 2016;11:e0161163 pubmed publisher
  458. Platt J, Salama R, Smythies J, Choudhry H, Davies J, Hughes J, et al. Capture-C reveals preformed chromatin interactions between HIF-binding sites and distant promoters. EMBO Rep. 2016;17:1410-1421 pubmed
  459. Kaukonen R, Mai A, Georgiadou M, Saari M, De Franceschi N, Betz T, et al. Normal stroma suppresses cancer cell proliferation via mechanosensitive regulation of JMJD1a-mediated transcription. Nat Commun. 2016;7:12237 pubmed publisher
  460. Tanaka G, Inoue K, Shimizu T, Akimoto K, Kubota K. Dual pharmacological inhibition of glutathione and thioredoxin systems synergizes to kill colorectal carcinoma stem cells. Cancer Med. 2016;5:2544-57 pubmed publisher
  461. Singh N, Johnstone D, Martin K, Tempera I, Kaplan M, Denny M. Alterations in nuclear structure promote lupus autoimmunity in a mouse model. Dis Model Mech. 2016;9:885-97 pubmed publisher
  462. Sun H, Liang L, Li Y, Feng C, Li L, Zhang Y, et al. Lysine-specific histone demethylase 1 inhibition promotes reprogramming by facilitating the expression of exogenous transcriptional factors and metabolic switch. Sci Rep. 2016;6:30903 pubmed publisher
  463. Wang Y, Sun H, Wang J, Wang H, Meng L, Xu C, et al. DNA-PK-mediated phosphorylation of EZH2 regulates the DNA damage-induced apoptosis to maintain T-cell genomic integrity. Cell Death Dis. 2016;7:e2316 pubmed publisher
  464. Zhang X, Wu J, Wang J, Shen T, Li H, Lu J, et al. Integrative epigenomic analysis reveals unique epigenetic signatures involved in unipotency of mouse female germline stem cells. Genome Biol. 2016;17:162 pubmed publisher
  465. Eichenfield D, Troutman T, Link V, Lam M, Cho H, Gosselin D, et al. Tissue damage drives co-localization of NF-?B, Smad3, and Nrf2 to direct Rev-erb sensitive wound repair in mouse macrophages. elife. 2016;5: pubmed publisher
  466. Choudhary M, Nomura Y, Shi H, Nakagami H, Somers D. Circadian Profiling of the Arabidopsis Proteome Using 2D-DIGE. Front Plant Sci. 2016;7:1007 pubmed publisher
  467. Cao J, Wu L, Zhang S, Lu M, Cheung W, Cai W, et al. An easy and efficient inducible CRISPR/Cas9 platform with improved specificity for multiple gene targeting. Nucleic Acids Res. 2016;44:e149 pubmed
  468. Merry C, McMahon S, Forrest M, Bartels C, Saiakhova A, Bartel C, et al. Transcriptome-wide identification of mRNAs and lincRNAs associated with trastuzumab-resistance in HER2-positive breast cancer. Oncotarget. 2016;7:53230-53244 pubmed publisher
  469. Grinshtein N, Rioseco C, Marcellus R, UEHLING D, Aman A, Lun X, et al. Small molecule epigenetic screen identifies novel EZH2 and HDAC inhibitors that target glioblastoma brain tumor-initiating cells. Oncotarget. 2016;7:59360-59376 pubmed publisher
  470. Nettersheim D, Arndt I, Sharma R, Riesenberg S, Jostes S, Schneider S, et al. The cancer/testis-antigen PRAME supports the pluripotency network and represses somatic and germ cell differentiation programs in seminomas. Br J Cancer. 2016;115:454-64 pubmed publisher
  471. Li L, Shi L, Yang S, Yan R, Zhang D, Yang J, et al. SIRT7 is a histone desuccinylase that functionally links to chromatin compaction and genome stability. Nat Commun. 2016;7:12235 pubmed publisher
  472. Xia X, Yu Y, Zhang L, Ma Y, Wang H. Inhibitor of DNA binding 1 regulates cell cycle progression of endothelial progenitor cells through induction of Wnt2 expression. Mol Med Rep. 2016;14:2016-24 pubmed publisher
  473. Gygli P, Chang J, Gokozan H, Catacutan F, Schmidt T, Kaya B, et al. Cyclin A2 promotes DNA repair in the brain during both development and aging. Aging (Albany NY). 2016;8:1540-70 pubmed publisher
  474. Yang Y, Yamada T, Hill K, Hemberg M, Reddy N, Cho H, et al. Chromatin remodeling inactivates activity genes and regulates neural coding. Science. 2016;353:300-305 pubmed publisher
  475. Homa J, Ortmann W, Kolaczkowska E. Conservative Mechanisms of Extracellular Trap Formation by Annelida Eisenia andrei: Serine Protease Activity Requirement. PLoS ONE. 2016;11:e0159031 pubmed publisher
  476. Sashida G, Wang C, Tomioka T, Oshima M, Aoyama K, Kanai A, et al. The loss of Ezh2 drives the pathogenesis of myelofibrosis and sensitizes tumor-initiating cells to bromodomain inhibition. J Exp Med. 2016;213:1459-77 pubmed publisher
  477. Kawano S, Grassian A, Tsuda M, Knutson S, Warholic N, Kuznetsov G, et al. Preclinical Evidence of Anti-Tumor Activity Induced by EZH2 Inhibition in Human Models of Synovial Sarcoma. PLoS ONE. 2016;11:e0158888 pubmed publisher
  478. Alver T, Lavelle T, Longva A, Øy G, Hovig E, Bøe S. MITF depletion elevates expression levels of ERBB3 receptor and its cognate ligand NRG1-beta in melanoma. Oncotarget. 2016;7:55128-55140 pubmed publisher
  479. Yang W, Ng F, Chan K, Pu X, Poston R, Ren M, et al. Coronary-Heart-Disease-Associated Genetic Variant at the COL4A1/COL4A2 Locus Affects COL4A1/COL4A2 Expression, Vascular Cell Survival, Atherosclerotic Plaque Stability and Risk of Myocardial Infarction. PLoS Genet. 2016;12:e1006127 pubmed publisher
  480. Schmidt N, Irle I, Ripkens K, Lux V, Nelles J, Johannes C, et al. Epigenetic silencing of serine protease HTRA1 drives polyploidy. BMC Cancer. 2016;16:399 pubmed publisher
  481. Miller C, Pjanic M, Wang T, Nguyen T, Cohain A, Lee J, et al. Integrative functional genomics identifies regulatory mechanisms at coronary artery disease loci. Nat Commun. 2016;7:12092 pubmed publisher
  482. Zhang X, Ling Y, Guo Y, Bai Y, Shi X, Gong F, et al. Mps1 kinase regulates tumor cell viability via its novel role in mitochondria. Cell Death Dis. 2016;7:e2292 pubmed publisher
  483. Wang H, Tri Anggraini F, Chen X, DeGracia D. Embryonic lethal abnormal vision proteins and adenine and uridine-rich element mRNAs after global cerebral ischemia and reperfusion in the rat. J Cereb Blood Flow Metab. 2017;37:1494-1507 pubmed publisher
  484. Allison K, Sajti E, Collier J, Gosselin D, Troutman T, Stone E, et al. Affinity and dose of TCR engagement yield proportional enhancer and gene activity in CD4+ T cells. elife. 2016;5: pubmed publisher
  485. Shin H, Willi M, HyunYoo K, Zeng X, Wang C, Metser G, et al. Hierarchy within the mammary STAT5-driven Wap super-enhancer. Nat Genet. 2016;48:904-911 pubmed publisher
  486. Terrier O, Carron C, de Chassey B, Dubois J, Traversier A, Julien T, et al. Nucleolin interacts with influenza A nucleoprotein and contributes to viral ribonucleoprotein complexes nuclear trafficking and efficient influenza viral replication. Sci Rep. 2016;6:29006 pubmed publisher
  487. Heckler M, Zeleke T, Divekar S, Fernandez A, Tiek D, Woodrick J, et al. Antimitotic activity of DY131 and the estrogen-related receptor beta 2 (ERRβ2) splice variant in breast cancer. Oncotarget. 2016;7:47201-47220 pubmed publisher
  488. Powers N, Parvanov E, Baker C, Walker M, Petkov P, Paigen K. The Meiotic Recombination Activator PRDM9 Trimethylates Both H3K36 and H3K4 at Recombination Hotspots In Vivo. PLoS Genet. 2016;12:e1006146 pubmed publisher
  489. Gao X, Lin S, Ren F, Li J, Chen J, Yao C, et al. Acetate functions as an epigenetic metabolite to promote lipid synthesis under hypoxia. Nat Commun. 2016;7:11960 pubmed publisher
  490. Van Haute L, Dietmann S, Kremer L, Hussain S, Pearce S, Powell C, et al. Deficient methylation and formylation of mt-tRNA(Met) wobble cytosine in a patient carrying mutations in NSUN3. Nat Commun. 2016;7:12039 pubmed publisher
  491. Dai L, Cui X, Zhang X, Cheng L, Liu Y, Yang Y, et al. SARI inhibits angiogenesis and tumour growth of human colon cancer through directly targeting ceruloplasmin. Nat Commun. 2016;7:11996 pubmed publisher
  492. Matcovitch Natan O, Winter D, Giladi A, Vargas Aguilar S, Spinrad A, Sarrazin S, et al. Microglia development follows a stepwise program to regulate brain homeostasis. Science. 2016;353:aad8670 pubmed publisher
  493. Gayatri S, Cowles M, Vemulapalli V, Cheng D, Sun Z, Bedford M. Using oriented peptide array libraries to evaluate methylarginine-specific antibodies and arginine methyltransferase substrate motifs. Sci Rep. 2016;6:28718 pubmed publisher
  494. Omata Y, Nakamura S, Koyama T, Yasui T, Hirose J, Izawa N, et al. Identification of Nedd9 as a TGF-?-Smad2/3 Target Gene Involved in RANKL-Induced Osteoclastogenesis by Comprehensive Analysis. PLoS ONE. 2016;11:e0157992 pubmed publisher
  495. Mendoza Parra M, Saravaki V, Cholley P, Blum M, Billoré B, Gronemeyer H. Antibody performance in ChIP-sequencing assays: From quality scores of public data sets to quantitative certification. F1000Res. 2016;5:54 pubmed publisher
  496. Bennesch M, Segala G, Wider D, Picard D. LSD1 engages a corepressor complex for the activation of the estrogen receptor ? by estrogen and cAMP. Nucleic Acids Res. 2016;44:8655-8670 pubmed
  497. Ono H, Basson M, Ito H. P300 inhibition enhances gemcitabine-induced apoptosis of pancreatic cancer. Oncotarget. 2016;7:51301-51310 pubmed publisher
  498. Klein Hessling S, Rudolf R, Muhammad K, Knobeloch K, Maqbool M, Cauchy P, et al. A threshold level of NFATc1 activity facilitates thymocyte differentiation and opposes notch-driven leukaemia development. Nat Commun. 2016;7:11841 pubmed publisher
  499. Shin H, Kim H, Oh S, Lee J, Kee M, Ko H, et al. AMPK-SKP2-CARM1 signalling cascade in transcriptional regulation of autophagy. Nature. 2016;534:553-7 pubmed publisher
  500. Deaton A, Gómez Rodríguez M, Mieczkowski J, Tolstorukov M, Kundu S, Sadreyev R, et al. Enhancer regions show high histone H3.3 turnover that changes during differentiation. elife. 2016;5: pubmed publisher
  501. Bermúdez López M, Villoria M, Esteras M, Jarmuz A, Torres Rosell J, Clemente Blanco A, et al. Sgs1's roles in DNA end resection, HJ dissolution, and crossover suppression require a two-step SUMO regulation dependent on Smc5/6. Genes Dev. 2016;30:1339-56 pubmed publisher
  502. Li Z, Li B, Liu J, Guo Z, Liu Y, Li Y, et al. Transcription factors AS1 and AS2 interact with LHP1 to repress KNOX genes in Arabidopsis. J Integr Plant Biol. 2016;58:959-970 pubmed publisher
  503. Liu Z, Lam N, Wang E, Virden R, Pawel B, Attiyeh E, et al. Identification of CASZ1 NES reveals potential mechanisms for loss of CASZ1 tumor suppressor activity in neuroblastoma. Oncogene. 2017;36:97-109 pubmed publisher
  504. Kim J, Yu J, Abdulkadir S, Chakravarti D. KAT8 Regulates Androgen Signaling in Prostate Cancer Cells. Mol Endocrinol. 2016;30:925-36 pubmed publisher
  505. Hintermair C, Voß K, Forné I, Heidemann M, Flatley A, Kremmer E, et al. Specific threonine-4 phosphorylation and function of RNA polymerase II CTD during M phase progression. Sci Rep. 2016;6:27401 pubmed publisher
  506. Fulcoli F, Franzese M, Liu X, Zhang Z, Angelini C, Baldini A. Rebalancing gene haploinsufficiency in vivo by targeting chromatin. Nat Commun. 2016;7:11688 pubmed publisher
  507. Much C, Auchynnikava T, Pavlinić D, Buness A, Rappsilber J, Benes V, et al. Endogenous Mouse Dicer Is an Exclusively Cytoplasmic Protein. PLoS Genet. 2016;12:e1006095 pubmed publisher
  508. Minakawa Y, Atsumi Y, Shinohara A, Murakami Y, Yoshioka K. Gamma-irradiated quiescent cells repair directly induced double-strand breaks but accumulate persistent double-strand breaks during subsequent DNA replication. Genes Cells. 2016;21:789-97 pubmed publisher
  509. Zhu P, Wang Y, Huang G, Ye B, Liu B, Wu J, et al. lnc-?-Catm elicits EZH2-dependent ?-catenin stabilization and sustains liver CSC self-renewal. Nat Struct Mol Biol. 2016;23:631-9 pubmed publisher
  510. Fang D, Gan H, Lee J, Han J, Wang Z, Riester S, et al. The histone H3.3K36M mutation reprograms the epigenome of chondroblastomas. Science. 2016;352:1344-8 pubmed publisher
  511. Su C, Cheng C, Tzeng T, Lin I, Hsu M. An H2A Histone Isotype, H2ac, Associates with Telomere and Maintains Telomere Integrity. PLoS ONE. 2016;11:e0156378 pubmed publisher
  512. Chen X, Stauffer S, Chen Y, Dong J. Ajuba Phosphorylation by CDK1 Promotes Cell Proliferation and Tumorigenesis. J Biol Chem. 2016;291:14761-72 pubmed publisher
  513. Romanello M, Schiavone D, Frey A, Sale J. Histone H3.3 promotes IgV gene diversification by enhancing formation of AID-accessible single-stranded DNA. EMBO J. 2016;35:1452-64 pubmed publisher
  514. Wang L, Hou S, Han Y. Hedgehog signaling promotes basal progenitor expansion and the growth and folding of the neocortex. Nat Neurosci. 2016;19:888-96 pubmed publisher
  515. Droubi A, Bulley S, Clarke J, Irvine R. Nuclear localizations of phosphatidylinositol 5-phosphate 4-kinases ? and ? are dynamic and independently regulated during starvation-induced stress. Biochem J. 2016;473:2155-63 pubmed publisher
  516. Zeng L, Cai C, Li S, Wang W, Li Y, Chen J, et al. Essential Roles of Cyclin Y-Like 1 and Cyclin Y in Dividing Wnt-Responsive Mammary Stem/Progenitor Cells. PLoS Genet. 2016;12:e1006055 pubmed publisher
  517. Wang J, Hu K, Guo J, Cheng F, Lv J, Jiang W, et al. Suppression of KRas-mutant cancer through the combined inhibition of KRAS with PLK1 and ROCK. Nat Commun. 2016;7:11363 pubmed publisher
  518. Lin S, Wang B, Lin C, Chien P, Wu Y, Ko J, et al. Chidamide alleviates TGF-?-induced epithelial-mesenchymal transition in lung cancer cell lines. Mol Biol Rep. 2016;43:687-95 pubmed publisher
  519. Pal S, Graves H, Ohsawa R, Huang T, Wang P, Harmacek L, et al. The Commercial Antibodies Widely Used to Measure H3 K56 Acetylation Are Non-Specific in Human and Drosophila Cells. PLoS ONE. 2016;11:e0155409 pubmed publisher
  520. Jayaram H, Hoelper D, Jain S, Cantone N, Lundgren S, Poy F, et al. S-adenosyl methionine is necessary for inhibition of the methyltransferase G9a by the lysine 9 to methionine mutation on histone H3. Proc Natl Acad Sci U S A. 2016;113:6182-7 pubmed publisher
  521. Diamant G, Bahat A, Dikstein R. The elongation factor Spt5 facilitates transcription initiation for rapid induction of inflammatory-response genes. Nat Commun. 2016;7:11547 pubmed publisher
  522. Jehanno C, Flouriot G, Nicol Benoît F, Le Page Y, Le Goff P, Michel D. Envisioning metastasis as a transdifferentiation phenomenon clarifies discordant results on cancer. Breast Dis. 2016;36:47-59 pubmed publisher
  523. Lu C, Jain S, Hoelper D, Bechet D, Molden R, Ran L, et al. Histone H3K36 mutations promote sarcomagenesis through altered histone methylation landscape. Science. 2016;352:844-9 pubmed publisher
  524. Alarcón V, Hernández S, Rubio L, Alvarez F, Flores Y, Varas Godoy M, et al. The enzymes LSD1 and Set1A cooperate with the viral protein HBx to establish an active hepatitis B viral chromatin state. Sci Rep. 2016;6:25901 pubmed publisher
  525. Song J, Sun Y, Peluso I, Zeng Y, Yu X, Lu J, et al. A novel curcumin analog binds to and activates TFEB in vitro and in vivo independent of MTOR inhibition. Autophagy. 2016;12:1372-89 pubmed publisher
  526. Materne P, Vazquez E, Sanchez M, Yague Sanz C, Anandhakumar J, Migeot V, et al. Histone H2B ubiquitylation represses gametogenesis by opposing RSC-dependent chromatin remodeling at the ste11 master regulator locus. elife. 2016;5: pubmed publisher
  527. Lee B, Wu C, Lin Y, Park S, Wei L. Synergistic activation of Arg1 gene by retinoic acid and IL-4 involves chromatin remodeling for transcription initiation and elongation coupling. Nucleic Acids Res. 2016;44:7568-79 pubmed publisher
  528. Terakawa J, Rocchi A, Serna V, Bottinger E, Graff J, Kurita T. FGFR2IIIb-MAPK Activity Is Required for Epithelial Cell Fate Decision in the Lower Müllerian Duct. Mol Endocrinol. 2016;30:783-95 pubmed publisher
  529. Li J, Hardy K, Phetsouphanh C, Tu W, Sutcliffe E, McCuaig R, et al. Nuclear PKC-? facilitates rapid transcriptional responses in human memory CD4+ T cells through p65 and H2B phosphorylation. J Cell Sci. 2016;129:2448-61 pubmed publisher
  530. Si S, Nakajima Takagi Y, Aoyama K, Oshima M, Saraya A, Sugishita H, et al. Loss of Pcgf5 Affects Global H2A Monoubiquitination but Not the Function of Hematopoietic Stem and Progenitor Cells. PLoS ONE. 2016;11:e0154561 pubmed publisher
  531. Kushwaha R, Jagadish N, Kustagi M, Mendiratta G, Seandel M, Soni R, et al. Mechanism and Role of SOX2 Repression in Seminoma: Relevance to Human Germline Specification. Stem Cell Reports. 2016;6:772-783 pubmed publisher
  532. Su S, Li C, Lei P, Wang X, Zhao Q, Cai Y, et al. The EZH1-SUZ12 complex positively regulates the transcription of NF-?B target genes through interaction with UXT. J Cell Sci. 2016;129:2343-53 pubmed publisher
  533. Douvaras P, Rusielewicz T, Kim K, Haines J, CASACCIA P, Fossati V. Epigenetic Modulation of Human Induced Pluripotent Stem Cell Differentiation to Oligodendrocytes. Int J Mol Sci. 2016;17: pubmed publisher
  534. Carofino B, Ayanga B, Tracey L, Brooke Bisschop T, Justice M. PRDM14 promotes RAG-dependent Notch1 driver mutations in mouse T-ALL. Biol Open. 2016;5:645-53 pubmed publisher
  535. Hwang H, Dornbos P, Steidemann M, Dunivin T, Rizzo M, LaPres J. Mitochondrial-targeted aryl hydrocarbon receptor and the impact of 2,3,7,8-tetrachlorodibenzo-p-dioxin on cellular respiration and the mitochondrial proteome. Toxicol Appl Pharmacol. 2016;304:121-32 pubmed publisher
  536. Tasdemir N, Banito A, Roe J, Alonso Curbelo D, Camiolo M, Tschaharganeh D, et al. BRD4 Connects Enhancer Remodeling to Senescence Immune Surveillance. Cancer Discov. 2016;6:612-29 pubmed publisher
  537. Hiragami Hamada K, Soeroes S, Nikolov M, Wilkins B, Kreuz S, Chen C, et al. Dynamic and flexible H3K9me3 bridging via HP1? dimerization establishes a plastic state of condensed chromatin. Nat Commun. 2016;7:11310 pubmed publisher
  538. Huang C, Lee C, Yang S, Chien C, Huang C, Yang R, et al. Upregulation of the growth arrest-specific-2 in recurrent colorectal cancers, and its susceptibility to chemotherapy in a model cell system. Biochim Biophys Acta. 2016;1862:1345-53 pubmed publisher
  539. Shearstone J, Golonzhka O, Chonkar A, Tamang D, Van Duzer J, Jones S, et al. Chemical Inhibition of Histone Deacetylases 1 and 2 Induces Fetal Hemoglobin through Activation of GATA2. PLoS ONE. 2016;11:e0153767 pubmed publisher
  540. Huang G, Yang X, Chen K, Xing J, Guo L, Zhu L, et al. Porf-2 Inhibits Neural Stem Cell Proliferation Through Wnt/?-Catenin Pathway by Its GAP Domain. Front Cell Neurosci. 2016;10:85 pubmed publisher
  541. Hakim S, Dyson J, Feeney S, Davies E, Sriratana A, Koenig M, et al. Inpp5e suppresses polycystic kidney disease via inhibition of PI3K/Akt-dependent mTORC1 signaling. Hum Mol Genet. 2016;25:2295-2313 pubmed
  542. Zheng G, Li N, Jia X, Peng C, Luo L, Deng Y, et al. MYCN-mediated miR-21 overexpression enhances chemo-resistance via targeting CADM1 in tongue cancer. J Mol Med (Berl). 2016;94:1129-1141 pubmed
  543. Huang C, Cheng J, Bawa Khalfe T, Yao X, Chin Y, Yeh E. SUMOylated ORC2 Recruits a Histone Demethylase to Regulate Centromeric Histone Modification and Genomic Stability. Cell Rep. 2016;15:147-157 pubmed publisher
  544. Garcia Cuellar M, Büttner C, Bartenhagen C, Dugas M, Slany R. Leukemogenic MLL-ENL Fusions Induce Alternative Chromatin States to Drive a Functionally Dichotomous Group of Target Genes. Cell Rep. 2016;15:310-22 pubmed publisher
  545. Zhang Z, Ren S, Tan Y, Li Z, Tang X, Wang T, et al. Epigenetic regulation of NKG2D ligands is involved in exacerbated atherosclerosis development in Sirt6 heterozygous mice. Sci Rep. 2016;6:23912 pubmed publisher
  546. Navarra A, Musto A, Gargiulo A, Petrosino G, Pierantoni G, Fusco A, et al. Hmga2 is necessary for Otx2-dependent exit of embryonic stem cells from the pluripotent ground state. BMC Biol. 2016;14:24 pubmed publisher
  547. Saez F, Hong N, Garvin J. Luminal flow induces NADPH oxidase 4 translocation to the nuclei of thick ascending limbs. Physiol Rep. 2016;4: pubmed publisher
  548. Huang Y, Chen S, Liu R, Chen Y, Lin C, Huang C, et al. CLEC5A is critical for dengue virus-induced osteoclast activation and bone homeostasis. J Mol Med (Berl). 2016;94:1025-37 pubmed publisher
  549. Iimori M, Watanabe S, Kiyonari S, Matsuoka K, Sakasai R, Saeki H, et al. Phosphorylation of EB2 by Aurora B and CDK1 ensures mitotic progression and genome stability. Nat Commun. 2016;7:11117 pubmed publisher
  550. Vincent A, Berthel E, Dacheux E, Magnard C, Venezia N. BRCA1 affects protein phosphatase 6 signalling through its interaction with ANKRD28. Biochem J. 2016;473:949-60 pubmed publisher
  551. Perez R, Shen H, Duan L, Kim R, Kim T, Park N, et al. Modeling the Etiology of p53-mutated Cancer Cells. J Biol Chem. 2016;291:10131-47 pubmed publisher
  552. Gatchalian J, Gallardo C, Shinsky S, Ospina R, Liendo A, Krajewski K, et al. Chromatin condensation and recruitment of PHD finger proteins to histone H3K4me3 are mutually exclusive. Nucleic Acids Res. 2016;44:6102-12 pubmed publisher
  553. Xiao J, Duan Q, Wang Z, Yan W, Sun H, Xue P, et al. Phosphorylation of TOPK at Y74, Y272 by Src increases the stability of TOPK and promotes tumorigenesis of colon. Oncotarget. 2016;7:24483-94 pubmed publisher
  554. Dheekollu J, Wiedmer A, Sentana Lledo D, Cassel J, Messick T, Lieberman P. HCF1 and OCT2 Cooperate with EBNA1 To Enhance OriP-Dependent Transcription and Episome Maintenance of Latent Epstein-Barr Virus. J Virol. 2016;90:5353-5367 pubmed publisher
  555. Leucci E, Vendramin R, Spinazzi M, Laurette P, Fiers M, Wouters J, et al. Melanoma addiction to the long non-coding RNA SAMMSON. Nature. 2016;531:518-22 pubmed publisher
  556. Faralli H, Wang C, Nakka K, Benyoucef A, Sebastian S, Zhuang L, et al. UTX demethylase activity is required for satellite cell-mediated muscle regeneration. J Clin Invest. 2016;126:1555-65 pubmed publisher
  557. Lee H, Dai F, Zhuang L, Xiao Z, Kim J, Zhang Y, et al. BAF180 regulates cellular senescence and hematopoietic stem cell homeostasis through p21. Oncotarget. 2016;7:19134-46 pubmed publisher
  558. Elnfati A, Iles D, Miller D. Nucleosomal chromatin in the mature sperm of Drosophila melanogaster. Genom Data. 2016;7:175-7 pubmed publisher
  559. Qiu Z, Elsayed Z, Peterkin V, Alkatib S, Bennett D, Landry J. Ino80 is essential for proximal-distal axis asymmetry in part by regulating Bmp4 expression. BMC Biol. 2016;14:18 pubmed publisher
  560. Richarson A, Scott D, Zagnitko O, Aza Blanc P, Chang C, Russler Germain D. Registered report: IDH mutation impairs histone demethylation and results in a block to cell differentiation. elife. 2016;5:e10860 pubmed publisher
  561. Weigel C, Veldwijk M, Oakes C, Seibold P, Slynko A, Liesenfeld D, et al. Epigenetic regulation of diacylglycerol kinase alpha promotes radiation-induced fibrosis. Nat Commun. 2016;7:10893 pubmed publisher
  562. Hardy K, Wu F, Tu W, Zafar A, Boulding T, McCuaig R, et al. Identification of chromatin accessibility domains in human breast cancer stem cells. Nucleus. 2016;7:50-67 pubmed publisher
  563. Zhang X, Peng D, Xi Y, Yuan C, Sagum C, Klein B, et al. G9a-mediated methylation of ERα links the PHF20/MOF histone acetyltransferase complex to hormonal gene expression. Nat Commun. 2016;7:10810 pubmed publisher
  564. Akan I, Love D, Harwood K, Bond M, Hanover J. Drosophila O-GlcNAcase Deletion Globally Perturbs Chromatin O-GlcNAcylation. J Biol Chem. 2016;291:9906-19 pubmed publisher
  565. Mo A, Luo C, Davis F, Mukamel E, Henry G, Nery J, et al. Epigenomic landscapes of retinal rods and cones. elife. 2016;5:e11613 pubmed publisher
  566. Ercilla A, Llopis A, Feu S, Aranda S, Ernfors P, Freire R, et al. New origin firing is inhibited by APC/CCdh1 activation in S-phase after severe replication stress. Nucleic Acids Res. 2016;44:4745-62 pubmed publisher
  567. Nagase M, Kurihara H, Aiba A, Young M, Sakai T. Deletion of Rac1GTPase in the Myeloid Lineage Protects against Inflammation-Mediated Kidney Injury in Mice. PLoS ONE. 2016;11:e0150886 pubmed publisher
  568. Wu J, Chi L, Chen Z, Lu X, Xiao S, Zhang G, et al. Functional analysis of the TMPRSS2:ERG fusion gene in cisplatin‑induced cell death. Mol Med Rep. 2016;13:3173-80 pubmed publisher
  569. Sadasivam D, Huang D. Maintenance of Tissue Pluripotency by Epigenetic Factors Acting at Multiple Levels. PLoS Genet. 2016;12:e1005897 pubmed publisher
  570. Goode D, Obier N, Vijayabaskar M, Lie A Ling M, Lilly A, Hannah R, et al. Dynamic Gene Regulatory Networks Drive Hematopoietic Specification and Differentiation. Dev Cell. 2016;36:572-87 pubmed publisher
  571. Seip K, Fleten K, Barkovskaya A, Nygaard V, Haugen M, Engesæter B, et al. Fibroblast-induced switching to the mesenchymal-like phenotype and PI3K/mTOR signaling protects melanoma cells from BRAF inhibitors. Oncotarget. 2016;7:19997-20015 pubmed publisher
  572. Liu N, Avramova Z. Molecular mechanism of the priming by jasmonic acid of specific dehydration stress response genes in Arabidopsis. Epigenetics Chromatin. 2016;9:8 pubmed publisher
  573. Oswald F, Rodriguez P, Giaimo B, Antonello Z, Mira L, Mittler G, et al. A phospho-dependent mechanism involving NCoR and KMT2D controls a permissive chromatin state at Notch target genes. Nucleic Acids Res. 2016;44:4703-20 pubmed publisher
  574. Ha S, Reid C, Meshkibaf S, Kim S. Inhibition of Interleukin 1β (IL-1β) Expression by Anthrax Lethal Toxin (LeTx) Is Reversed by Histone Deacetylase 8 (HDAC8) Inhibition in Murine Macrophages. J Biol Chem. 2016;291:8745-55 pubmed publisher
  575. Scheckel C, Drapeau E, Frias M, Park C, Fak J, Zucker Scharff I, et al. Regulatory consequences of neuronal ELAV-like protein binding to coding and non-coding RNAs in human brain. elife. 2016;5: pubmed publisher
  576. Wei J, Xiong Z, Lee J, Cheng J, Duffney L, Matas E, et al. Histone Modification of Nedd4 Ubiquitin Ligase Controls the Loss of AMPA Receptors and Cognitive Impairment Induced by Repeated Stress. J Neurosci. 2016;36:2119-30 pubmed publisher
  577. Wike C, Graves H, Hawkins R, Gibson M, Ferdinand M, Zhang T, et al. Aurora-A mediated histone H3 phosphorylation of threonine 118 controls condensin I and cohesin occupancy in mitosis. elife. 2016;5:e11402 pubmed publisher
  578. Weyemi U, Redon C, Choudhuri R, Aziz T, Maeda D, Boufraqech M, et al. The histone variant H2A.X is a regulator of the epithelial-mesenchymal transition. Nat Commun. 2016;7:10711 pubmed publisher
  579. Ahuja A, Jodkowska K, Teloni F, Bizard A, Zellweger R, Herrador R, et al. A short G1 phase imposes constitutive replication stress and fork remodelling in mouse embryonic stem cells. Nat Commun. 2016;7:10660 pubmed publisher
  580. Passer D, van de Vrugt A, Atmanli A, Domian I. Atypical Protein Kinase C-Dependent Polarized Cell Division Is Required for Myocardial Trabeculation. Cell Rep. 2016;14:1662-1672 pubmed publisher
  581. Wu T, Li Y, Liu B, Zhang S, Wu L, Zhu X, et al. Expression of Ferritin Light Chain (FTL) Is Elevated in Glioblastoma, and FTL Silencing Inhibits Glioblastoma Cell Proliferation via the GADD45/JNK Pathway. PLoS ONE. 2016;11:e0149361 pubmed publisher
  582. Tang Y, Hong Y, Bai H, Wu Q, Chen C, Lang J, et al. Plant Homeo Domain Finger Protein 8 Regulates Mesodermal and Cardiac Differentiation of Embryonic Stem Cells Through Mediating the Histone Demethylation of pmaip1. Stem Cells. 2016;34:1527-40 pubmed publisher
  583. Boulding T, Wu F, McCuaig R, Dunn J, Sutton C, Hardy K, et al. Differential Roles for DUSP Family Members in Epithelial-to-Mesenchymal Transition and Cancer Stem Cell Regulation in Breast Cancer. PLoS ONE. 2016;11:e0148065 pubmed publisher
  584. Brasa S, Mueller A, Jacquemont S, Hahne F, Rozenberg I, Peters T, et al. Reciprocal changes in DNA methylation and hydroxymethylation and a broad repressive epigenetic switch characterize FMR1 transcriptional silencing in fragile X syndrome. Clin Epigenetics. 2016;8:15 pubmed publisher
  585. Jones J, Singh P, Govind C. Recruitment of Saccharomyces cerevisiae Cmr1/Ydl156w to Coding Regions Promotes Transcription Genome Wide. PLoS ONE. 2016;11:e0148897 pubmed publisher
  586. Chatterjee G, Sankaranarayanan S, Guin K, Thattikota Y, Padmanabhan S, Siddharthan R, et al. Repeat-Associated Fission Yeast-Like Regional Centromeres in the Ascomycetous Budding Yeast Candida tropicalis. PLoS Genet. 2016;12:e1005839 pubmed publisher
  587. Lima W, De Hoyos C, Liang X, Crooke S. RNA cleavage products generated by antisense oligonucleotides and siRNAs are processed by the RNA surveillance machinery. Nucleic Acids Res. 2016;44:3351-63 pubmed publisher
  588. Haokip D, Goel I, Arya V, Sharma T, Kumari R, Priya R, et al. Transcriptional Regulation of Atp-Dependent Chromatin Remodeling Factors: Smarcal1 and Brg1 Mutually Co-Regulate Each Other. Sci Rep. 2016;6:20532 pubmed publisher
  589. Jiang P, Gan M, Yen S, Moussaud S, McLean P, Dickson D. Proaggregant nuclear factor(s) trigger rapid formation of ?-synuclein aggregates in apoptotic neurons. Acta Neuropathol. 2016;132:77-91 pubmed publisher
  590. Ancelin K, Syx L, Borensztein M, Ranisavljevic N, Vassilev I, Briseño Roa L, et al. Maternal LSD1/KDM1A is an essential regulator of chromatin and transcription landscapes during zygotic genome activation. elife. 2016;5: pubmed publisher
  591. Capell B, Drake A, Zhu J, Shah P, Dou Z, Dorsey J, et al. MLL1 is essential for the senescence-associated secretory phenotype. Genes Dev. 2016;30:321-36 pubmed publisher
  592. Liu X, Li H, Rajurkar M, Li Q, Cotton J, Ou J, et al. Tead and AP1 Coordinate Transcription and Motility. Cell Rep. 2016;14:1169-1180 pubmed publisher
  593. Mo F, Zhuang X, Liu X, Yao P, Qin B, Su Z, et al. Acetylation of Aurora B by TIP60 ensures accurate chromosomal segregation. Nat Chem Biol. 2016;12:226-32 pubmed publisher
  594. Bouge A, Parmentier M. Tau excess impairs mitosis and kinesin-5 function, leading to aneuploidy and cell death. Dis Model Mech. 2016;9:307-19 pubmed publisher
  595. Powell E, Shao J, Yuan Y, Chen H, Cai S, Echeverria G, et al. p53 deficiency linked to B cell translocation gene 2 (BTG2) loss enhances metastatic potential by promoting tumor growth in primary and metastatic sites in patient-derived xenograft (PDX) models of triple-negative breast cancer. Breast Cancer Res. 2016;18:13 pubmed publisher
  596. Zhang Q, Dan J, Wang H, Guo R, Mao J, Fu H, et al. Tcstv1 and Tcstv3 elongate telomeres of mouse ES cells. Sci Rep. 2016;6:19852 pubmed publisher
  597. Lin C, Erkek S, Tong Y, Yin L, Federation A, Zapatka M, et al. Active medulloblastoma enhancers reveal subgroup-specific cellular origins. Nature. 2016;530:57-62 pubmed publisher
  598. Walter M, Teissandier A, Pérez Palacios R, Bourc his D. An epigenetic switch ensures transposon repression upon dynamic loss of DNA methylation in embryonic stem cells. elife. 2016;5: pubmed publisher
  599. Cronin J, Kanamarlapudi V, Thornton C, Sheldon I. Signal transducer and activator of transcription-3 licenses Toll-like receptor 4-dependent interleukin (IL)-6 and IL-8 production via IL-6 receptor-positive feedback in endometrial cells. Mucosal Immunol. 2016;9:1125-36 pubmed publisher
  600. Moudry P, Watanabe K, Wolanin K, Bartkova J, Wassing I, Watanabe S, et al. TOPBP1 regulates RAD51 phosphorylation and chromatin loading and determines PARP inhibitor sensitivity. J Cell Biol. 2016;212:281-8 pubmed publisher
  601. Völker Albert M, Pusch M, Fedisch A, Schilcher P, Schmidt A, Imhof A. A Quantitative Proteomic Analysis of In Vitro Assembled Chromatin. Mol Cell Proteomics. 2016;15:945-59 pubmed publisher
  602. Misuraca K, Hu G, Barton K, Chung A, Becher O. A Novel Mouse Model of Diffuse Intrinsic Pontine Glioma Initiated in Pax3-Expressing Cells. Neoplasia. 2016;18:60-70 pubmed publisher
  603. Veith N, Ziehr H, MacLeod R, Reamon Buettner S. Mechanisms underlying epigenetic and transcriptional heterogeneity in Chinese hamster ovary (CHO) cell lines. BMC Biotechnol. 2016;16:6 pubmed publisher
  604. Oktyabri D, Ishimura A, Tange S, Terashima M, Suzuki T. DOT1L histone methyltransferase regulates the expression of BCAT1 and is involved in sphere formation and cell migration of breast cancer cell lines. Biochimie. 2016;123:20-31 pubmed publisher
  605. Zheng F, Yue C, Li G, He B, Cheng W, Wang X, et al. Nuclear AURKA acquires kinase-independent transactivating function to enhance breast cancer stem cell phenotype. Nat Commun. 2016;7:10180 pubmed publisher
  606. Minnich M, Tagoh H, Bönelt P, Axelsson E, Fischer M, Cebolla B, et al. Multifunctional role of the transcription factor Blimp-1 in coordinating plasma cell differentiation. Nat Immunol. 2016;17:331-43 pubmed publisher
  607. Taniue K, Kurimoto A, Sugimasa H, Nasu E, Takeda Y, Iwasaki K, et al. Long noncoding RNA UPAT promotes colon tumorigenesis by inhibiting degradation of UHRF1. Proc Natl Acad Sci U S A. 2016;113:1273-8 pubmed publisher
  608. Pan H, Guan D, Liu X, Li J, Wang L, Wu J, et al. SIRT6 safeguards human mesenchymal stem cells from oxidative stress by coactivating NRF2. Cell Res. 2016;26:190-205 pubmed publisher
  609. Lozano Amado D, Herrera Solorio A, Valdés J, Alemán Lazarini L, Almaraz Barrera M, Luna Rivera E, et al. Identification of repressive and active epigenetic marks and nuclear bodies in Entamoeba histolytica. Parasit Vectors. 2016;9:19 pubmed publisher
  610. Kuo C, Li X, Stark J, Shih H, Ann D. RNF4 regulates DNA double-strand break repair in a cell cycle-dependent manner. Cell Cycle. 2016;15:787-98 pubmed publisher
  611. Yang Y, Li W, Hoque M, Hou L, Shen S, Tian B, et al. PAF Complex Plays Novel Subunit-Specific Roles in Alternative Cleavage and Polyadenylation. PLoS Genet. 2016;12:e1005794 pubmed publisher
  612. Lu F, Chen H, Kossenkov A, DeWispeleare K, Won K, Lieberman P. EBNA2 Drives Formation of New Chromosome Binding Sites and Target Genes for B-Cell Master Regulatory Transcription Factors RBP-jκ and EBF1. PLoS Pathog. 2016;12:e1005339 pubmed publisher
  613. Carabalona A, Hu D, Vallee R. KIF1A inhibition immortalizes brain stem cells but blocks BDNF-mediated neuronal migration. Nat Neurosci. 2016;19:253-62 pubmed publisher
  614. Chen N, Uddin B, Voit R, Schiebel E. Human phosphatase CDC14A is recruited to the cell leading edge to regulate cell migration and adhesion. Proc Natl Acad Sci U S A. 2016;113:990-5 pubmed publisher
  615. Yasuma K, Yasunaga J, Takemoto K, Sugata K, Mitobe Y, Takenouchi N, et al. HTLV-1 bZIP Factor Impairs Anti-viral Immunity by Inducing Co-inhibitory Molecule, T Cell Immunoglobulin and ITIM Domain (TIGIT). PLoS Pathog. 2016;12:e1005372 pubmed publisher
  616. Shu S, Lin C, He H, Witwicki R, Tabassum D, Roberts J, et al. Response and resistance to BET bromodomain inhibitors in triple-negative breast cancer. Nature. 2016;529:413-417 pubmed publisher
  617. Conery A, Centore R, Neiss A, Keller P, Joshi S, Spillane K, et al. Bromodomain inhibition of the transcriptional coactivators CBP/EP300 as a therapeutic strategy to target the IRF4 network in multiple myeloma. elife. 2016;5: pubmed publisher
  618. Martínez Iglesias O, Alonso Merino E, Gómez Rey S, Velasco Martín J, Martín Orozco R, Luengo E, et al. Autoregulatory loop of nuclear corepressor 1 expression controls invasion, tumor growth, and metastasis. Proc Natl Acad Sci U S A. 2016;113:E328-37 pubmed publisher
  619. Zheng M, Turton K, Zhu F, Li Y, Grindle K, Annis D, et al. A mix of S and ΔS variants of STAT3 enable survival of activated B-cell-like diffuse large B-cell lymphoma cells in culture. Oncogenesis. 2016;4:e184 pubmed publisher
  620. Mir R, Bele A, Mirza S, Srivastava S, Olou A, Ammons S, et al. A Novel Interaction of Ecdysoneless (ECD) Protein with R2TP Complex Component RUVBL1 Is Required for the Functional Role of ECD in Cell Cycle Progression. Mol Cell Biol. 2015;36:886-99 pubmed publisher
  621. Flavahan W, Drier Y, Liau B, Gillespie S, Venteicher A, Stemmer Rachamimov A, et al. Insulator dysfunction and oncogene activation in IDH mutant gliomas. Nature. 2016;529:110-4 pubmed publisher
  622. Toledo R, Qin Y, Cheng Z, Gao Q, Iwata S, Silva G, et al. Recurrent Mutations of Chromatin-Remodeling Genes and Kinase Receptors in Pheochromocytomas and Paragangliomas. Clin Cancer Res. 2016;22:2301-10 pubmed publisher
  623. Paladino D, Yue P, Furuya H, Acoba J, Rosser C, Turkson J. A novel nuclear Src and p300 signaling axis controls migratory and invasive behavior in pancreatic cancer. Oncotarget. 2016;7:7253-67 pubmed publisher
  624. Toni L, Padilla P. Developmentally arrested Austrofundulus limnaeus embryos have changes in post-translational modifications of histone H3. J Exp Biol. 2016;219:544-52 pubmed publisher
  625. García V, Lara Chica M, Cantarero I, Sterner O, Calzado M, Muñoz E. Galiellalactone induces cell cycle arrest and apoptosis through the ATM/ATR pathway in prostate cancer cells. Oncotarget. 2016;7:4490-506 pubmed publisher
  626. Abu Odeh M, Hereema N, Aqeilan R. WWOX modulates the ATR-mediated DNA damage checkpoint response. Oncotarget. 2016;7:4344-55 pubmed publisher
  627. Connor A, Kelley P, Tempero R. Lymphatic endothelial lineage assemblage during corneal lymphangiogenesis. Lab Invest. 2016;96:270-82 pubmed publisher
  628. Guo X, Wang X, Wang Z, Banerjee S, Yang J, Huang L, et al. Site-specific proteasome phosphorylation controls cell proliferation and tumorigenesis. Nat Cell Biol. 2016;18:202-12 pubmed publisher
  629. Tiedemann R, Hlady R, Hanavan P, Lake D, Tibes R, Lee J, et al. Dynamic reprogramming of DNA methylation in SETD2-deregulated renal cell carcinoma. Oncotarget. 2016;7:1927-46 pubmed publisher
  630. Grandy R, Whitfield T, Wu H, Fitzgerald M, VanOudenhove J, Zaidi S, et al. Genome-Wide Studies Reveal that H3K4me3 Modification in Bivalent Genes Is Dynamically Regulated during the Pluripotent Cell Cycle and Stabilized upon Differentiation. Mol Cell Biol. 2016;36:615-27 pubmed publisher
  631. Wassef M, Rodilla V, Teissandier A, Zeitouni B, Gruel N, Sadacca B, et al. Impaired PRC2 activity promotes transcriptional instability and favors breast tumorigenesis. Genes Dev. 2015;29:2547-62 pubmed publisher
  632. Duan S, Yuan G, Liu X, Ren R, Li J, Zhang W, et al. PTEN deficiency reprogrammes human neural stem cells towards a glioblastoma stem cell-like phenotype. Nat Commun. 2015;6:10068 pubmed publisher
  633. Valletta S, Dolatshad H, Bartenstein M, Yip B, Bello E, Gordon S, et al. ASXL1 mutation correction by CRISPR/Cas9 restores gene function in leukemia cells and increases survival in mouse xenografts. Oncotarget. 2015;6:44061-71 pubmed publisher
  634. Sengupta D, Byrum S, Avaritt N, Davis L, Shields B, Mahmoud F, et al. Quantitative Histone Mass Spectrometry Identifies Elevated Histone H3 Lysine 27 (Lys27) Trimethylation in Melanoma. Mol Cell Proteomics. 2016;15:765-75 pubmed publisher
  635. Zemke M, Draganova K, Klug A, Schöler A, Zurkirchen L, Gay M, et al. Loss of Ezh2 promotes a midbrain-to-forebrain identity switch by direct gene derepression and Wnt-dependent regulation. BMC Biol. 2015;13:103 pubmed publisher
  636. Liu G, Zhao G, Chen X, Hao D, Zhao X, Lv X, et al. The long noncoding RNA Gm15055 represses Hoxa gene expression by recruiting PRC2 to the gene cluster. Nucleic Acids Res. 2016;44:2613-27 pubmed publisher
  637. Popken J, Dahlhoff M, Guengoer T, Wolf E, Zakhartchenko V. 3D structured illumination microscopy of mammalian embryos and spermatozoa. BMC Dev Biol. 2015;15:46 pubmed publisher
  638. Hagelkruys A, Mattes K, Moos V, Rennmayr M, Ringbauer M, Sawicka A, et al. Essential Nonredundant Function of the Catalytic Activity of Histone Deacetylase 2 in Mouse Development. Mol Cell Biol. 2016;36:462-74 pubmed publisher
  639. Sakurikar N, Thompson R, Montano R, Eastman A. A subset of cancer cell lines is acutely sensitive to the Chk1 inhibitor MK-8776 as monotherapy due to CDK2 activation in S phase. Oncotarget. 2016;7:1380-94 pubmed publisher
  640. Hernando H, Gelato K, Lesche R, Beckmann G, Koehr S, Otto S, et al. EZH2 Inhibition Blocks Multiple Myeloma Cell Growth through Upregulation of Epithelial Tumor Suppressor Genes. Mol Cancer Ther. 2016;15:287-98 pubmed publisher
  641. Flores Pérez Ã, Bédard J, Tanabe N, Lymperopoulos P, Clarke A, Jarvis P. Functional Analysis of the Hsp93/ClpC Chaperone at the Chloroplast Envelope. Plant Physiol. 2016;170:147-62 pubmed publisher
  642. dos Santos N, Matias A, Higa G, Kihara A, Cerchiaro G. Copper Uptake in Mammary Epithelial Cells Activates Cyclins and Triggers Antioxidant Response. Oxid Med Cell Longev. 2015;2015:162876 pubmed publisher
  643. Gal C, Murton H, Subramanian L, Whale A, Moore K, Paszkiewicz K, et al. Abo1, a conserved bromodomain AAA-ATPase, maintains global nucleosome occupancy and organisation. EMBO Rep. 2016;17:79-93 pubmed publisher
  644. Hübner B, Lomiento M, Mammoli F, Illner D, Markaki Y, Ferrari S, et al. Remodeling of nuclear landscapes during human myelopoietic cell differentiation maintains co-aligned active and inactive nuclear compartments. Epigenetics Chromatin. 2015;8:47 pubmed publisher
  645. Grassian A, Scales T, Knutson S, Kuntz K, McCarthy N, Lowe C, et al. A Medium-Throughput Single Cell CRISPR-Cas9 Assay to Assess Gene Essentiality. Biol Proced Online. 2015;17:15 pubmed publisher
  646. Cristini A, Park J, Capranico G, Legube G, Favre G, Sordet O. DNA-PK triggers histone ubiquitination and signaling in response to DNA double-strand breaks produced during the repair of transcription-blocking topoisomerase I lesions. Nucleic Acids Res. 2016;44:1161-78 pubmed publisher
  647. Laumet G, Garriga J, Chen S, Zhang Y, Li D, Smith T, et al. G9a is essential for epigenetic silencing of K(+) channel genes in acute-to-chronic pain transition. Nat Neurosci. 2015;18:1746-55 pubmed publisher
  648. Mursalimov S, Permyakova N, Deineko E, Houben A, Demidov D. Cytomixis doesn't induce obvious changes in chromatin modifications and programmed cell death in tobacco male meiocytes. Front Plant Sci. 2015;6:846 pubmed publisher
  649. Zhao E, Maj T, Kryczek I, Li W, Wu K, Zhao L, et al. Cancer mediates effector T cell dysfunction by targeting microRNAs and EZH2 via glycolysis restriction. Nat Immunol. 2016;17:95-103 pubmed publisher
  650. Amlie Wolf A, Ryvkin P, Tong R, Dragomir I, Suh E, Xu Y, et al. Transcriptomic Changes Due to Cytoplasmic TDP-43 Expression Reveal Dysregulation of Histone Transcripts and Nuclear Chromatin. PLoS ONE. 2015;10:e0141836 pubmed publisher
  651. Kizuka Y, Nakano M, Kitazume S, Saito T, Saido T, Taniguchi N. Bisecting GlcNAc modification stabilizes BACE1 protein under oxidative stress conditions. Biochem J. 2016;473:21-30 pubmed publisher
  652. Fukuda A, Mitani A, Miyashita T, Umezawa A, Akutsu H. Chromatin condensation of Xist genomic loci during oogenesis in mice. Development. 2015;142:4049-55 pubmed publisher
  653. Meyer S, Krebs S, Thirion C, Blum H, Krause S, Pfaffl M. Tumor Necrosis Factor Alpha and Insulin-Like Growth Factor 1 Induced Modifications of the Gene Expression Kinetics of Differentiating Skeletal Muscle Cells. PLoS ONE. 2015;10:e0139520 pubmed publisher
  654. Metser G, Shin H, Wang C, Yoo K, Oh S, Villarino A, et al. An autoregulatory enhancer controls mammary-specific STAT5 functions. Nucleic Acids Res. 2016;44:1052-63 pubmed publisher
  655. Renaud E, Barascu A, Rosselli F. Impaired TIP60-mediated H4K16 acetylation accounts for the aberrant chromatin accumulation of 53BP1 and RAP80 in Fanconi anemia pathway-deficient cells. Nucleic Acids Res. 2016;44:648-56 pubmed publisher
  656. Okoye Okafor U, Bartholdy B, Cartier J, Gao E, Pietrak B, Rendina A, et al. New IDH1 mutant inhibitors for treatment of acute myeloid leukemia. Nat Chem Biol. 2015;11:878-86 pubmed publisher
  657. Hehnly H, Canton D, Bucko P, Langeberg L, Ogier L, Gelman I, et al. A mitotic kinase scaffold depleted in testicular seminomas impacts spindle orientation in germ line stem cells. elife. 2015;4:e09384 pubmed publisher
  658. Zhan Y, Kost Alimova M, Shi X, Leo E, Bardenhagen J, Shepard H, et al. Development of novel cellular histone-binding and chromatin-displacement assays for bromodomain drug discovery. Epigenetics Chromatin. 2015;8:37 pubmed publisher
  659. Brideau N, Coker H, Gendrel A, Siebert C, Bezstarosti K, Demmers J, et al. Independent Mechanisms Target SMCHD1 to Trimethylated Histone H3 Lysine 9-Modified Chromatin and the Inactive X Chromosome. Mol Cell Biol. 2015;35:4053-68 pubmed publisher
  660. Sheikh B, Bechtel Walz W, Lucci J, Karpiuk O, Hild I, Hartleben B, et al. MOF maintains transcriptional programs regulating cellular stress response. Oncogene. 2016;35:2698-710 pubmed publisher
  661. Brina D, Miluzio A, Ricciardi S, Clarke K, Davidsen P, Viero G, et al. eIF6 coordinates insulin sensitivity and lipid metabolism by coupling translation to transcription. Nat Commun. 2015;6:8261 pubmed publisher
  662. Liu R, Yang Y, Shen J, Chen H, Zhang Q, Ba R, et al. Fstl1 is involved in the regulation of radial glial scaffold development. Mol Brain. 2015;8:53 pubmed publisher
  663. Hu P, Chu J, Wu Y, Sun L, Lv X, Zhu Y, et al. NBAT1 suppresses breast cancer metastasis by regulating DKK1 via PRC2. Oncotarget. 2015;6:32410-25 pubmed publisher
  664. Xiao X, Shi X, Fan Y, Zhang X, Wu M, Lan P, et al. GITR subverts Foxp3(+) Tregs to boost Th9 immunity through regulation of histone acetylation. Nat Commun. 2015;6:8266 pubmed publisher
  665. Xue X, Yang Y, Zhang A, Fong K, Kim J, Song B, et al. LncRNA HOTAIR enhances ER signaling and confers tamoxifen resistance in breast cancer. Oncogene. 2016;35:2746-55 pubmed publisher
  666. Kim S, Yang W, Min Y, Ko Y, Yoon S. The role of the polycomb repressive complex pathway in T and NK cell lymphoma: biological and prognostic implications. Tumour Biol. 2016;37:2037-47 pubmed publisher
  667. Paret C, Simon P, Vormbrock K, Bender C, Kölsch A, Breitkreuz A, et al. CXorf61 is a target for T cell based immunotherapy of triple-negative breast cancer. Oncotarget. 2015;6:25356-67 pubmed publisher
  668. Tiffen J, Gunatilake D, Gallagher S, Gowrishankar K, Heinemann A, Cullinane C, et al. Targeting activating mutations of EZH2 leads to potent cell growth inhibition in human melanoma by derepression of tumor suppressor genes. Oncotarget. 2015;6:27023-36 pubmed publisher
  669. Bravo M, Nicolini F, Starowicz K, Barroso S, Calés C, Aguilera A, et al. Polycomb RING1A- and RING1B-dependent histone H2A monoubiquitylation at pericentromeric regions promotes S-phase progression. J Cell Sci. 2015;128:3660-71 pubmed publisher
  670. Kang S, Kim S, Chai J, Kim S, Won K, Lee Y, et al. Transcriptomic Profiling and H3K27me3 Distribution Reveal Both Demethylase-Dependent and Independent Regulation of Developmental Gene Transcription in Cell Differentiation. PLoS ONE. 2015;10:e0135276 pubmed publisher
  671. Liu X, Chen X, Rycaj K, Chao H, Deng Q, Jeter C, et al. Systematic dissection of phenotypic, functional, and tumorigenic heterogeneity of human prostate cancer cells. Oncotarget. 2015;6:23959-86 pubmed
  672. Yamada N, Hasegawa Y, Yue M, Hamada T, Nakagawa S, Ogawa Y. Xist Exon 7 Contributes to the Stable Localization of Xist RNA on the Inactive X-Chromosome. PLoS Genet. 2015;11:e1005430 pubmed publisher
  673. Nezich C, Wang C, Fogel A, Youle R. MiT/TFE transcription factors are activated during mitophagy downstream of Parkin and Atg5. J Cell Biol. 2015;210:435-50 pubmed publisher
  674. Lovisa S, LeBleu V, Tampe B, Sugimoto H, Vadnagara K, Carstens J, et al. Epithelial-to-mesenchymal transition induces cell cycle arrest and parenchymal damage in renal fibrosis. Nat Med. 2015;21:998-1009 pubmed publisher
  675. McCleland M, Soukup T, Liu S, Esensten J, De Sousa E Melo F, Yaylaoglu M, et al. Cdk8 deletion in the Apc(Min) murine tumour model represses EZH2 activity and accelerates tumourigenesis. J Pathol. 2015;237:508-19 pubmed publisher
  676. Massey A. Multiparametric Cell Cycle Analysis Using the Operetta High-Content Imager and Harmony Software with PhenoLOGIC. PLoS ONE. 2015;10:e0134306 pubmed publisher
  677. Wagner W, Ciszewski W, Kania K. L- and D-lactate enhance DNA repair and modulate the resistance of cervical carcinoma cells to anticancer drugs via histone deacetylase inhibition and hydroxycarboxylic acid receptor 1 activation. Cell Commun Signal. 2015;13:36 pubmed publisher
  678. Vishwakarma B, Nguyen N, Makishima H, Hosono N, Gudmundsson K, Negi V, et al. Runx1 repression by histone deacetylation is critical for Setbp1-induced mouse myeloid leukemia development. Leukemia. 2016;30:200-8 pubmed publisher
  679. Sin H, Kartashov A, Hasegawa K, Barski A, Namekawa S. Poised chromatin and bivalent domains facilitate the mitosis-to-meiosis transition in the male germline. BMC Biol. 2015;13:53 pubmed publisher
  680. Yoon J, Sudo K, Kuroda M, Kato M, Lee I, Han J, et al. Phosphorylation status determines the opposing functions of Smad2/Smad3 as STAT3 cofactors in TH17 differentiation. Nat Commun. 2015;6:7600 pubmed publisher
  681. Jang C, Shibata Y, Starmer J, Yee D, Magnuson T. Histone H3.3 maintains genome integrity during mammalian development. Genes Dev. 2015;29:1377-92 pubmed publisher
  682. Sadaie M, Dillon C, Narita M, Young A, Cairney C, Godwin L, et al. Cell-based screen for altered nuclear phenotypes reveals senescence progression in polyploid cells after Aurora kinase B inhibition. Mol Biol Cell. 2015;26:2971-85 pubmed publisher
  683. Sive J, Basilico S, Hannah R, Kinston S, Calero Nieto F, Göttgens B. Genome-scale definition of the transcriptional programme associated with compromised PU.1 activity in acute myeloid leukaemia. Leukemia. 2016;30:14-23 pubmed publisher
  684. O Shaughnessy Kirwan A, Signolet J, Costello I, Gharbi S, Hendrich B. Constraint of gene expression by the chromatin remodelling protein CHD4 facilitates lineage specification. Development. 2015;142:2586-97 pubmed publisher
  685. Yang J, Kaur K, Ong L, Eisenberg C, Eisenberg L. Inhibition of G9a Histone Methyltransferase Converts Bone Marrow Mesenchymal Stem Cells to Cardiac Competent Progenitors. Stem Cells Int. 2015;2015:270428 pubmed publisher
  686. Stoy C, Sundaram A, Rios Garcia M, Wang X, Seibert O, Zota A, et al. Transcriptional co-factor Transducin beta-like (TBL) 1 acts as a checkpoint in pancreatic cancer malignancy. EMBO Mol Med. 2015;7:1048-62 pubmed publisher
  687. Petroni M, Sardina F, Heil C, Sahún Roncero M, Colicchia V, Veschi V, et al. The MRN complex is transcriptionally regulated by MYCN during neural cell proliferation to control replication stress. Cell Death Differ. 2016;23:197-206 pubmed publisher
  688. Park S, Shim J, Park H, Eum D, Park M, Mi Yi J, et al. MacroH2A1 downregulation enhances the stem-like properties of bladder cancer cells by transactivation of Lin28B. Oncogene. 2016;35:1292-301 pubmed publisher
  689. Kotomura N, Harada N, Ishihara S. The Proportion of Chromatin Graded between Closed and Open States Determines the Level of Transcripts Derived from Distinct Promoters in the CYP19 Gene. PLoS ONE. 2015;10:e0128282 pubmed publisher
  690. Alexandrova E, Yallowitz A, Li D, Xu S, Schulz R, Proia D, et al. Improving survival by exploiting tumour dependence on stabilized mutant p53 for treatment. Nature. 2015;523:352-6 pubmed publisher
  691. Sujobert P, Poulain L, Paubelle E, Zylbersztejn F, Grenier A, Lambert M, et al. Co-activation of AMPK and mTORC1 Induces Cytotoxicity in Acute Myeloid Leukemia. Cell Rep. 2015;11:1446-57 pubmed publisher
  692. Fischer S, Paul A, Wagner A, Mathias S, Geiss M, Schandock F, et al. miR-2861 as novel HDAC5 inhibitor in CHO cells enhances productivity while maintaining product quality. Biotechnol Bioeng. 2015;112:2142-53 pubmed publisher
  693. Heubach J, Monsior J, Deenen R, Niegisch G, Szarvas T, Niedworok C, et al. The long noncoding RNA HOTAIR has tissue and cell type-dependent effects on HOX gene expression and phenotype of urothelial cancer cells. Mol Cancer. 2015;14:108 pubmed publisher
  694. Singh P, Konar A, Kumar A, Srivas S, Thakur M. Hippocampal chromatin-modifying enzymes are pivotal for scopolamine-induced synaptic plasticity gene expression changes and memory impairment. J Neurochem. 2015;134:642-51 pubmed publisher
  695. Yin Y, Castro A, Hoekstra M, Yan T, Kanakamedala A, Dehner L, et al. Fibroblast Growth Factor 9 Regulation by MicroRNAs Controls Lung Development and Links DICER1 Loss to the Pathogenesis of Pleuropulmonary Blastoma. PLoS Genet. 2015;11:e1005242 pubmed publisher
  696. Chen Q, Arai D, Kawakami K, Sawada T, Jing X, Miyajima M, et al. EphA4 Regulates the Balance between Self-Renewal and Differentiation of Radial Glial Cells and Intermediate Neuronal Precursors in Cooperation with FGF Signaling. PLoS ONE. 2015;10:e0126942 pubmed publisher
  697. Nishioka C, Ikezoe T, Yang J, Yokoyama A. Tetraspanin Family Member, CD82, Regulates Expression of EZH2 via Inactivation of p38 MAPK Signaling in Leukemia Cells. PLoS ONE. 2015;10:e0125017 pubmed publisher
  698. Milev M, Hasaj B, Saint Dic D, Snounou S, Zhao Q, Sacher M. TRAMM/TrappC12 plays a role in chromosome congression, kinetochore stability, and CENP-E recruitment. J Cell Biol. 2015;209:221-34 pubmed publisher
  699. Chen H, Huang W, Yang L, Lin C. The PTEN-AKT-mTOR/RICTOR Pathway in Nasal Natural Killer Cell Lymphoma Is Activated by miR-494-3p via PTEN But Inhibited by miR-142-3p via RICTOR. Am J Pathol. 2015;185:1487-99 pubmed publisher
  700. Morchoisne Bolhy S, Geoffroy M, Bouhlel I, Alves A, Audugé N, Baudin X, et al. Intranuclear dynamics of the Nup107-160 complex. Mol Biol Cell. 2015;26:2343-56 pubmed publisher
  701. Huang X, Shen M, Wang L, Yu F, Wu W, Liu H. Effects of tributyltin chloride on developing mouse oocytes and preimplantation embryos. Microsc Microanal. 2015;21:358-67 pubmed publisher
  702. Liu X, Chen Z, Xu C, Leng X, Cao H, Ouyang G, et al. Repression of hypoxia-inducible factor α signaling by Set7-mediated methylation. Nucleic Acids Res. 2015;43:5081-98 pubmed publisher
  703. Muniz L, Davidson L, West S. Poly(A) Polymerase and the Nuclear Poly(A) Binding Protein, PABPN1, Coordinate the Splicing and Degradation of a Subset of Human Pre-mRNAs. Mol Cell Biol. 2015;35:2218-30 pubmed publisher
  704. Fan H, Zhang H, Pascuzzi P, Andrisani O. Hepatitis B virus X protein induces EpCAM expression via active DNA demethylation directed by RelA in complex with EZH2 and TET2. Oncogene. 2016;35:715-26 pubmed publisher
  705. Ma S, Jiang B, Deng W, Gu Z, Wu F, Li T, et al. D-2-hydroxyglutarate is essential for maintaining oncogenic property of mutant IDH-containing cancer cells but dispensable for cell growth. Oncotarget. 2015;6:8606-20 pubmed
  706. Fallahi Sichani M, Moerke N, Niepel M, Zhang T, Gray N, Sorger P. Systematic analysis of BRAF(V600E) melanomas reveals a role for JNK/c-Jun pathway in adaptive resistance to drug-induced apoptosis. Mol Syst Biol. 2015;11:797 pubmed publisher
  707. Salvucci O, Ohnuki H, Maric D, Hou X, Li X, Yoon S, et al. EphrinB2 controls vessel pruning through STAT1-JNK3 signalling. Nat Commun. 2015;6:6576 pubmed publisher
  708. Carlson S, Moore K, Sankaran S, Reynoird N, Elias J, Gozani O. A Proteomic Strategy Identifies Lysine Methylation of Splicing Factor snRNP70 by the SETMAR Enzyme. J Biol Chem. 2015;290:12040-7 pubmed publisher
  709. Hendriks I, Treffers L, Verlaan de Vries M, Olsen J, Vertegaal A. SUMO-2 Orchestrates Chromatin Modifiers in Response to DNA Damage. Cell Rep. 2015;10:1778-1791 pubmed publisher
  710. Poirier J, Gardner E, Connis N, Moreira A, de Stanchina E, Hann C, et al. DNA methylation in small cell lung cancer defines distinct disease subtypes and correlates with high expression of EZH2. Oncogene. 2015;34:5869-78 pubmed publisher
  711. Simon H, ODELBERG S. Assessing cardiomyocyte proliferative capacity in the newt heart and primary culture. Methods Mol Biol. 2015;1290:227-40 pubmed publisher
  712. Bardhan K, Paschall A, Yang D, Chen M, Simon P, Bhutia Y, et al. IFNγ Induces DNA Methylation-Silenced GPR109A Expression via pSTAT1/p300 and H3K18 Acetylation in Colon Cancer. Cancer Immunol Res. 2015;3:795-805 pubmed publisher
  713. Arbeille E, Reynaud F, Sanyas I, Bozon M, Kindbeiter K, Causeret F, et al. Cerebrospinal fluid-derived Semaphorin3B orients neuroepithelial cell divisions in the apicobasal axis. Nat Commun. 2015;6:6366 pubmed publisher
  714. Bitler B, Aird K, Garipov A, Li H, Amatangelo M, Kossenkov A, et al. Synthetic lethality by targeting EZH2 methyltransferase activity in ARID1A-mutated cancers. Nat Med. 2015;21:231-8 pubmed publisher
  715. Ishihara S, Yasuda M, Ishizu A, Ishikawa M, Shirato H, Haga H. Activating transcription factor 5 enhances radioresistance and malignancy in cancer cells. Oncotarget. 2015;6:4602-14 pubmed
  716. Jeong H, Gil N, Lee H, Cho S, Kim K, Chun K, et al. Timely Degradation of Wip1 Phosphatase by APC/C Activator Protein Cdh1 is Necessary for Normal Mitotic Progression. J Cell Biochem. 2015;116:1602-12 pubmed publisher
  717. Lee E, Kim S, Cho K. Reconstituted High-Density Lipoprotein Containing Human Growth Hormone-1 Shows Potent Tissue Regeneration Activity with Enhancement of Anti-Oxidant and Anti-Atherosclerotic Activities. Rejuvenation Res. 2015;18:245-56 pubmed publisher
  718. Sun S, Ling S, Qiu J, Albuquerque C, Zhou Y, Tokunaga S, et al. ALS-causative mutations in FUS/TLS confer gain and loss of function by altered association with SMN and U1-snRNP. Nat Commun. 2015;6:6171 pubmed publisher
  719. Tian E, Stevens S, Guan Y, Springer D, Anderson S, Starost M, et al. Galnt1 is required for normal heart valve development and cardiac function. PLoS ONE. 2015;10:e0115861 pubmed publisher
  720. Hsiao S, Chen M, Chen C, Chien M, Hua K, Hsiao M, et al. The H3K9 Methyltransferase G9a Represses E-cadherin and is Associated with Myometrial Invasion in Endometrial Cancer. Ann Surg Oncol. 2015;22 Suppl 3:S1556-65 pubmed publisher
  721. Kim S, Ebbert K, Cordeiro M, Romero M, Zhu J, Serna V, et al. Cell autonomous phosphoinositide 3-kinase activation in oocytes disrupts normal ovarian function through promoting survival and overgrowth of ovarian follicles. Endocrinology. 2015;156:1464-76 pubmed publisher
  722. Ochi T, Blackford A, Coates J, Jhujh S, Mehmood S, Tamura N, et al. DNA repair. PAXX, a paralog of XRCC4 and XLF, interacts with Ku to promote DNA double-strand break repair. Science. 2015;347:185-188 pubmed publisher
  723. Jacob V, Chernyavskaya Y, Chen X, Tan P, Kent B, Hoshida Y, et al. DNA hypomethylation induces a DNA replication-associated cell cycle arrest to block hepatic outgrowth in uhrf1 mutant zebrafish embryos. Development. 2015;142:510-21 pubmed publisher
  724. Wang W, Visavadiya N, Pandya J, Nelson P, Sullivan P, Springer J. Mitochondria-associated microRNAs in rat hippocampus following traumatic brain injury. Exp Neurol. 2015;265:84-93 pubmed publisher
  725. Watson M, Hedley D. Whole blood measurement of histone modifications linked to the epigenetic regulation of gene expression. Curr Protoc Cytom. 2015;71:6.36.1-9 pubmed publisher
  726. Pacaud R, Cheray M, Nadaradjane A, Vallette F, Cartron P. Histone H3 phosphorylation in GBM: a new rational to guide the use of kinase inhibitors in anti-GBM therapy. Theranostics. 2015;5:12-22 pubmed publisher
  727. Naganuma K, Hatta M, Ikebe T, Yamazaki J. Epigenetic alterations of the keratin 13 gene in oral squamous cell carcinoma. BMC Cancer. 2014;14:988 pubmed publisher
  728. German S, Campbell K, Thornton E, McLachlan G, Sweetman D, Alberio R. Ovine induced pluripotent stem cells are resistant to reprogramming after nuclear transfer. Cell Reprogram. 2015;17:19-27 pubmed publisher
  729. Ulanet D, Couto K, Jha A, Choe S, Wang A, Woo H, et al. Mesenchymal phenotype predisposes lung cancer cells to impaired proliferation and redox stress in response to glutaminase inhibition. PLoS ONE. 2014;9:e115144 pubmed publisher
  730. Smith B, Vance C, Scotter E, Troakes C, Wong C, Topp S, et al. Novel mutations support a role for Profilin 1 in the pathogenesis of ALS. Neurobiol Aging. 2015;36:1602.e17-27 pubmed publisher
  731. Xue L, Furusawa Y, Okayasu R, Miura M, Cui X, Liu C, et al. The complexity of DNA double strand break is a crucial factor for activating ATR signaling pathway for G2/M checkpoint regulation regardless of ATM function. DNA Repair (Amst). 2015;25:72-83 pubmed publisher
  732. Knutson S, Warholic N, Johnston L, Klaus C, Wigle T, Iwanowicz D, et al. Synergistic Anti-Tumor Activity of EZH2 Inhibitors and Glucocorticoid Receptor Agonists in Models of Germinal Center Non-Hodgkin Lymphomas. PLoS ONE. 2014;9:e111840 pubmed publisher
  733. Castonguay E, White S, Kagansky A, St Cyr D, Castillo A, Brugger C, et al. Panspecies small-molecule disruptors of heterochromatin-mediated transcriptional gene silencing. Mol Cell Biol. 2015;35:662-74 pubmed publisher
  734. Lee J, Peng Y, Lin W, Parrish J. Coordinate control of terminal dendrite patterning and dynamics by the membrane protein Raw. Development. 2015;142:162-73 pubmed publisher
  735. Luense S, Denner P, Fernández Montalván A, Hartung I, Husemann M, Stresemann C, et al. Quantification of histone H3 Lys27 trimethylation (H3K27me3) by high-throughput microscopy enables cellular large-scale screening for small-molecule EZH2 inhibitors. J Biomol Screen. 2015;20:190-201 pubmed publisher
  736. Peterson E, Menon V, Gatti L, Kipping R, Dewasinghe D, Perego P, et al. Nucleolar targeting by platinum: p53-independent apoptosis follows rRNA inhibition, cell-cycle arrest, and DNA compaction. Mol Pharm. 2015;12:287-97 pubmed publisher
  737. Hashizume R, Andor N, Ihara Y, Lerner R, Gan H, Chen X, et al. Pharmacologic inhibition of histone demethylation as a therapy for pediatric brainstem glioma. Nat Med. 2014;20:1394-6 pubmed publisher
  738. Fink D, Connor A, Kelley P, Steele M, Hollingsworth M, Tempero R. Nerve growth factor regulates neurolymphatic remodeling during corneal inflammation and resolution. PLoS ONE. 2014;9:e112737 pubmed publisher
  739. Shi X, Zhang Z, Zhan X, Cao M, Satoh T, Akira S, et al. An epigenetic switch induced by Shh signalling regulates gene activation during development and medulloblastoma growth. Nat Commun. 2014;5:5425 pubmed publisher
  740. Santos G, da Silva A, Feldman L, Ventura G, Vassetzky Y, de Moura Gallo C. Epigenetic modifications, chromatin distribution and TP53 transcription in a model of breast cancer progression. J Cell Biochem. 2015;116:533-41 pubmed publisher
  741. Zhuang C, Sheng C, Shin W, Wu Y, Li J, Yao J, et al. A novel drug discovery strategy: mechanistic investigation of an enantiomeric antitumor agent targeting dual p53 and NF-κB pathways. Oncotarget. 2014;5:10830-9 pubmed
  742. Kawasumi M, Bradner J, Tolliday N, Thibodeau R, Sloan H, Brummond K, et al. Identification of ATR-Chk1 pathway inhibitors that selectively target p53-deficient cells without directly suppressing ATR catalytic activity. Cancer Res. 2014;74:7534-45 pubmed publisher
  743. Van der Meulen J, Sanghvi V, Mavrakis K, Durinck K, Fang F, Matthijssens F, et al. The H3K27me3 demethylase UTX is a gender-specific tumor suppressor in T-cell acute lymphoblastic leukemia. Blood. 2015;125:13-21 pubmed publisher
  744. Xu S, Tong M, Huang J, Zhang Y, Qiao Y, Weng W, et al. TRIB2 inhibits Wnt/β-Catenin/TCF4 signaling through its associated ubiquitin E3 ligases, β-TrCP, COP1 and Smurf1, in liver cancer cells. FEBS Lett. 2014;588:4334-41 pubmed publisher
  745. Tchao J, Han L, Lin B, Yang L, Tobita K. Combined biophysical and soluble factor modulation induces cardiomyocyte differentiation from human muscle derived stem cells. Sci Rep. 2014;4:6614 pubmed publisher
  746. Bakhtari A, Rahmani H, Bonakdar E, Jafarpour F, Asgari V, Hosseini S, et al. The interfering effects of superovulation and vitrification upon some important epigenetic biomarkers in mouse blastocyst. Cryobiology. 2014;69:419-27 pubmed publisher
  747. Saloura V, Cho H, Kiyotani K, Alachkar H, Zuo Z, Nakakido M, et al. WHSC1 promotes oncogenesis through regulation of NIMA-related kinase-7 in squamous cell carcinoma of the head and neck. Mol Cancer Res. 2015;13:293-304 pubmed publisher
  748. Quan J, Adelmant G, Marto J, Look A, Yusufzai T. The chromatin remodeling factor CHD5 is a transcriptional repressor of WEE1. PLoS ONE. 2014;9:e108066 pubmed publisher
  749. Seredick S, Hutchinson S, Van Ryswyk L, Talbot J, Eisen J. Lhx3 and Lhx4 suppress Kolmer-Agduhr interneuron characteristics within zebrafish axial motoneurons. Development. 2014;141:3900-9 pubmed publisher
  750. Chan Y, West S. Spatial control of the GEN1 Holliday junction resolvase ensures genome stability. Nat Commun. 2014;5:4844 pubmed publisher
  751. Yanagi T, Krajewska M, Matsuzawa S, Reed J. PCTAIRE1 phosphorylates p27 and regulates mitosis in cancer cells. Cancer Res. 2014;74:5795-807 pubmed publisher
  752. Xu Y, Gan E, Zhou J, Wee W, Zhang X, Ito T. Arabidopsis MRG domain proteins bridge two histone modifications to elevate expression of flowering genes. Nucleic Acids Res. 2014;42:10960-74 pubmed publisher
  753. Ntziachristos P, Tsirigos A, Welstead G, Trimarchi T, Bakogianni S, Xu L, et al. Contrasting roles of histone 3 lysine 27 demethylases in acute lymphoblastic leukaemia. Nature. 2014;514:513-7 pubmed publisher
  754. Wanet A, Remacle N, Najar M, Sokal E, Arnould T, Najimi M, et al. Mitochondrial remodeling in hepatic differentiation and dedifferentiation. Int J Biochem Cell Biol. 2014;54:174-85 pubmed publisher
  755. Piazzolla D, Palla A, Pantoja C, Canamero M, de Castro I, Ortega S, et al. Lineage-restricted function of the pluripotency factor NANOG in stratified epithelia. Nat Commun. 2014;5:4226 pubmed publisher
  756. Balmer N, Klima S, Rempel E, Ivanova V, Kolde R, Weng M, et al. From transient transcriptome responses to disturbed neurodevelopment: role of histone acetylation and methylation as epigenetic switch between reversible and irreversible drug effects. Arch Toxicol. 2014;88:1451-68 pubmed publisher
  757. Zhu Z, Liu Y, Li K, Liu J, Wang H, Sun B, et al. Protein tyrosine phosphatase receptor U (PTPRU) is required for glioma growth and motility. Carcinogenesis. 2014;35:1901-10 pubmed publisher
  758. Kumar P P, Emechebe U, Smith R, Franklin S, Moore B, Yandell M, et al. Coordinated control of senescence by lncRNA and a novel T-box3 co-repressor complex. elife. 2014;3: pubmed publisher
  759. Kielar M, Tuy F, Bizzotto S, Lebrand C, de Juan Romero C, Poirier K, et al. Mutations in Eml1 lead to ectopic progenitors and neuronal heterotopia in mouse and human. Nat Neurosci. 2014;17:923-33 pubmed publisher
  760. Cooper S, Dienstbier M, Hassan R, Schermelleh L, Sharif J, Blackledge N, et al. Targeting polycomb to pericentric heterochromatin in embryonic stem cells reveals a role for H2AK119u1 in PRC2 recruitment. Cell Rep. 2014;7:1456-1470 pubmed publisher
  761. Raimondi L, Amodio N, Di Martino M, Altomare E, Leotta M, Caracciolo D, et al. Targeting of multiple myeloma-related angiogenesis by miR-199a-5p mimics: in vitro and in vivo anti-tumor activity. Oncotarget. 2014;5:3039-54 pubmed
  762. Brown D, LASSEGUE B, Lee M, Zafari R, Long J, Saavedra H, et al. Poldip2 knockout results in perinatal lethality, reduced cellular growth and increased autophagy of mouse embryonic fibroblasts. PLoS ONE. 2014;9:e96657 pubmed publisher
  763. Cen B, Xiong Y, Song J, Mahajan S, DuPont R, McEachern K, et al. The Pim-1 protein kinase is an important regulator of MET receptor tyrosine kinase levels and signaling. Mol Cell Biol. 2014;34:2517-32 pubmed publisher
  764. Elhammali A, Ippolito J, Collins L, Crowley J, Marasa J, Piwnica Worms D. A high-throughput fluorimetric assay for 2-hydroxyglutarate identifies Zaprinast as a glutaminase inhibitor. Cancer Discov. 2014;4:828-39 pubmed publisher
  765. Lu T, Aron L, Zullo J, Pan Y, Kim H, Chen Y, et al. REST and stress resistance in ageing and Alzheimer's disease. Nature. 2014;507:448-54 pubmed publisher
  766. Zhang X, Ling J, Barcia G, Jing L, Wu J, Barry B, et al. Mutations in QARS, encoding glutaminyl-tRNA synthetase, cause progressive microcephaly, cerebral-cerebellar atrophy, and intractable seizures. Am J Hum Genet. 2014;94:547-58 pubmed publisher
  767. Zeng Z, Shen L, Li X, Luo T, Wei X, Zhang J, et al. Disruption of histamine H2 receptor slows heart failure progression through reducing myocardial apoptosis and fibrosis. Clin Sci (Lond). 2014;127:435-48 pubmed publisher
  768. Glebov K, Voronezhskaya E, Khabarova M, Ivashkin E, Nezlin L, Ponimaskin E. Mechanisms underlying dual effects of serotonin during development of Helisoma trivolvis (Mollusca). BMC Dev Biol. 2014;14:14 pubmed publisher
  769. Sanders Y, Hagood J, Liu H, Zhang W, Ambalavanan N, Thannickal V. Histone deacetylase inhibition promotes fibroblast apoptosis and ameliorates pulmonary fibrosis in mice. Eur Respir J. 2014;43:1448-58 pubmed publisher
  770. Knutson S, Kawano S, Minoshima Y, Warholic N, Huang K, Xiao Y, et al. Selective inhibition of EZH2 by EPZ-6438 leads to potent antitumor activity in EZH2-mutant non-Hodgkin lymphoma. Mol Cancer Ther. 2014;13:842-54 pubmed publisher
  771. Aoshiba K, Tsuji T, Itoh M, Semba S, Yamaguchi K, Nakamura H, et al. A murine model of airway fibrosis induced by repeated naphthalene exposure. Exp Toxicol Pathol. 2014;66:169-77 pubmed publisher
  772. Arnandis T, Ferrer Vicens I, Torres L, García C, García Trevijano E, Zaragoza R, et al. Differential functions of calpain 1 during epithelial cell death and adipocyte differentiation in mammary gland involution. Biochem J. 2014;459:355-68 pubmed publisher
  773. Cao Q, Wang X, Zhao M, Yang R, Malik R, Qiao Y, et al. The central role of EED in the orchestration of polycomb group complexes. Nat Commun. 2014;5:3127 pubmed publisher
  774. Schröder Heurich B, Wieland B, Lavin M, Schindler D, Dork T. Protective role of RAD50 on chromatin bridges during abnormal cytokinesis. FASEB J. 2014;28:1331-41 pubmed publisher
  775. Hast B, Cloer E, Goldfarb D, Li H, Siesser P, Yan F, et al. Cancer-derived mutations in KEAP1 impair NRF2 degradation but not ubiquitination. Cancer Res. 2014;74:808-17 pubmed publisher
  776. Sulahian R, Casey F, Shen J, Qian Z, Shin H, Ogino S, et al. An integrative analysis reveals functional targets of GATA6 transcriptional regulation in gastric cancer. Oncogene. 2014;33:5637-48 pubmed publisher
  777. Subbanna S, Nagre N, Shivakumar M, Umapathy N, Psychoyos D, Basavarajappa B. Ethanol induced acetylation of histone at G9a exon1 and G9a-mediated histone H3 dimethylation leads to neurodegeneration in neonatal mice. Neuroscience. 2014;258:422-32 pubmed publisher
  778. Gregory B, Cheung V. Natural variation in the histone demethylase, KDM4C, influences expression levels of specific genes including those that affect cell growth. Genome Res. 2014;24:52-63 pubmed publisher
  779. Hammond S, Byrum S, Namjoshi S, Graves H, Dennehey B, Tackett A, et al. Mitotic phosphorylation of histone H3 threonine 80. Cell Cycle. 2014;13:440-52 pubmed publisher
  780. Liu Y, Platchek M, Kement B, Bee W, Truong M, Zeng X, et al. A novel approach applying a chemical biology strategy in phenotypic screening reveals pathway-selective regulators of histone 3 K27 tri-methylation. Mol Biosyst. 2014;10:251-7 pubmed publisher
  781. Wu H, Balsbaugh J, Chandler H, Georgilis A, Zullow H, Shabanowitz J, et al. Mitogen-activated protein kinase signaling mediates phosphorylation of polycomb ortholog Cbx7. J Biol Chem. 2013;288:36398-408 pubmed publisher
  782. McLaughlin N, Wang F, Saifudeen Z, El Dahr S. In situ histone landscape of nephrogenesis. Epigenetics. 2014;9:222-35 pubmed publisher
  783. Tümer E, Bröer A, Balkrishna S, Jülich T, Broer S. Enterocyte-specific regulation of the apical nutrient transporter SLC6A19 (B(0)AT1) by transcriptional and epigenetic networks. J Biol Chem. 2013;288:33813-23 pubmed publisher
  784. Douglas N, Arora R, Chen C, Sauer M, Papaioannou V. Investigating the role of tbx4 in the female germline in mice. Biol Reprod. 2013;89:148 pubmed publisher
  785. Subramanian V, Mazumder A, Surface L, Butty V, Fields P, Alwan A, et al. H2A.Z acidic patch couples chromatin dynamics to regulation of gene expression programs during ESC differentiation. PLoS Genet. 2013;9:e1003725 pubmed publisher
  786. Lee S, Phipson B, Hyland C, Leong H, Allan R, Lun A, et al. Polycomb repressive complex 2 (PRC2) suppresses E?-myc lymphoma. Blood. 2013;122:2654-63 pubmed publisher
  787. Copeland A, Altamura L, Van Deusen N, Schmaljohn C. Nuclear relocalization of polyadenylate binding protein during rift valley fever virus infection involves expression of the NSs gene. J Virol. 2013;87:11659-69 pubmed publisher
  788. Voss M, Campbell K, Saranzewa N, Campbell D, Hastie C, Peggie M, et al. Protein phosphatase 4 is phosphorylated and inactivated by Cdk in response to spindle toxins and interacts with ?-tubulin. Cell Cycle. 2013;12:2876-87 pubmed publisher
  789. Lauffer B, Mintzer R, Fong R, Mukund S, Tam C, Zilberleyb I, et al. Histone deacetylase (HDAC) inhibitor kinetic rate constants correlate with cellular histone acetylation but not transcription and cell viability. J Biol Chem. 2013;288:26926-43 pubmed publisher
  790. Saurat N, Andersson T, Vasistha N, Molnár Z, Livesey F. Dicer is required for neural stem cell multipotency and lineage progression during cerebral cortex development. Neural Dev. 2013;8:14 pubmed publisher
  791. Dai C, Sun F, Zhu C, Hu X. Tumor environmental factors glucose deprivation and lactic acidosis induce mitotic chromosomal instability--an implication in aneuploid human tumors. PLoS ONE. 2013;8:e63054 pubmed publisher
  792. Huang S, Scruggs A, Donaghy J, Horowitz J, Zaslona Z, Przybranowski S, et al. Histone modifications are responsible for decreased Fas expression and apoptosis resistance in fibrotic lung fibroblasts. Cell Death Dis. 2013;4:e621 pubmed publisher
  793. Oshikawa M, Okada K, Nakajima K, Ajioka I. Cortical excitatory neurons become protected from cell division during neurogenesis in an Rb family-dependent manner. Development. 2013;140:2310-20 pubmed publisher
  794. Subbanna S, Shivakumar M, Umapathy N, Saito M, Mohan P, Kumar A, et al. G9a-mediated histone methylation regulates ethanol-induced neurodegeneration in the neonatal mouse brain. Neurobiol Dis. 2013;54:475-85 pubmed publisher
  795. Lau P, Cheung P. Elucidating combinatorial histone modifications and crosstalks by coupling histone-modifying enzyme with biotin ligase activity. Nucleic Acids Res. 2013;41:e49 pubmed publisher
  796. Blakemore L, Boes C, Cordell R, Manson M. Curcumin-induced mitotic arrest is characterized by spindle abnormalities, defects in chromosomal congression and DNA damage. Carcinogenesis. 2013;34:351-60 pubmed publisher
  797. Gaydos L, Rechtsteiner A, Egelhofer T, Carroll C, Strome S. Antagonism between MES-4 and Polycomb repressive complex 2 promotes appropriate gene expression in C. elegans germ cells. Cell Rep. 2012;2:1169-77 pubmed publisher
  798. Maltby V, Martin B, Brind Amour J, Chruscicki A, McBurney K, Schulze J, et al. Histone H3K4 demethylation is negatively regulated by histone H3 acetylation in Saccharomyces cerevisiae. Proc Natl Acad Sci U S A. 2012;109:18505-10 pubmed publisher
  799. Gallagher S, Kofman A, Huszar J, Dannenberg J, Depinho R, Braun R, et al. Distinct requirements for Sin3a in perinatal male gonocytes and differentiating spermatogonia. Dev Biol. 2013;373:83-94 pubmed publisher
  800. Schwab K, Smith G, Dressler G. Arrested spermatogenesis and evidence for DNA damage in PTIP mutant testes. Dev Biol. 2013;373:64-71 pubmed publisher
  801. Ohmori S, Takai J, Ishijima Y, Suzuki M, Moriguchi T, Philipsen S, et al. Regulation of GATA factor expression is distinct between erythroid and mast cell lineages. Mol Cell Biol. 2012;32:4742-55 pubmed publisher
  802. Makeyev A, Enkhmandakh B, Hong S, Joshi P, Shin D, Bayarsaihan D. Diversity and complexity in chromatin recognition by TFII-I transcription factors in pluripotent embryonic stem cells and embryonic tissues. PLoS ONE. 2012;7:e44443 pubmed publisher
  803. Cerf A, Tian H, Craighead H. Ordered arrays of native chromatin molecules for high-resolution imaging and analysis. ACS Nano. 2012;6:7928-34 pubmed
  804. Weng M, Zimmer B, Pöltl D, Broeg M, Ivanova V, Gaspar J, et al. Extensive transcriptional regulation of chromatin modifiers during human neurodevelopment. PLoS ONE. 2012;7:e36708 pubmed publisher
  805. Kloth M, Goering W, Ribarska T, Arsov C, Sorensen K, Schulz W. The SNP rs6441224 influences transcriptional activity and prognostically relevant hypermethylation of RARRES1 in prostate cancer. Int J Cancer. 2012;131:E897-904 pubmed publisher
  806. Rothova M, Peterkova R, Tucker A. Fate map of the dental mesenchyme: dynamic development of the dental papilla and follicle. Dev Biol. 2012;366:244-54 pubmed publisher
  807. Murata T, Kondo Y, Sugimoto A, Kawashima D, Saito S, Isomura H, et al. Epigenetic histone modification of Epstein-Barr virus BZLF1 promoter during latency and reactivation in Raji cells. J Virol. 2012;86:4752-61 pubmed publisher
  808. Drogaris P, Villeneuve V, Pomiès C, Lee E, Bourdeau V, Bonneil E, et al. Histone deacetylase inhibitors globally enhance h3/h4 tail acetylation without affecting h3 lysine 56 acetylation. Sci Rep. 2012;2:220 pubmed publisher
  809. De Cecco M, Jeyapalan J, Zhao X, Tamamori Adachi M, Sedivy J. Nuclear protein accumulation in cellular senescence and organismal aging revealed with a novel single-cell resolution fluorescence microscopy assay. Aging (Albany NY). 2011;3:955-67 pubmed
  810. Rada Iglesias A, Bajpai R, Swigut T, Brugmann S, Flynn R, Wysocka J. A unique chromatin signature uncovers early developmental enhancers in humans. Nature. 2011;470:279-83 pubmed publisher
  811. Sarma K, Levasseur P, Aristarkhov A, Lee J. Locked nucleic acids (LNAs) reveal sequence requirements and kinetics of Xist RNA localization to the X chromosome. Proc Natl Acad Sci U S A. 2010;107:22196-201 pubmed publisher
  812. Sneeringer C, Scott M, Kuntz K, Knutson S, Pollock R, Richon V, et al. Coordinated activities of wild-type plus mutant EZH2 drive tumor-associated hypertrimethylation of lysine 27 on histone H3 (H3K27) in human B-cell lymphomas. Proc Natl Acad Sci U S A. 2010;107:20980-5 pubmed publisher
  813. Liu H, Galka M, Iberg A, Wang Z, Li L, Voss C, et al. Systematic identification of methyllysine-driven interactions for histone and nonhistone targets. J Proteome Res. 2010;9:5827-36 pubmed publisher
  814. Dhayalan A, Rajavelu A, Rathert P, Tamas R, Jurkowska R, Ragozin S, et al. The Dnmt3a PWWP domain reads histone 3 lysine 36 trimethylation and guides DNA methylation. J Biol Chem. 2010;285:26114-20 pubmed publisher
  815. Ribarska T, Ingenwerth M, Goering W, Engers R, Schulz W. Epigenetic inactivation of the placentally imprinted tumor suppressor gene TFPI2 in prostate carcinoma. Cancer Genomics Proteomics. 2010;7:51-60 pubmed
  816. Menigatti M, Cattaneo E, Sabates Bellver J, Ilinsky V, Went P, Buffoli F, et al. The protein tyrosine phosphatase receptor type R gene is an early and frequent target of silencing in human colorectal tumorigenesis. Mol Cancer. 2009;8:124 pubmed publisher