This is a Validated Antibody Database (VAD) review about bovine CTNNB1, based on 278 published articles (read how Labome selects the articles), using CTNNB1 antibody in all methods. It is aimed to help Labome visitors find the most suited CTNNB1 antibody. Please note the number of articles fluctuates since newly identified citations are added and citations for discontinued catalog numbers are removed regularly.
Knockout validation
Abcam
mouse monoclonal (15B8)
  • immunohistochemistry knockout validation; human; 1:250; loading ...; fig 2c
  • immunohistochemistry knockout validation; chicken; 1:250; loading ...; fig 2f
Abcam CTNNB1 antibody (Abcam, ab6301) was used in immunohistochemistry knockout validation on human samples at 1:250 (fig 2c) and in immunohistochemistry knockout validation on chicken samples at 1:250 (fig 2f). Development (2021) ncbi
Abcam
domestic rabbit monoclonal (E247)
  • western blot knockout validation; mouse; 1:100; loading ...; fig s3, s6
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot knockout validation on mouse samples at 1:100 (fig s3, s6). Hepatology (2019) ncbi
Cell Signaling Technology
domestic rabbit monoclonal (D10A8)
  • western blot knockout validation; mouse; 1:1000; loading ...; fig 3a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot knockout validation on mouse samples at 1:1000 (fig 3a). elife (2018) ncbi
Cell Signaling Technology
domestic rabbit monoclonal (6B3)
  • western blot knockout validation; mouse; loading ...; fig s8h
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582) was used in western blot knockout validation on mouse samples (fig s8h). Hepatology (2018) ncbi
Cell Signaling Technology
domestic rabbit monoclonal (D10A8)
  • western blot knockout validation; mouse; 1:1000; fig s4d
In order to develop a CRISPR-FLIP method to generate biallelic conditional gene knockouts in diploid or aneuploid cells, Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8480) was used in western blot knockout validation on mouse samples at 1:1000 (fig s4d). Nat Methods (2017) ncbi
Cell Signaling Technology
domestic rabbit polyclonal
  • western blot knockout validation; human; loading ...; fig s2c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9587S) was used in western blot knockout validation on human samples (fig s2c). Nature (2017) ncbi
Abcam
domestic rabbit monoclonal (E247)
  • immunohistochemistry - paraffin section; mouse; 1:100; loading ...; fig s5a, s5b
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry - paraffin section on mouse samples at 1:100 (fig s5a, s5b). Nat Commun (2022) ncbi
domestic rabbit monoclonal (E247)
  • immunocytochemistry; human; loading ...; fig 5g
Abcam CTNNB1 antibody (Abcam, Ab32572) was used in immunocytochemistry on human samples (fig 5g). Cell Rep (2022) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - paraffin section; human; 1:150; loading ...; fig 3a
  • western blot; human; 1:200; loading ...; fig 6a
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry - paraffin section on human samples at 1:150 (fig 3a) and in western blot on human samples at 1:200 (fig 6a). Int J Mol Med (2022) ncbi
domestic rabbit monoclonal (E247)
  • western blot; human; 1:2000; loading ...; fig 4a
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on human samples at 1:2000 (fig 4a). Sci Adv (2021) ncbi
domestic rabbit monoclonal (E247)
  • western blot; mouse; 1:10,000; fig 6a
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on mouse samples at 1:10,000 (fig 6a). Fluids Barriers CNS (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Abcam CTNNB1 antibody (Abcam, ab6302) was used in western blot on human samples (fig 2a). Pharmaceutics (2021) ncbi
domestic rabbit monoclonal (E247)
  • western blot; mouse; 1:5000; loading ...; fig 2j
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on mouse samples at 1:5000 (fig 2j). elife (2021) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; fig 6s
Abcam CTNNB1 antibody (Abcam, ab6302) was used in immunocytochemistry on human samples (fig 6s). EMBO J (2021) ncbi
domestic rabbit monoclonal (E247)
  • western blot; rat; 1:5000; loading ...; fig 7b
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on rat samples at 1:5000 (fig 7b). Aging (Albany NY) (2021) ncbi
domestic rabbit monoclonal (E247)
  • immunocytochemistry; mouse; 1:200; loading ...; fig 4g
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunocytochemistry on mouse samples at 1:200 (fig 4g). NPJ Regen Med (2021) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - paraffin section; mouse; 1:500; loading ...; fig 7b
Abcam CTNNB1 antibody (abcam, ab32572) was used in immunohistochemistry - paraffin section on mouse samples at 1:500 (fig 7b). Oncoimmunology (2021) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry knockout validation; human; 1:250; loading ...; fig 2c
  • immunohistochemistry knockout validation; chicken; 1:250; loading ...; fig 2f
Abcam CTNNB1 antibody (Abcam, ab6301) was used in immunohistochemistry knockout validation on human samples at 1:250 (fig 2c) and in immunohistochemistry knockout validation on chicken samples at 1:250 (fig 2f). Development (2021) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - paraffin section; mouse; loading ...; fig 3b, 3j
Abcam CTNNB1 antibody (Abcam, E247) was used in immunohistochemistry - paraffin section on mouse samples (fig 3b, 3j). Cancers (Basel) (2021) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - paraffin section; human; loading ...; fig 8a
  • western blot; human; loading ...; fig 5k
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry - paraffin section on human samples (fig 8a) and in western blot on human samples (fig 5k). Clin Transl Med (2021) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry; rat; 1:500; loading ...; fig 7b
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry on rat samples at 1:500 (fig 7b). PLoS ONE (2021) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; mouse; 1:100; loading ...; fig 3b
Abcam CTNNB1 antibody (Abcam, ab6302) was used in immunohistochemistry on mouse samples at 1:100 (fig 3b). Cell Mol Gastroenterol Hepatol (2021) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry; mouse; 1:200; loading ...; fig 4a
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry on mouse samples at 1:200 (fig 4a). Peerj (2020) ncbi
domestic rabbit monoclonal (E247)
  • immunocytochemistry; human; 1:200; loading ...; fig 8a
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunocytochemistry on human samples at 1:200 (fig 8a). Int J Mol Sci (2020) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - paraffin section; human; 1:4000; loading ...; fig 1a, 2a
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry - paraffin section on human samples at 1:4000 (fig 1a, 2a). PLoS ONE (2020) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - paraffin section; human; 1:100; loading ...; fig 2
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry - paraffin section on human samples at 1:100 (fig 2). BMC Cancer (2020) ncbi
mouse monoclonal (15B8)
  • western blot; human; 1:4000; loading ...; fig 6c, 6d
Abcam CTNNB1 antibody (Abcam, ab6302) was used in western blot on human samples at 1:4000 (fig 6c, 6d). Aging (Albany NY) (2020) ncbi
domestic rabbit monoclonal (E247)
  • western blot; human; 1:7500; loading ...; fig 6b, 6d
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on human samples at 1:7500 (fig 6b, 6d). Eur Rev Med Pharmacol Sci (2019) ncbi
domestic rabbit monoclonal (E247)
  • western blot; human; loading ...; fig 6a
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on human samples (fig 6a). Braz J Med Biol Res (2019) ncbi
domestic rabbit monoclonal (E247)
  • western blot; mouse; loading ...; fig 7s1a
  • immunohistochemistry; human; loading ...; fig 7g
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on mouse samples (fig 7s1a) and in immunohistochemistry on human samples (fig 7g). elife (2019) ncbi
domestic rabbit monoclonal (E247)
  • western blot; mouse; loading ...; fig 4c
Abcam CTNNB1 antibody (Abcam, E247) was used in western blot on mouse samples (fig 4c). Science (2019) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - paraffin section; mouse; loading ...; fig 4a
  • western blot; mouse; loading ...; fig 4b, 5d
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry - paraffin section on mouse samples (fig 4a) and in western blot on mouse samples (fig 4b, 5d). J Cell Mol Med (2019) ncbi
domestic rabbit monoclonal (E247)
  • western blot; human; loading ...; fig 3c
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on human samples (fig 3c). Cell Death Dis (2019) ncbi
domestic rabbit monoclonal (E247)
  • western blot; human; 1:2000; loading ...; fig 3e, 3f
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on human samples at 1:2000 (fig 3e, 3f). Biosci Rep (2019) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - paraffin section; mouse; 1:200; loading ...; fig 1b
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry - paraffin section on mouse samples at 1:200 (fig 1b). Nat Commun (2019) ncbi
domestic rabbit monoclonal (E247)
  • western blot; rat; loading ...; fig 6b
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on rat samples (fig 6b). Braz J Med Biol Res (2019) ncbi
domestic rabbit monoclonal (E247)
  • western blot; human; loading ...; fig 3a
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on human samples (fig 3a). Cancer Res (2019) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry; mouse; 1:400; loading ...; fig 7c
  • western blot; mouse; 1:4000; loading ...; fig 7c
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry on mouse samples at 1:400 (fig 7c) and in western blot on mouse samples at 1:4000 (fig 7c). Cell Mol Gastroenterol Hepatol (2019) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - frozen section; mouse; loading ...; fig 4j
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry - frozen section on mouse samples (fig 4j). Nat Commun (2018) ncbi
domestic rabbit monoclonal (E247)
  • western blot knockout validation; mouse; 1:100; loading ...; fig s3, s6
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot knockout validation on mouse samples at 1:100 (fig s3, s6). Hepatology (2019) ncbi
domestic rabbit monoclonal (E247)
  • western blot; human; 1:5000; loading ...; fig 4b
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on human samples at 1:5000 (fig 4b). Biosci Rep (2018) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry; human; loading ...; fig 6i
  • western blot; human; loading ...; fig 5j
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry on human samples (fig 6i) and in western blot on human samples (fig 5j). J Biol Chem (2017) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - paraffin section; human; 1:100; fig 9d
  • western blot; human; 1:5000; loading ...; fig 3a
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry - paraffin section on human samples at 1:100 (fig 9d) and in western blot on human samples at 1:5000 (fig 3a). Oncotarget (2017) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry; human; 1:100; loading ...; fig 5f
In order to analyze the complexing of cellular prion protein with co-chaperone Hsp70/90 organizing protein in glioblastoma stem-like cells, Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry on human samples at 1:100 (fig 5f). Stem Cell Res Ther (2017) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - frozen section; mouse; 1:250; loading ...; fig 1a
In order to elucidate the contribution of Scribble 1 to neural tube defects, Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry - frozen section on mouse samples at 1:250 (fig 1a). Hum Mol Genet (2017) ncbi
domestic rabbit monoclonal (E247)
  • western blot; rat; loading ...; fig 4b
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on rat samples (fig 4b). Am J Transl Res (2016) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - paraffin section; rat; 1:200; fig 8a
  • western blot; rat; 1:3000; fig 8g
In order to elucidate how particulate matter impairs male reproduction, Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry - paraffin section on rat samples at 1:200 (fig 8a) and in western blot on rat samples at 1:3000 (fig 8g). Toxicol Lett (2017) ncbi
mouse monoclonal (15B8)
  • immunocytochemistry; human; 1:100; loading ...; fig 3d
In order to find that TrpC5 regulates differentiation in colorectal cancer, Abcam CTNNB1 antibody (Abcam, ab6301) was used in immunocytochemistry on human samples at 1:100 (fig 3d). Clin Sci (Lond) (2017) ncbi
domestic rabbit monoclonal (E247)
  • immunohistochemistry - paraffin section; mouse; 1:100; loading ...; fig 3b
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunohistochemistry - paraffin section on mouse samples at 1:100 (fig 3b). Am J Pathol (2016) ncbi
domestic rabbit monoclonal (E247)
  • immunocytochemistry; mouse; fig s1a
In order to characterize podocalyxin conditional knockout mice and study endothelial cells, Abcam CTNNB1 antibody (abcam, ab32572) was used in immunocytochemistry on mouse samples (fig s1a). Eur J Cell Biol (2016) ncbi
domestic rabbit monoclonal (E247)
  • RNA immunoprecipitation; human; loading ...; fig 3f
  • EMSA; human; loading ...; fig 3c
  • immunoprecipitation; human; loading ...; fig 3h
  • immunocytochemistry; human
  • immunohistochemistry; human; loading ...; fig 3e
  • western blot; human; loading ...; fig 3b
In order to correlate lnc-beta-Catm, EZH2, and Wnt-beta-catenin expression with hepatocellular carcinoma severity and prognosis, Abcam CTNNB1 antibody (Abcam, ab32572) was used in RNA immunoprecipitation on human samples (fig 3f), in EMSA on human samples (fig 3c), in immunoprecipitation on human samples (fig 3h), in immunocytochemistry on human samples , in immunohistochemistry on human samples (fig 3e) and in western blot on human samples (fig 3b). Nat Struct Mol Biol (2016) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry; zebrafish ; 1:400; fig 5
Abcam CTNNB1 antibody (abcam, ab6301) was used in immunohistochemistry on zebrafish samples at 1:400 (fig 5). PLoS ONE (2016) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry; zebrafish ; 1:200; fig 1
Abcam CTNNB1 antibody (Abcam, ab6301) was used in immunohistochemistry on zebrafish samples at 1:200 (fig 1). Int J Mol Sci (2016) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry - free floating section; chicken; 1:1000; fig 5
Abcam CTNNB1 antibody (Abcam, 6301) was used in immunohistochemistry - free floating section on chicken samples at 1:1000 (fig 5). J Cell Biol (2015) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry; human
  • western blot; human
In order to investigate the epithelial homeostasis during oral submucous fibrosis progression to cancer, Abcam CTNNB1 antibody (Abcam, ab6301) was used in immunohistochemistry on human samples and in western blot on human samples . J Clin Pathol (2015) ncbi
mouse monoclonal (15B8)
  • immunocytochemistry; human; 1:100
  • western blot; human; 1:1000
Abcam CTNNB1 antibody (Abcam, ab6301) was used in immunocytochemistry on human samples at 1:100 and in western blot on human samples at 1:1000. Biochem Biophys Res Commun (2015) ncbi
domestic rabbit monoclonal (E247)
  • western blot; rat; 1:20,000; loading ...; fig 1b
Abcam CTNNB1 antibody (Abcam, ab32572) was used in western blot on rat samples at 1:20,000 (fig 1b). Int J Neuropsychopharmacol (2015) ncbi
domestic rabbit monoclonal (E247)
  • immunocytochemistry; mouse; 1:250; loading ...; fig 4A
  • western blot; mouse; 1:5000; loading ...; fig 3A
Abcam CTNNB1 antibody (Abcam, ab32572) was used in immunocytochemistry on mouse samples at 1:250 (fig 4A) and in western blot on mouse samples at 1:5000 (fig 3A). Biochimie (2015) ncbi
mouse monoclonal (15B8)
  • immunocytochemistry; human; 1:200
  • western blot; human; 1:1000
Abcam CTNNB1 antibody (Abcam, ab6301) was used in immunocytochemistry on human samples at 1:200 and in western blot on human samples at 1:1000. J Biol Chem (2015) ncbi
Santa Cruz Biotechnology
mouse monoclonal (6F9)
  • western blot; human; 1:2000; loading ...; fig 5a
Santa Cruz Biotechnology CTNNB1 antibody (Santa Cruz Biotechnology, sc-53484) was used in western blot on human samples at 1:2000 (fig 5a). Mol Med Rep (2016) ncbi
GeneTex
domestic rabbit monoclonal (E247)
  • western blot; human; 1:1000; loading ...; fig 6a
GeneTex CTNNB1 antibody (GeneTex, GTX61089) was used in western blot on human samples at 1:1000 (fig 6a). Oncotarget (2016) ncbi
SICGEN
domestic goat polyclonal
  • western blot; Xenopus laevis; 1:500; loading ...; fig 6b
In order to study how folate modulates neural tube formation, SICGEN CTNNB1 antibody (Sicgen, AB0095-200) was used in western blot on Xenopus laevis samples at 1:500 (fig 6b). Development (2017) ncbi
Cell Signaling Technology
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:100; loading ...; fig s3d
  • western blot; human; 1:2000; loading ...; fig s3c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9587) was used in immunocytochemistry on human samples at 1:100 (fig s3d) and in western blot on human samples at 1:2000 (fig s3c). iScience (2022) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; 1:100; loading ...; fig 5g
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in immunocytochemistry on human samples at 1:100 (fig 5g). Cell Death Dis (2022) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry - paraffin section; human; 1:50; fig 5n
  • western blot; human; 1:1000; loading ...; fig 2f, 5f
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunohistochemistry - paraffin section on human samples at 1:50 (fig 5n) and in western blot on human samples at 1:1000 (fig 2f, 5f). Adv Sci (Weinh) (2022) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry - paraffin section; mouse; 1:200; fig 7a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in immunohistochemistry - paraffin section on mouse samples at 1:200 (fig 7a). Int J Biol Sci (2022) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; 1:100; loading ...; fig 5e
  • western blot; human; loading ...; fig 5a
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in immunocytochemistry on human samples at 1:100 (fig 5e) and in western blot on human samples (fig 5a). Cell Death Dis (2022) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 5c, s5e
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples (fig 5c, s5e). Cell Rep (2022) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry; human; 1:100; loading ...; fig 6b
  • western blot; human; loading ...; fig 6d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8480S) was used in immunohistochemistry on human samples at 1:100 (fig 6b) and in western blot on human samples (fig 6d). Front Immunol (2022) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; fig 6a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on mouse samples (fig 6a). iScience (2021) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry - paraffin section; human; fig 8d
  • western blot; human; loading ...; fig 3d, 8e
Cell Signaling Technology CTNNB1 antibody (CST, 8814) was used in immunohistochemistry - paraffin section on human samples (fig 8d) and in western blot on human samples (fig 3d, 8e). Cell Death Dis (2021) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; fig 6a
Cell Signaling Technology CTNNB1 antibody (CST, 9561) was used in western blot on mouse samples at 1:1000 (fig 6a). Fluids Barriers CNS (2021) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; 1:5000; loading ...; fig 9c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in western blot on mouse samples at 1:5000 (fig 9c). J Biol Chem (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig s4b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561) was used in western blot on human samples (fig s4b). iScience (2021) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; human; loading ...; fig 3d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in western blot on human samples (fig 3d). iScience (2021) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; 1:1000; loading ...; fig 6j
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, D13A1) was used in western blot on mouse samples at 1:1000 (fig 6j). Adv Sci (Weinh) (2021) ncbi
domestic rabbit monoclonal (D13A1)
  • immunocytochemistry; human; 1:200; loading ...; fig 3e
  • western blot; human; 1:2000; loading ...; fig 1k, 2e
  • immunohistochemistry - paraffin section; rat; 1:200; loading ...; fig 7c
Cell Signaling Technology CTNNB1 antibody (CST, 8814) was used in immunocytochemistry on human samples at 1:200 (fig 3e), in western blot on human samples at 1:2000 (fig 1k, 2e) and in immunohistochemistry - paraffin section on rat samples at 1:200 (fig 7c). Stem Cell Res Ther (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:2000; loading ...; fig 1k, 2e
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in western blot on human samples at 1:2000 (fig 1k, 2e). Stem Cell Res Ther (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:2000; loading ...; fig 2e
Cell Signaling Technology CTNNB1 antibody (CST, 9561) was used in western blot on human samples at 1:2000 (fig 2e). Stem Cell Res Ther (2021) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry; mouse; loading ...; fig 7b
Cell Signaling Technology CTNNB1 antibody (CST, 8814S) was used in immunohistochemistry on mouse samples (fig 7b). Adv Sci (Weinh) (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 2e
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in western blot on human samples (fig 2e). iScience (2021) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; 1:1000; loading ...; fig s4d
Cell Signaling Technology CTNNB1 antibody (CST, 8814S) was used in western blot on mouse samples at 1:1000 (fig s4d). Circulation (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 4d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480S) was used in western blot on human samples (fig 4d). Sci Adv (2021) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; loading ...; fig 1b, 6a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in western blot on mouse samples (fig 1b, 6a). Front Cell Dev Biol (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in western blot on human samples . Cell Death Dis (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry - paraffin section; mouse; 1:100; loading ...; fig 4a
  • western blot; mouse; 1:1000; loading ...; fig 5a
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in immunohistochemistry - paraffin section on mouse samples at 1:100 (fig 4a) and in western blot on mouse samples at 1:1000 (fig 5a). Clin Cosmet Investig Dermatol (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 3d
Cell Signaling Technology CTNNB1 antibody (CST, 8480S) was used in western blot on human samples (fig 3d). Front Cell Dev Biol (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 5f
Cell Signaling Technology CTNNB1 antibody (CST, 9561T) was used in western blot on human samples (fig 5f). Front Cell Dev Biol (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry; mouse; 1:100; loading ...; fig 6d
  • western blot; mouse; 1:1000; loading ...; fig 4b
Cell Signaling Technology CTNNB1 antibody (CST, 8480S) was used in immunohistochemistry on mouse samples at 1:100 (fig 6d) and in western blot on mouse samples at 1:1000 (fig 4b). Am J Cancer Res (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 3e
Cell Signaling Technology CTNNB1 antibody (CST (Cell Signaling Technology), 8480) was used in western blot on human samples (fig 3e). Front Cell Dev Biol (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; 1:1000; loading ...; fig s6h
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in western blot on mouse samples at 1:1000 (fig s6h). Front Cell Dev Biol (2021) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 2d
Cell Signaling Technology CTNNB1 antibody (CST, 9561T) was used in western blot on mouse samples (fig 2d). Front Pharmacol (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; loading ...; fig 2d, s1
Cell Signaling Technology CTNNB1 antibody (CST, 8480T) was used in western blot on mouse samples (fig 2d, s1). Front Pharmacol (2021) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; loading ...; fig 4a
  • western blot; human; fig 7b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8814) was used in western blot on mouse samples (fig 4a) and in western blot on human samples (fig 7b). Nat Commun (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 4a
Cell Signaling Technology CTNNB1 antibody (CST, 9561) was used in western blot on human samples at 1:1000 (fig 4a). J Exp Clin Cancer Res (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; loading ...; fig 3i
  • immunohistochemistry; human; fig 5c, 5d
  • western blot; human; loading ...; fig 3f
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8480) was used in immunocytochemistry on human samples (fig 3i), in immunohistochemistry on human samples (fig 5c, 5d) and in western blot on human samples (fig 3f). J Exp Clin Cancer Res (2021) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry; mouse; 1:1600; loading ...; fig s8-2a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8814) was used in immunohistochemistry on mouse samples at 1:1600 (fig s8-2a). elife (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 6a, 6c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561) was used in western blot on human samples at 1:1000 (fig 6a, 6c). Neoplasma (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • chromatin immunoprecipitation; human; loading ...; fig 4e
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in chromatin immunoprecipitation on human samples (fig 4e). Cell Death Dis (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 5a
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in western blot on human samples (fig 5a). Transl Oncol (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig s2h
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples (fig s2h). Mol Oncol (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 5a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561) was used in western blot on human samples at 1:1000 (fig 5a). Cell Death Dis (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...; fig 5a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples at 1:1000 (fig 5a). Cell Death Dis (2021) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; 1:1000; fig 5b, 5e
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8814) was used in western blot on mouse samples at 1:1000 (fig 5b, 5e). Sci Signal (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry - paraffin section; human; loading ...; fig 7c
  • immunocytochemistry; human; 1:100; loading ...; fig 2h
  • western blot; human; 1:1000; loading ...; fig 5d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunohistochemistry - paraffin section on human samples (fig 7c), in immunocytochemistry on human samples at 1:100 (fig 2h) and in western blot on human samples at 1:1000 (fig 5d). J Exp Clin Cancer Res (2021) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig s5a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 9587) was used in western blot on human samples at 1:1000 (fig s5a). Nat Commun (2021) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; mouse; 1:100; loading ...; fig 3h
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9587) was used in immunohistochemistry on mouse samples at 1:100 (fig 3h). Dis Model Mech (2021) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...
Cell Signaling Technology CTNNB1 antibody (Cell signaling Technology, D10A8) was used in western blot on human samples at 1:1000. elife (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...; fig s5-1a
Cell Signaling Technology CTNNB1 antibody (CST, 8480S) was used in western blot on human samples at 1:1000 (fig s5-1a). elife (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry - paraffin section; mouse; loading ...; fig 1d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480S) was used in immunohistochemistry - paraffin section on mouse samples (fig 1d). Drug Metab Dispos (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8480) was used in western blot on human samples at 1:1000. Cell Prolif (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; loading ...; fig 4f
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on mouse samples (fig 4f). PLoS ONE (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...; fig 1a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8480s) was used in western blot on human samples at 1:1000 (fig 1a). Mol Med Rep (2020) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; loading ...; fig 1a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, D13A1, 8814) was used in western blot on mouse samples (fig 1a). Commun Biol (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; 1:1000; loading ...; fig 3l
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in western blot on mouse samples at 1:1000 (fig 3l). Aging (Albany NY) (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...; fig 5c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples at 1:1000 (fig 5c). Sci Rep (2020) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 5c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561) was used in western blot on human samples at 1:1000 (fig 5c). Sci Rep (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...; fig 1, 3b, 5a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, Danvers, MA;, 8480) was used in western blot on human samples at 1:1000 (fig 1, 3b, 5a). Integr Cancer Ther (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 2f, 2g
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples (fig 2f, 2g). Cell Death Dis (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; fig 3c
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8480) was used in western blot on human samples (fig 3c). Oncogenesis (2020) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; human; loading ...; fig 5i
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, D13A1) was used in western blot on human samples (fig 5i). PLoS ONE (2020) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry; human; loading ...; fig 6a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, D13A1) was used in immunohistochemistry on human samples (fig 6a). Oncogene (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; loading ...; fig 5, 6e
Cell Signaling Technology CTNNB1 antibody (CST, #8480) was used in western blot on mouse samples (fig 5, 6e). Cancer Med (2020) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:200; loading ...; fig 4c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9587) was used in immunocytochemistry on human samples at 1:200 (fig 4c). Oncogene (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry - paraffin section; human; loading ...; fig 2a
  • western blot; human; loading ...; fig 3d
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in immunohistochemistry - paraffin section on human samples (fig 2a) and in western blot on human samples (fig 3d). J Cell Mol Med (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; 1:10,000; loading ...; fig 7c, 7d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on mouse samples at 1:10,000 (fig 7c, 7d). elife (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; 1:500; loading ...; fig s1b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunocytochemistry on human samples at 1:500 (fig s1b). Nat Commun (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...; fig s7a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples at 1:1000 (fig s7a). J Biomed Sci (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...; fig 4b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples at 1:1000 (fig 4b). BMC Gastroenterol (2019) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; 1:1000; loading ...; fig 9b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in western blot on mouse samples at 1:1000 (fig 9b). Cell Mol Gastroenterol Hepatol (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; 1:1000; loading ...; fig 9b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on mouse samples at 1:1000 (fig 9b). Cell Mol Gastroenterol Hepatol (2020) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig 9b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561) was used in western blot on mouse samples at 1:1000 (fig 9b). Cell Mol Gastroenterol Hepatol (2020) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 3i
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples (fig 3i). Mol Oncol (2020) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry - paraffin section; mouse; 1:500; loading ...; fig 7e
  • western blot; mouse; 1:1000; loading ...; fig s7d
Cell Signaling Technology CTNNB1 antibody (CST, 8814S) was used in immunohistochemistry - paraffin section on mouse samples at 1:500 (fig 7e) and in western blot on mouse samples at 1:1000 (fig s7d). Nat Commun (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; 1:250; loading ...; fig s5a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technologies, D10A8) was used in immunocytochemistry on human samples at 1:250 (fig s5a). PLoS Biol (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 5a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8480) was used in western blot on human samples (fig 5a). Oncogene (2020) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; human; 1:1000; loading ...; fig s2a
Cell Signaling Technology CTNNB1 antibody (Cell Signalling, 8814) was used in western blot on human samples at 1:1000 (fig s2a). Nat Commun (2019) ncbi
domestic rabbit polyclonal
  • RNA immunoprecipitation; human; 1:500; loading ...; fig 6c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561) was used in RNA immunoprecipitation on human samples at 1:500 (fig 6c). Aging (Albany NY) (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • RNA immunoprecipitation; human; 1:1000; loading ...; fig 6c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in RNA immunoprecipitation on human samples at 1:1000 (fig 6c). Aging (Albany NY) (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; loading ...; fig 1b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on mouse samples (fig 1b). Nature (2019) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry - paraffin section; human; 1:800; loading ...; fig 3s2c
  • western blot; human; 1:1000; loading ...; fig 8s1d
Cell Signaling Technology CTNNB1 antibody (CST, 8814) was used in immunohistochemistry - paraffin section on human samples at 1:800 (fig 3s2c) and in western blot on human samples at 1:1000 (fig 8s1d). elife (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...; fig 4d
  • western blot; mouse; 1:1000; loading ...; fig 2c
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in western blot on human samples at 1:1000 (fig 4d) and in western blot on mouse samples at 1:1000 (fig 2c). elife (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 2a
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in western blot on human samples (fig 2a). Cell Commun Signal (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...; fig 4a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples at 1:1000 (fig 4a). Biosci Rep (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 2d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples (fig 2d). Aging (Albany NY) (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry; mouse; 1:100; loading ...; fig s1d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunohistochemistry on mouse samples at 1:100 (fig s1d). Science (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry; human; loading ...; fig 4g
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in immunohistochemistry on human samples (fig 4g). J Exp Clin Cancer Res (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; 1:1000; loading ...; fig 4b
Cell Signaling Technology CTNNB1 antibody (CST, 8480) was used in western blot on mouse samples at 1:1000 (fig 4b). Sci Adv (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig ex8j
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480S) was used in western blot on human samples (fig ex8j). Nature (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 8a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480S) was used in western blot on human samples (fig 8a). J Immunol (2019) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; mouse; 1:300; loading ...; fig 2f
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9587) was used in immunohistochemistry on mouse samples at 1:300 (fig 2f). Nat Commun (2019) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry; mouse; fig 6b
  • western blot; mouse; loading ...; fig 6a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in immunohistochemistry on mouse samples (fig 6b) and in western blot on mouse samples (fig 6a). FASEB J (2019) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; human; loading ...; fig 6b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8814S) was used in western blot on human samples (fig 6b). Sci Adv (2019) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; loading ...; fig 5e
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8814) was used in western blot on mouse samples (fig 5e). Nat Commun (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; 1:1000; loading ...; fig 2d, 4h
  • western blot; human; 1:1000; loading ...; fig 2d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480S) was used in western blot on mouse samples at 1:1000 (fig 2d, 4h) and in western blot on human samples at 1:1000 (fig 2d). elife (2019) ncbi
domestic rabbit monoclonal (6B3)
  • immunohistochemistry - paraffin section; human; 1:200; loading ...; fig 9a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582) was used in immunohistochemistry - paraffin section on human samples at 1:200 (fig 9a). J Exp Med (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 3f
  • immunohistochemistry; mouse; 1:100; loading ...; fig 1d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples (fig 3f) and in immunohistochemistry on mouse samples at 1:100 (fig 1d). Oncogene (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 4c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, D10A8) was used in western blot on human samples (fig 4c). Mol Oncol (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...; fig 2c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples at 1:1000 (fig 2c). Oncol Rep (2019) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry - frozen section; mouse; loading ...; fig 4g
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in immunohistochemistry - frozen section on mouse samples (fig 4g). Nat Commun (2018) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry; human; 1:100; loading ...; fig 8c
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8480) was used in immunohistochemistry on human samples at 1:100 (fig 8c). Oncogene (2019) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; 1:500; loading ...; fig 4d
  • western blot; human; 1:500; loading ...; fig 4a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunocytochemistry on human samples at 1:500 (fig 4d) and in western blot on human samples at 1:500 (fig 4a). Nat Commun (2018) ncbi
domestic rabbit monoclonal (D13A1)
  • immunocytochemistry; human; 1:1000; loading ...; fig 4d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in immunocytochemistry on human samples at 1:1000 (fig 4d). Nat Commun (2018) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; rat; 1:1000; loading ...; fig 4g
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480S) was used in western blot on rat samples at 1:1000 (fig 4g). Exp Ther Med (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 2c, 2d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561S) was used in western blot on human samples at 1:1000 (fig 2c, 2d). Mol Cell (2018) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; 1:200; loading ...; fig 2j
  • western blot; human; loading ...; fig 2a
  • immunohistochemistry; mouse; 1:100; loading ...; fig 4o
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunocytochemistry on human samples at 1:200 (fig 2j), in western blot on human samples (fig 2a) and in immunohistochemistry on mouse samples at 1:100 (fig 4o). Exp Dermatol (2018) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry; mouse; 1:30; loading ...; fig 6a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunohistochemistry on mouse samples at 1:30 (fig 6a). Exp Neurol (2018) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:2000; loading ...; fig 4g
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples at 1:2000 (fig 4g). Nat Commun (2018) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry; human; 1:100; loading ...; fig s4c
  • other; mouse; 1:500; loading ...; fig 8j
  • western blot; mouse; 1:2000; loading ...; fig 8g
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in immunohistochemistry on human samples at 1:100 (fig s4c), in other on mouse samples at 1:500 (fig 8j) and in western blot on mouse samples at 1:2000 (fig 8g). Nat Commun (2018) ncbi
domestic rabbit monoclonal (D10A8)
  • other; mouse; loading ...; fig 4d
  • western blot; mouse; 1:1000; loading ...; fig 4b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in other on mouse samples (fig 4d) and in western blot on mouse samples at 1:1000 (fig 4b). Nat Neurosci (2018) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; 1:1000; loading ...; fig 4b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in western blot on mouse samples at 1:1000 (fig 4b). Nat Neurosci (2018) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; loading ...; fig 1e
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technologies, D13A1) was used in western blot on mouse samples (fig 1e). Cell Metab (2018) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot knockout validation; mouse; 1:1000; loading ...; fig 3a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot knockout validation on mouse samples at 1:1000 (fig 3a). elife (2018) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 3a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples (fig 3a). J Cell Mol Med (2018) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry; human; 1:1600; loading ...; fig 6
  • western blot; human; 1:1000; loading ...; fig 1c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunohistochemistry on human samples at 1:1600 (fig 6) and in western blot on human samples at 1:1000 (fig 1c). Biosci Rep (2018) ncbi
domestic rabbit monoclonal (6B3)
  • western blot knockout validation; mouse; loading ...; fig s8h
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582) was used in western blot knockout validation on mouse samples (fig s8h). Hepatology (2018) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; 1:1000; loading ...; fig 1a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8480) was used in western blot on mouse samples at 1:1000 (fig 1a). Endocrinology (2018) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; 1:1000; loading ...; fig 1a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8814) was used in western blot on mouse samples at 1:1000 (fig 1a). Endocrinology (2018) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; loading ...; fig 7j
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples at 1:1000 (fig 7j). J Clin Invest (2017) ncbi
domestic rabbit monoclonal (D10A8)
  • chromatin immunoprecipitation; human; loading ...; fig 5f
  • immunoprecipitation; human; loading ...; fig 5a
  • western blot; human; loading ...; fig 5a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in chromatin immunoprecipitation on human samples (fig 5f), in immunoprecipitation on human samples (fig 5a) and in western blot on human samples (fig 5a). EBioMedicine (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig s4a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561) was used in western blot on human samples at 1:1000 (fig s4a). Cancer Lett (2017) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; loading ...; fig 3g
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in western blot on mouse samples (fig 3g). J Clin Invest (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561) was used in western blot on human samples (fig 4b). Oncogene (2017) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig s6g
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples (fig s6g). Nature (2017) ncbi
domestic rabbit monoclonal (6B3)
  • immunohistochemistry - paraffin section; mouse; 1:1000; loading ...; fig 7e
  • western blot; mouse; 1:1000; loading ...; fig 7c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582) was used in immunohistochemistry - paraffin section on mouse samples at 1:1000 (fig 7e) and in western blot on mouse samples at 1:1000 (fig 7c). J Clin Invest (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig 4c
In order to propose that macrophage-TNF-induced AKT/beta-catenin signaling in Lgr5(+) hair follicle stem cells is important for promoting hair follicle cycling and neogenesis after wounding, Cell Signaling Technology CTNNB1 antibody (CST Signaling, 9561S) was used in western blot on mouse samples at 1:1000 (fig 4c). Nat Commun (2017) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; human; loading ...; fig 1b
In order to observe that chronic presence of internalized Escherichia coli leads to enhanced oncogenicity in colon cancer cells, Cell Signaling Technology CTNNB1 antibody (cell signalling, 9582) was used in western blot on human samples (fig 1b). Cell Death Dis (2017) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - paraffin section; mouse; loading ...; fig 3g
In order to elucidate the contribution of KRAS to human colorectal cancer, Cell Signaling Technology CTNNB1 antibody (CST, 9587) was used in immunohistochemistry - paraffin section on mouse samples (fig 3g). Genes Dev (2017) ncbi
domestic rabbit monoclonal (D13A1)
  • immunocytochemistry; mouse; loading ...; fig 5b
  • western blot; mouse; loading ...; fig 5c
In order to investigate the effects of boron treatment on adipogenesis, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in immunocytochemistry on mouse samples (fig 5b) and in western blot on mouse samples (fig 5c). Metabolism (2017) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; human; loading ...; fig 4a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, D13A1) was used in western blot on human samples (fig 4a). PLoS ONE (2017) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; 1:1000; loading ...; fig 3g
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, D10A8) was used in western blot on mouse samples at 1:1000 (fig 3g). Int J Mol Sci (2017) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; pigs ; loading ...; fig 2a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on pigs samples (fig 2a). Sci Rep (2017) ncbi
domestic rabbit polyclonal
  • western blot; pigs ; loading ...; fig 2a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561) was used in western blot on pigs samples (fig 2a). Sci Rep (2017) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot knockout validation; mouse; 1:1000; fig s4d
In order to develop a CRISPR-FLIP method to generate biallelic conditional gene knockouts in diploid or aneuploid cells, Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8480) was used in western blot knockout validation on mouse samples at 1:1000 (fig s4d). Nat Methods (2017) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; loading ...; fig 3b
  • western blot; human; loading ...; fig 3e
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8480) was used in immunocytochemistry on human samples (fig 3b) and in western blot on human samples (fig 3e). Oncoimmunology (2016) ncbi
domestic rabbit polyclonal
  • western blot knockout validation; human; loading ...; fig s2c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9587S) was used in western blot knockout validation on human samples (fig s2c). Nature (2017) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry; human; loading ...; fig 6a
In order to assess the expression of Lrig1 in senescent atrophic human epidermis and in the epidermis of CD44 knockout mice, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, D10A8) was used in immunohistochemistry on human samples (fig 6a). PLoS ONE (2017) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; mouse; 1:100; loading ...; fig 4d
  • western blot; mouse; 1:1000; loading ...; fig 4e
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8480) was used in immunocytochemistry on mouse samples at 1:100 (fig 4d) and in western blot on mouse samples at 1:1000 (fig 4e). Int J Mol Med (2017) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; 1:100; loading ...; fig 6c
Cell Signaling Technology CTNNB1 antibody (cell signalling, D10A8) was used in western blot on mouse samples at 1:100 (fig 6c). Cell Commun Signal (2017) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; loading ...; fig 5c
In order to show that decreased WNT/beta-catenin contributes to the pathophysiology of lamin A/C gene cardiomyopathy, Cell Signaling Technology CTNNB1 antibody (Cell Signalling, 8814) was used in western blot on mouse samples (fig 5c). Hum Mol Genet (2017) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 10
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, D10A8) was used in western blot on human samples (fig 10). Oncotarget (2017) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; human; loading ...; fig 6d, 6e
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582) was used in western blot on human samples (fig 6d, 6e). Front Pharmacol (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • immunocytochemistry; mouse; 1:100; loading ...; fig s5h
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in immunocytochemistry on mouse samples at 1:100 (fig s5h). Cell Discov (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; loading ...; fig 4b
  • western blot; human; loading ...; fig 2b
In order to describe the dual roles of TbetaRIII/betaglycan, Cell Signaling Technology CTNNB1 antibody (Cell signaling, D10A8) was used in immunocytochemistry on human samples (fig 4b) and in western blot on human samples (fig 2b). J Biol Chem (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry - paraffin section; mouse; loading ...; fig 6a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunohistochemistry - paraffin section on mouse samples (fig 6a). J Clin Invest (2016) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; human; fig 1a
In order to determine the effects of high glucose on the epithelial-mesenchymal transition in retinal pigment epithelial cells, Cell Signaling Technology CTNNB1 antibody (Cell signaling, 9582S) was used in western blot on human samples (fig 1a). Int J Mol Med (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; human; 1:5000; loading ...; fig 1b
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8814) was used in western blot on human samples at 1:5000 (fig 1b). J Cell Sci (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; fig 5a
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples at 1:1000 (fig 5a). Nat Immunol (2016) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; human; fig 2
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582) was used in western blot on human samples (fig 2). Neoplasia (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; fig 2a
In order to probe the effects of beta-catenin modulation in a cerebral malaria model, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9587) was used in immunocytochemistry on human samples (fig 2a). J Clin Invest (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • immunoprecipitation; human; fig 5
  • western blot; human; fig 5
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8480) was used in immunoprecipitation on human samples (fig 5) and in western blot on human samples (fig 5). Mol Ther Methods Clin Dev (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 6a
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8480) was used in western blot on human samples (fig 6a). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; human; loading ...; fig 6a
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8814) was used in western blot on human samples (fig 6a). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; loading ...; fig 2c
  • western blot; human; loading ...; fig 3b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on mouse samples (fig 2c) and in western blot on human samples (fig 3b). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; fig 3d
In order to report that CEACAM1 regulates the epithelial-mesenchymal transition via beta-catenin phosphorylation, Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 9561) was used in western blot on mouse samples at 1:1000 (fig 3d). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 3a
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 9587) was used in western blot on mouse samples (fig 3a). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • immunocytochemistry; mouse; loading ...; fig 6c
In order to optimize the generation of murine cardiomyocytes from pluripotent stem cells, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814S) was used in immunocytochemistry on mouse samples (fig 6c). Stem Cell Rev (2016) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; human; 1:1000; fig 1
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582S) was used in western blot on human samples at 1:1000 (fig 1). Biomed Res Int (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; 1:100; fig 1
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480S) was used in immunocytochemistry on human samples at 1:100 (fig 1). Biomed Res Int (2016) ncbi
domestic rabbit monoclonal (6B3)
  • immunohistochemistry - frozen section; mouse; 1:100; loading ...; fig 1g
  • immunohistochemistry - paraffin section; mouse; 1:100; loading ...; fig 1g
In order to examine the role of Hedgehog signaling in the development of colorectal cancer, Cell Signaling Technology CTNNB1 antibody (Cell Signalling, 9582) was used in immunohistochemistry - frozen section on mouse samples at 1:100 (fig 1g) and in immunohistochemistry - paraffin section on mouse samples at 1:100 (fig 1g). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; fig 2
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561) was used in western blot on human samples at 1:1000 (fig 2). Oncol Lett (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000; fig 1
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples at 1:1000 (fig 1). Oncol Lett (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; human; 1:4000; fig 6
In order to study the role of kif3a in dental mesenchymal stem and precursor cell differentiation, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in western blot on human samples at 1:4000 (fig 6). Mol Med Rep (2016) ncbi
domestic rabbit monoclonal (6B3)
  • immunohistochemistry - frozen section; mouse; 1:25; loading ...; fig 6a
  • immunocytochemistry; mouse; 1:25; fig 5a
In order to study factors that influence the expansion and movement of primordial germ cells, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582s) was used in immunohistochemistry - frozen section on mouse samples at 1:25 (fig 6a) and in immunocytochemistry on mouse samples at 1:25 (fig 5a). J Cell Biol (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry; mouse; loading ...; fig 4c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunohistochemistry on mouse samples (fig 4c). Oncogene (2017) ncbi
domestic rabbit monoclonal (6B3)
  • immunocytochemistry; human; loading ...; fig 2b
  • western blot; human; loading ...; fig 1b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582) was used in immunocytochemistry on human samples (fig 2b) and in western blot on human samples (fig 1b). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; fig 2
In order to determine maintenance of mouse embryonic stem cell identity by a myc-driven self-reinforcing regulatory network, Cell Signaling Technology CTNNB1 antibody (Cell Signalling, 8814) was used in western blot on mouse samples (fig 2). Nat Commun (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; mouse; 1:1000; fig 7
In order to assess the transiently formed junctional nexuses during post-natal mammary gland development by E-cadherins, connexins, beta-catenin, and claudin-7, Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8480s) was used in western blot on mouse samples at 1:1000 (fig 7). Dev Biol (2016) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; human; fig s1b
In order to demonstrate that miR-150 is a novel Wnt effector in colorectal cells, Cell Signaling Technology CTNNB1 antibody (CST, 9582S) was used in western blot on human samples (fig s1b). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig s1b
In order to demonstrate that miR-150 is a novel Wnt effector in colorectal cells, Cell Signaling Technology CTNNB1 antibody (CST, 9561S) was used in western blot on human samples (fig s1b). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 3
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Tech, 9561) was used in western blot on human samples (fig 3). J Exp Clin Cancer Res (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; fig 3
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Tech, 8480) was used in western blot on human samples (fig 3). J Exp Clin Cancer Res (2016) ncbi
domestic rabbit polyclonal
  • RNA immunoprecipitation; human; loading ...; fig 3f
  • EMSA; human; loading ...; fig 3c
  • immunoprecipitation; human; loading ...; fig 3h
  • immunohistochemistry; human; loading ...; fig 3e
  • western blot; human; loading ...; fig 3b
In order to correlate lnc-beta-Catm, EZH2, and Wnt-beta-catenin expression with hepatocellular carcinoma severity and prognosis, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9587) was used in RNA immunoprecipitation on human samples (fig 3f), in EMSA on human samples (fig 3c), in immunoprecipitation on human samples (fig 3h), in immunohistochemistry on human samples (fig 3e) and in western blot on human samples (fig 3b). Nat Struct Mol Biol (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; fig 5d
In order to investigate the role of growth hormone in colon cancer, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples (fig 5d). Proc Natl Acad Sci U S A (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; human; 1:1000; loading ...; fig 4e
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814S) was used in western blot on human samples at 1:1000 (fig 4e). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4b
In order to determine the function of CD24 using a mouse model of pancreatic ductal adenocarcinoma and cerulein-induced acute pancreatitis, Cell Signaling Technology CTNNB1 antibody (BD Biosciences, 9561) was used in western blot on human samples (fig 4b). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 6
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Tech, 9561) was used in western blot on mouse samples (fig 6). Cell Rep (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; fig 6
Cell Signaling Technology CTNNB1 antibody (Cell Signalling, 8480) was used in western blot on human samples (fig 6). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 6
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 9587P) was used in western blot on human samples (fig 6). J Biol Chem (2016) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; mouse; fig 7
In order to analyze selective partitioning into complexes and supercomplexes during synapse maturation by NMDA receptors, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582S) was used in western blot on mouse samples (fig 7). Nat Commun (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; fig 4
  • western blot; human; fig 4
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunocytochemistry on human samples (fig 4) and in western blot on human samples (fig 4). Cell Death Dis (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; mouse; 1:500; fig 5
  • western blot; mouse; 1:1000; 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 CTNNB1 antibody (Cell Signaling Technology, 8480) was used in immunocytochemistry on mouse samples at 1:500 (fig 5) and in western blot on mouse samples at 1:1000 (fig 5). Front Cell Neurosci (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples . J Mol Med (Berl) (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry - paraffin section; human; 0.5 ug/ml; fig st1
  • western blot; human; fig 2
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8814S) was used in immunohistochemistry - paraffin section on human samples at 0.5 ug/ml (fig st1) and in western blot on human samples (fig 2). Nature (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry - paraffin section; human; 1:100; fig 2
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8480) was used in immunohistochemistry - paraffin section on human samples at 1:100 (fig 2). Endocrinology (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry; human; 1:500; fig 4
In order to learn mediation of Wnt signaling-induced radioresistance by LIG4, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, D10A8) was used in immunohistochemistry on human samples at 1:500 (fig 4). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - paraffin section; human; 1:25; fig s1
In order to utilize ovarian cancer xenograft models to study dynamic modulation of phosphoprotein expression, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561) was used in immunohistochemistry - paraffin section on human samples at 1:25 (fig s1). BMC Cancer (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry - paraffin section; mouse; 1:400; fig s7
  • immunocytochemistry; mouse; 1:800; fig s7
In order to characterize the enhancement of tumorigenicity and stemness of intestinal progenitors due to a high-fat diet, Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8814S) was used in immunohistochemistry - paraffin section on mouse samples at 1:400 (fig s7) and in immunocytochemistry on mouse samples at 1:800 (fig s7). Nature (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; fig 5
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples (fig 5). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • chromatin immunoprecipitation; human; fig 6
  • western blot; human; fig 2
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9587) was used in chromatin immunoprecipitation on human samples (fig 6) and in western blot on human samples (fig 2). Cell Cycle (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; human; loading ...; fig 5a
In order to present the role of CD147 in cancer migration through annexin A2 and DOCK3-catenin-WAVE2 signaling, Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8814) was used in western blot on human samples (fig 5a). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; fig s3
  • western blot; human; fig 6
Cell Signaling Technology CTNNB1 antibody (Cell signaling, 8480) was used in immunocytochemistry on human samples (fig s3) and in western blot on human samples (fig 6). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry - paraffin section; mouse; 1:250; loading ...; fig 6d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, D13A1) was used in immunohistochemistry - paraffin section on mouse samples at 1:250 (fig 6d). Dev Dyn (2016) ncbi
domestic rabbit monoclonal (6B3)
  • immunohistochemistry; human; 1:500; loading ...; fig 5d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 9582P) was used in immunohistochemistry on human samples at 1:500 (fig 5d). Endocr Relat Cancer (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; fig 3
In order to study embryonic cell self-renewal via Wnt beta-catenin and LIF-Stat3 signalling pathways funneling into Sp5, Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 9561S) was used in western blot on mouse samples at 1:1000 (fig 3). J Cell Sci (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:2000; fig 6
Cell Signaling Technology CTNNB1 antibody (CST, 8480S) was used in western blot on human samples at 1:2000 (fig 6). Oncotarget (2015) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; 1:500; fig 2a
In order to test if Axin2 deficiency promotes fibrogenesis, Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8814) was used in western blot on mouse samples at 1:500 (fig 2a). Eur Surg Res (2015) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; human; 1:1000; fig 3c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in western blot on human samples at 1:1000 (fig 3c). Sci Rep (2015) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 5d
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples (fig 5d). Oncogene (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; human; 1:1000; fig 3a
In order to characterize two clones from triple negative breast MDA-MB-231 cancer cells, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in western blot on human samples at 1:1000 (fig 3a). Exp Cell Res (2015) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig s1
Cell Signaling Technology CTNNB1 antibody (Millipore, 9561) was used in western blot on mouse samples (fig s1). Nucleic Acids Res (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • immunocytochemistry; human
  • immunohistochemistry; human
  • western blot; human; fig 4
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in immunocytochemistry on human samples , in immunohistochemistry on human samples and in western blot on human samples (fig 4). Reproduction (2015) ncbi
domestic rabbit monoclonal (6B3)
  • immunohistochemistry - frozen section; human; 1:100; fig 1
Cell Signaling Technology CTNNB1 antibody (cell Signaling Tech, 9582P) was used in immunohistochemistry - frozen section on human samples at 1:100 (fig 1). PLoS ONE (2015) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; human; 1:1000; fig s5
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 9582) was used in western blot on human samples at 1:1000 (fig s5). PLoS ONE (2015) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; fig 7a
In order to demonstrate that LRIG1 functions as a growth suppressor in breast cancer cells, Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8480) was used in western blot on human samples (fig 7a). Oncogene (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 8
In order to report the effect of c-Met inhibition using neuroendocrine tumor cells, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples (fig 8). Neuroendocrinology (2016) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; rat; 1:1000; fig 3b
In order to assess the effects of acupuncture treatment on the expression of Wnt/beta-catenin signaling pathway-related genes in rats with traumatic brain injury, Cell Signaling Technology CTNNB1 antibody (Cell Signalling, 9582) was used in western blot on rat samples at 1:1000 (fig 3b). Acupunct Med (2016) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry - paraffin section; mouse; 1:100; loading ...; fig 1f
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunohistochemistry - paraffin section on mouse samples at 1:100 (fig 1f). PLoS Genet (2015) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry; human; 1:100; fig 1
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, #8480) was used in immunohistochemistry on human samples at 1:100 (fig 1). Anticancer Res (2015) ncbi
domestic rabbit monoclonal (D13A1)
  • immunocytochemistry; human; fig 3C
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814S) was used in immunocytochemistry on human samples (fig 3C). J Hematol Oncol (2015) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human; loading ...; fig 6d
  • western blot; human; loading ...; fig 6c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in immunocytochemistry on human samples (fig 6d) and in western blot on human samples (fig 6c). Oncotarget (2015) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; 1:1000
In order to determine if miRNA that target Muc1 are protective against pancreatic cancer, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480s) was used in western blot on human samples at 1:1000. Biochim Biophys Acta (2015) ncbi
domestic rabbit monoclonal (6B3)
  • immunohistochemistry - paraffin section; mouse; 1:100; fig 3
  • western blot; mouse; 1:1000; fig 3
In order to assess the effects of Shenling Baizhu San on colitis-associated colorectal cancer, Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 6B3) was used in immunohistochemistry - paraffin section on mouse samples at 1:100 (fig 3) and in western blot on mouse samples at 1:1000 (fig 3). BMC Complement Altern Med (2015) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human; loading ...; fig 2c
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8480) was used in western blot on human samples (fig 2c). PLoS ONE (2015) ncbi
domestic rabbit monoclonal (D10A8)
  • immunohistochemistry; human; 1:100
In order to generate a new line of conditionally immortalized human brain microvascular endothelial cells to study blood brain barrier function, Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8480) was used in immunohistochemistry on human samples at 1:100. Fluids Barriers CNS (2015) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; human; fig 4
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582S) was used in western blot on human samples (fig 4). Int J Gynecol Cancer (2015) ncbi
domestic rabbit monoclonal (D13A1)
  • western blot; mouse; 1:1000; fig 2e
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in western blot on mouse samples at 1:1000 (fig 2e). Nat Biotechnol (2015) ncbi
domestic rabbit monoclonal (D10A8)
  • chromatin immunoprecipitation; human; fig 4
  • western blot; human; fig 2
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in chromatin immunoprecipitation on human samples (fig 4) and in western blot on human samples (fig 2). Sci Signal (2015) ncbi
domestic rabbit monoclonal (D13A1)
  • blocking or activating experiments; human; loading ...; fig 5b
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, D13A1) was used in blocking or activating experiments on human samples (fig 5b). Mol Cell Proteomics (2015) ncbi
domestic rabbit monoclonal (D10A8)
  • flow cytometry; human
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8480) was used in flow cytometry on human samples . Clin Cancer Res (2015) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; human
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 9582) was used in western blot on human samples . PLoS ONE (2014) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:200
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9561S) was used in immunocytochemistry on human samples at 1:200. Methods Mol Biol (2016) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry - paraffin section; mouse; fig 4
  • western blot; mouse; fig 4
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8814) was used in immunohistochemistry - paraffin section on mouse samples (fig 4) and in western blot on mouse samples (fig 4). J Biol Chem (2014) ncbi
domestic rabbit monoclonal (D13A1)
  • immunohistochemistry - paraffin section; mouse
In order to study the pathogenesis of prostate cance, Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 8814) was used in immunohistochemistry - paraffin section on mouse samples . Prostate (2014) ncbi
domestic rabbit monoclonal (D10A8)
  • western blot; human
In order to study how phosphorylation alters COP1-binding sites of oncoproteins, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 8480) was used in western blot on human samples . Cancer Cell (2014) ncbi
domestic rabbit monoclonal (6B3)
  • immunocytochemistry; human; 1:100
Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582) was used in immunocytochemistry on human samples at 1:100. Mol Endocrinol (2014) ncbi
domestic rabbit monoclonal (6B3)
  • immunohistochemistry - paraffin section; human; fig 7
  • immunohistochemistry - paraffin section; mouse; fig 6
In order to analyze promotion of a differentiated tumor cell phenotype and inhibition of pancreatic cancer metastasis by neutralizing murine TGF-betaR2, Cell Signaling Technology CTNNB1 antibody (Cell signaling, 9582) was used in immunohistochemistry - paraffin section on human samples (fig 7) and in immunohistochemistry - paraffin section on mouse samples (fig 6). Cancer Res (2014) ncbi
domestic rabbit monoclonal (6B3)
  • immunohistochemistry - paraffin section; mouse
In order to study the role of heparan sulfate in hair follicle and sebaceous gland morphogenesis and homeostasis, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582) was used in immunohistochemistry - paraffin section on mouse samples . J Biol Chem (2014) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; human; fig 6
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, 9582) was used in western blot on human samples (fig 6). J Pathol (2014) ncbi
domestic rabbit monoclonal (6B3)
  • immunohistochemistry; mouse; 1:200
In order to study the suppression of colonic tumorigenesis by the myc 3' Wnt-responsive element, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582) was used in immunohistochemistry on mouse samples at 1:200. Mol Cell Biol (2014) ncbi
domestic rabbit monoclonal (6B3)
  • immunohistochemistry - paraffin section; mouse; 1:800
In order to investigate the role of Mdm2 in the nephrogenic niche, Cell Signaling Technology CTNNB1 antibody (Cell Signaling, 9582S) was used in immunohistochemistry - paraffin section on mouse samples at 1:800. Dev Biol (2014) ncbi
domestic rabbit monoclonal (D10A8)
  • immunocytochemistry; human
  • western blot; human
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology, D10A8) was used in immunocytochemistry on human samples and in western blot on human samples . Cell Mol Life Sci (2014) ncbi
domestic rabbit monoclonal (6B3)
  • western blot; mouse; 1:1000
Cell Signaling Technology CTNNB1 antibody (Cell Signaling Technology Inc, 9582) was used in western blot on mouse samples at 1:1000. J Biol Chem (2013) ncbi
MilliporeSigma
mouse monoclonal (15B8)
  • western blot; rat; loading ...; fig 5a
MilliporeSigma CTNNB1 antibody (Sigma-Aldrich, C7207) was used in western blot on rat samples (fig 5a). Int J Mol Sci (2022) ncbi
mouse monoclonal (15B8)
  • western blot; mouse; 1:2000; loading ...; fig 2f
  • immunocytochemistry; human; 1:500; loading ...; fig s1-2
MilliporeSigma CTNNB1 antibody (Sigma-Aldrich, C7207) was used in western blot on mouse samples at 1:2000 (fig 2f) and in immunocytochemistry on human samples at 1:500 (fig s1-2). elife (2020) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry - paraffin section; mouse; 1:1000; loading ...; fig 1s1a
MilliporeSigma CTNNB1 antibody (Sigma, 15B8) was used in immunohistochemistry - paraffin section on mouse samples at 1:1000 (fig 1s1a). elife (2020) ncbi
mouse monoclonal (15B8)
MilliporeSigma CTNNB1 antibody (Sigma, C7207) was used . Science (2020) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry; zebrafish ; 1:500; loading ...; fig 4a
MilliporeSigma CTNNB1 antibody (Sigma-Aldrich, C7207) was used in immunohistochemistry on zebrafish samples at 1:500 (fig 4a). elife (2020) ncbi
mouse monoclonal (15B8)
  • immunocytochemistry; mouse; loading ...; fig 2b
MilliporeSigma CTNNB1 antibody (Sigma-Aldrich, C7207) was used in immunocytochemistry on mouse samples (fig 2b). Sci Rep (2018) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry - paraffin section; mouse; 1:1000; loading ...; fig s2d
In order to determine the role of the Msi family of oncoproteins in the intestinal stem cell compartment, MilliporeSigma CTNNB1 antibody (Sigma-Aldrich, C7207) was used in immunohistochemistry - paraffin section on mouse samples at 1:1000 (fig s2d). J Cell Biol (2016) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry - paraffin section; mouse; 1:500; loading ...
In order to develop a model to explain how signaling events and tissue forces coordinate to regulated the patterning apical membrane invaginations, MilliporeSigma CTNNB1 antibody (Sigma, C-7207) was used in immunohistochemistry - paraffin section on mouse samples at 1:500. Integr Biol (Camb) (2016) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry - paraffin section; mouse; 1:1000; fig 1
In order to investigate the heterogeneity in readouts in intestinal crypts in reference to canonical Wnt pathway activity, MilliporeSigma CTNNB1 antibody (Sigma, C7207) was used in immunohistochemistry - paraffin section on mouse samples at 1:1000 (fig 1). Dev Dyn (2016) ncbi
mouse monoclonal (15B8)
  • immunoprecipitation; mouse; fig 6
  • immunoprecipitation; human; fig 5
MilliporeSigma CTNNB1 antibody (Sigma, C7207) was used in immunoprecipitation on mouse samples (fig 6) and in immunoprecipitation on human samples (fig 5). Mol Cell Biol (2016) ncbi
mouse monoclonal (15B8)
  • immunocytochemistry; human; 1:250; fig s13b
  • western blot; human; 1:1000; fig 8e
MilliporeSigma CTNNB1 antibody (Sigma- Aldrich, C7207) was used in immunocytochemistry on human samples at 1:250 (fig s13b) and in western blot on human samples at 1:1000 (fig 8e). J Biol Chem (2015) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry - paraffin section; mouse; fig 2
MilliporeSigma CTNNB1 antibody (Sigma, 15B8) was used in immunohistochemistry - paraffin section on mouse samples (fig 2). elife (2015) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry - frozen section; zebrafish ; fig s1
  • immunohistochemistry; zebrafish ; 1:200; fig s1
In order to assess beta-catenin-driven liver tumorigenesis in zebrafish by indentifying chemical inhibitors, MilliporeSigma CTNNB1 antibody (Sigma-Aldrich, C-7207) was used in immunohistochemistry - frozen section on zebrafish samples (fig s1) and in immunohistochemistry on zebrafish samples at 1:200 (fig s1). PLoS Genet (2015) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry - paraffin section; human; 1:150
In order to identify master regulators of inflammatory breast cancer, MilliporeSigma CTNNB1 antibody (SIGMA, C7207) was used in immunohistochemistry - paraffin section on human samples at 1:150. J Transl Med (2015) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry; chicken; 1:200; fig 2
  • western blot; chicken; 1:2000; fig 5
In order to report that beta-catenin controls the cell fate and polarity of neuroblasts by modulating the expression and localization of aPKC, MilliporeSigma CTNNB1 antibody (Sigma, C7207) was used in immunohistochemistry on chicken samples at 1:200 (fig 2) and in western blot on chicken samples at 1:2000 (fig 5). Nat Commun (2014) ncbi
mouse monoclonal (15B8)
  • immunocytochemistry; mouse; fig 1
MilliporeSigma CTNNB1 antibody (Sigma, C7207) was used in immunocytochemistry on mouse samples (fig 1). PLoS ONE (2013) ncbi
mouse monoclonal (15B8)
  • immunohistochemistry; mouse
MilliporeSigma CTNNB1 antibody (Sigma, C7207) was used in immunohistochemistry on mouse samples . Dev Biol (2008) ncbi
Articles Reviewed
  1. Wang W, Bale S, Wei J, Yalavarthi B, Bhattacharyya D, Yan J, et al. Fibroblast A20 governs fibrosis susceptibility and its repression by DREAM promotes fibrosis in multiple organs. Nat Commun. 2022;13:6358 pubmed publisher
  2. Pan R, Yu Y, Zhu H, Zhang W, Qin Y, Ye L, et al. RSPO2 promotes progression of ovarian cancer through dual receptor-mediated FAK/Src signaling activation. iScience. 2022;25:105184 pubmed publisher
  3. Lei T, Zhang W, He Y, Wei S, Song X, Zhu Y, et al. ZNF276 promotes the malignant phenotype of breast carcinoma by activating the CYP1B1-mediated Wnt/β-catenin pathway. Cell Death Dis. 2022;13:781 pubmed publisher
  4. Wang H, Segersv xe4 rd H, Siren J, Perttunen S, Immonen K, Kosonen R, et al. Tankyrase Inhibition Attenuates Cardiac Dilatation and Dysfunction in Ischemic Heart Failure. Int J Mol Sci. 2022;23: pubmed publisher
  5. Zheng S, Lin J, Pang Z, Zhang H, Wang Y, Ma L, et al. Aberrant Cholesterol Metabolism and Wnt/β-Catenin Signaling Coalesce via Frizzled5 in Supporting Cancer Growth. Adv Sci (Weinh). 2022;9:e2200750 pubmed publisher
  6. Tang Y, Dong L, Zhang C, Li X, Li R, Lin H, et al. PRMT5 acts as a tumor suppressor by inhibiting Wnt/β-catenin signaling in murine gastric tumorigenesis. Int J Biol Sci. 2022;18:4329-4340 pubmed publisher
  7. Yu J, Yang K, Zheng J, Zhao P, Xia J, Sun X, et al. Activation of FXR and inhibition of EZH2 synergistically inhibit colorectal cancer through cooperatively accelerating FXR nuclear location and upregulating CDX2 expression. Cell Death Dis. 2022;13:388 pubmed publisher
  8. Nataraj N, Noronha A, Lee J, Ghosh S, Mohan Raju H, Sekar A, et al. Nucleoporin-93 reveals a common feature of aggressive breast cancers: robust nucleocytoplasmic transport of transcription factors. Cell Rep. 2022;38:110418 pubmed publisher
  9. Gong N, Shi L, Bing X, Li H, Hu H, Zhang P, et al. S100A4/TCF Complex Transcription Regulation Drives Epithelial-Mesenchymal Transition in Chronic Sinusitis Through Wnt/GSK-3β/β-Catenin Signaling. Front Immunol. 2022;13:835888 pubmed publisher
  10. Liang X, Jin Q, Yang X, Jiang W. Dickkopf‑3 and β‑catenin play opposite roles in the Wnt/β‑catenin pathway during the abnormal subchondral bone formation of human knee osteoarthritis. Int J Mol Med. 2022;49: pubmed publisher
  11. Li Z, Chiang Y, He M, Worgall T, Zhou H, Jiang X. Liver sphingomyelin synthase 1 deficiency causes steatosis, steatohepatitis, fibrosis, and tumorigenesis: An effect of glucosylceramide accumulation. iScience. 2021;24:103449 pubmed publisher
  12. Zhu H, Su Z, Ning J, Zhou L, Tan L, Sayed S, et al. Transmembrane protein 97 exhibits oncogenic properties via enhancing LRP6-mediated Wnt signaling in breast cancer. Cell Death Dis. 2021;12:912 pubmed publisher
  13. Li K, Wu R, Zhou M, Tong H, Luo K. Desmosomal proteins of DSC2 and PKP1 promote cancer cells survival and metastasis by increasing cluster formation in circulatory system. Sci Adv. 2021;7:eabg7265 pubmed publisher
  14. He W, Lu Q, Sherchan P, Huang L, Hu X, Zhang J, et al. Activation of Frizzled-7 attenuates blood-brain barrier disruption through Dvl/β-catenin/WISP1 signaling pathway after intracerebral hemorrhage in mice. Fluids Barriers CNS. 2021;18:44 pubmed publisher
  15. Ma X, Takahashi Y, Wu W, Liang W, Chen J, Chakraborty D, et al. ADAM17 mediates ectodomain shedding of the soluble VLDL receptor fragment in the retinal epithelium. J Biol Chem. 2021;297:101185 pubmed publisher
  16. García Sánchez D, González González A, García García P, Reyes R, Pérez Núñez M, Riancho J, et al. Effective Osteogenic Priming of Mesenchymal Stem Cells through LNA-ASOs-Mediated Sfrp1 Gene Silencing. Pharmaceutics. 2021;13: pubmed publisher
  17. Mygland L, Brinch S, Strand M, Olsen P, Aizenshtadt A, Lund K, et al. Identification of response signatures for tankyrase inhibitor treatment in tumor cell lines. iScience. 2021;24:102807 pubmed publisher
  18. Arnold F, Mahaddalkar P, Kraus J, Zhong X, Bergmann W, Srinivasan D, et al. Functional Genomic Screening During Somatic Cell Reprogramming Identifies DKK3 as a Roadblock of Organ Regeneration. Adv Sci (Weinh). 2021;8:2100626 pubmed publisher
  19. Shen J, Sun Y, Liu X, Zhu Y, Bao B, Gao T, et al. EGFL6 regulates angiogenesis and osteogenesis in distraction osteogenesis via Wnt/β-catenin signaling. Stem Cell Res Ther. 2021;12:415 pubmed publisher
  20. Xue F, Zhao Z, Gu Y, Han J, Ye K, Zhang Y. 7,8-Dihydroxyflavone modulates bone formation and resorption and ameliorates ovariectomy-induced osteoporosis. elife. 2021;10: pubmed publisher
  21. Sehgal P, Mathew S, Sivadas A, Ray A, Tanwar J, Vishwakarma S, et al. LncRNA VEAL2 regulates PRKCB2 to modulate endothelial permeability in diabetic retinopathy. EMBO J. 2021;40:e107134 pubmed publisher
  22. Wang Y, Su Y, Yu G, Wang X, Chen X, Yu B, et al. Reduced Oligodendrocyte Precursor Cell Impairs Astrocytic Development in Early Life Stress. Adv Sci (Weinh). 2021;8:e2101181 pubmed publisher
  23. Low J, Du W, Gocha T, Oguz G, Zhang X, Chen M, et al. Molecular docking-aided identification of small molecule inhibitors targeting β-catenin-TCF4 interaction. iScience. 2021;24:102544 pubmed publisher
  24. Zhao D, Zhong G, Li J, Pan J, Zhao Y, Song H, et al. Targeting E3 Ubiquitin-Ligase WWP1 Prevents Cardiac Hypertrophy Through Destabilizing DVL2 via Inhibition of K27-Linked Ubiquitination. Circulation. 2021;: pubmed publisher
  25. 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
  26. Ianni A, Hofmann M, Kumari P, Tarighi S, Al tamari H, Görgens A, et al. Depletion of Numb and Numblike in Murine Lung Epithelial Cells Ameliorates Bleomycin-Induced Lung Fibrosis by Inhibiting the β-Catenin Signaling Pathway. Front Cell Dev Biol. 2021;9:639162 pubmed publisher
  27. Lai W, Zhu W, Xiao C, Li X, Wang Y, Han Y, et al. HJURP promotes proliferation in prostate cancer cells through increasing CDKN1A degradation via the GSK3β/JNK signaling pathway. Cell Death Dis. 2021;12:583 pubmed publisher
  28. Sha S, Shen X, Cao Y, Qu L. Mesenchymal stem cells-derived extracellular vesicles ameliorate Alzheimer's disease in rat models via the microRNA-29c-3p/BACE1 axis and the Wnt/β-catenin pathway. Aging (Albany NY). 2021;13:15285-15306 pubmed publisher
  29. Lee S, Remark L, Josephson A, Leclerc K, Lopez E, Kirby D, et al. Notch-Wnt signal crosstalk regulates proliferation and differentiation of osteoprogenitor cells during intramembranous bone healing. NPJ Regen Med. 2021;6:29 pubmed publisher
  30. Zhai X, Gong M, Peng Y, Yang D. Effects of UV Induced-Photoaging on the Hair Follicle Cycle of C57BL6/J Mice. Clin Cosmet Investig Dermatol. 2021;14:527-539 pubmed publisher
  31. Wang K, Ding Y, Xu C, Hao M, Li H, Ding L. Cldn-7 deficiency promotes experimental colitis and associated carcinogenesis by regulating intestinal epithelial integrity. Oncoimmunology. 2021;10:1923910 pubmed publisher
  32. Jiang J, Li J, Yao W, Wang W, Shi B, Yuan F, et al. FOXC1 Negatively Regulates DKK1 Expression to Promote Gastric Cancer Cell Proliferation Through Activation of Wnt Signaling Pathway. Front Cell Dev Biol. 2021;9:662624 pubmed publisher
  33. Xu Y, Pan S, Chen H, Qian H, Wang Z, Zhu X. MEX3A suppresses proliferation and EMT via inhibiting Akt signaling pathway in cervical cancer. Am J Cancer Res. 2021;11:1446-1462 pubmed
  34. Li X, Lin P, Tao Y, Jiang X, Li T, Wang Y, et al. LECT 2 Antagonizes FOXM1 Signaling via Inhibiting MET to Retard PDAC Progression. Front Cell Dev Biol. 2021;9:661122 pubmed publisher
  35. Nasu M, Esumi S, Hatakeyama J, Tamamaki N, Shimamura K. Two-Phase Lineage Specification of Telencephalon Progenitors Generated From Mouse Embryonic Stem Cells. Front Cell Dev Biol. 2021;9:632381 pubmed publisher
  36. Li X, Huang K, Liu X, Ruan H, Ma L, Liang J, et al. Ellagic Acid Attenuates BLM-Induced Pulmonary Fibrosis via Inhibiting Wnt Signaling Pathway. Front Pharmacol. 2021;12:639574 pubmed publisher
  37. Srivastava S, Zhou H, Setia O, Liu B, Kanasaki K, Koya D, et al. Loss of endothelial glucocorticoid receptor accelerates diabetic nephropathy. Nat Commun. 2021;12:2368 pubmed publisher
  38. 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
  39. Zewdu R, Mehrabad E, Ingram K, Fang P, Gillis K, Camolotto S, et al. An NKX2-1/ERK/WNT feedback loop modulates gastric identity and response to targeted therapy in lung adenocarcinoma. elife. 2021;10: pubmed publisher
  40. Zhang L, Li M, Tian C, Wang T, Mi S. CCAAT enhancer binding protein α suppresses proliferation, metastasis, and epithelial-mesenchymal transition of ovarian cancer cells via suppressing the Wnt/β-catenin signaling. Neoplasma. 2021;68:602-612 pubmed publisher
  41. Gandhi S, Li Y, Tang W, Christensen J, Urrutia H, Vieceli F, et al. A single-plasmid approach for genome editing coupled with long-term lineage analysis in chick embryos. Development. 2021;148: pubmed publisher
  42. Betzler A, Nanduri L, Hissa B, Blickensd xf6 rfer L, Muders M, Roy J, et al. Differential Effects of Trp53 Alterations in Murine Colorectal Cancer. Cancers (Basel). 2021;13: pubmed publisher
  43. Weeks S, Kammerud S, Metge B, Alsheikh H, Schneider D, Chen D, et al. Inhibiting β-catenin disables nucleolar functions in triple-negative breast cancer. Cell Death Dis. 2021;12:242 pubmed publisher
  44. 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
  45. Zha Z, Li D, Zhang P, Wang P, Fang X, Liu X, et al. Neuron specific enolase promotes tumor metastasis by activating the Wnt/β-catenin pathway in small cell lung cancer. Transl Oncol. 2021;14:101039 pubmed publisher
  46. Fu C, Zhang Q, Wang A, Yang S, Jiang Y, Bai L, et al. EWI-2 controls nucleocytoplasmic shuttling of EGFR signaling molecules and miRNA sorting in exosomes to inhibit prostate cancer cell metastasis. Mol Oncol. 2021;15:1543-1565 pubmed publisher
  47. Sene L, Scarano W, Zapparoli A, Gontijo J, Boer P. Impact of gestational low-protein intake on embryonic kidney microRNA expression and in nephron progenitor cells of the male fetus. PLoS ONE. 2021;16:e0246289 pubmed publisher
  48. Buitrago Molina L, Marhenke S, Becker D, Geffers R, Itzel T, Teufel A, et al. p53-Independent Induction of p21 Fails to Control Regeneration and Hepatocarcinogenesis in a Murine Liver Injury Model. Cell Mol Gastroenterol Hepatol. 2021;11:1387-1404 pubmed publisher
  49. Lu M, Qin X, Zhou Y, Li G, Liu Z, Geng X, et al. Long non-coding RNA LINC00665 promotes gemcitabine resistance of Cholangiocarcinoma cells via regulating EMT and stemness properties through miR-424-5p/BCL9L axis. Cell Death Dis. 2021;12:72 pubmed publisher
  50. Yang J, Kitami M, Pan H, Nakamura M, Zhang H, Liu F, et al. Augmented BMP signaling commits cranial neural crest cells to a chondrogenic fate by suppressing autophagic β-catenin degradation. Sci Signal. 2021;14: pubmed publisher
  51. Jiang Y, Han Q, Zhao H, Zhang J. Promotion of epithelial-mesenchymal transformation by hepatocellular carcinoma-educated macrophages through Wnt2b/β-catenin/c-Myc signaling and reprogramming glycolysis. J Exp Clin Cancer Res. 2021;40:13 pubmed publisher
  52. Lei H, Xu H, Shan H, Liu M, Lu Y, Fang Z, et al. Targeting USP47 overcomes tyrosine kinase inhibitor resistance and eradicates leukemia stem/progenitor cells in chronic myelogenous leukemia. Nat Commun. 2021;12:51 pubmed publisher
  53. Gumber D, Do M, Suresh Kumar N, Sonavane P, Wu C, Cruz L, et al. Selective activation of FZD7 promotes mesendodermal differentiation of human pluripotent stem cells. elife. 2020;9: pubmed publisher
  54. Jin Y, Sun X, Pei F, Zhao Z, Mao J. Wnt16 signaling promotes osteoblast differentiation of periosteal derived cells in vitro and in vivo. Peerj. 2020;8:e10374 pubmed publisher
  55. Thorsen A, Khamis D, Kemp R, Colombé M, Lourenco F, Morrissey E, et al. Heterogeneity in clone dynamics within and adjacent to intestinal tumours identified by Dre-mediated lineage tracing. Dis Model Mech. 2021;14: pubmed publisher
  56. Huang Y, Liang C, Ritz D, Coelho R, Septiadi D, Estermann M, et al. Collagen-rich omentum is a premetastatic niche for integrin α2-mediated peritoneal metastasis. elife. 2020;9: pubmed publisher
  57. Li M, Xie Z, Li J, Lin J, Zheng G, Liu W, et al. GAS5 protects against osteoporosis by targeting UPF1/SMAD7 axis in osteoblast differentiation. elife. 2020;9: pubmed publisher
  58. Jiao T, Yao X, Zhao Y, Zhou Y, Gao Y, Fan S, et al. Dexamethasone-Induced Liver Enlargement Is Related to PXR/YAP Activation and Lipid Accumulation but Not Hepatocyte Proliferation. Drug Metab Dispos. 2020;48:830-839 pubmed publisher
  59. Huang W, Yu D, Wang M, Han Y, Lin J, Wei D, et al. ITGBL1 promotes cell migration and invasion through stimulating the TGF-β signalling pathway in hepatocellular carcinoma. Cell Prolif. 2020;53:e12836 pubmed publisher
  60. Peroutka R, Buzza M, Mukhopadhyay S, Johnson T, Driesbaugh K, Antalis T. Testisin/Prss21 deficiency causes increased vascular permeability and a hemorrhagic phenotype during luteal angiogenesis. PLoS ONE. 2020;15:e0234407 pubmed publisher
  61. Liu Y, Jiang B, Cao Y, Chen W, Yin L, Xu Y, et al. High expression levels and localization of Sox5 in dilated cardiomyopathy. Mol Med Rep. 2020;22:948-956 pubmed publisher
  62. Waaler J, Mygland L, Tveita A, Strand M, Solberg N, Olsen P, et al. Tankyrase inhibition sensitizes melanoma to PD-1 immune checkpoint blockade in syngeneic mouse models. Commun Biol. 2020;3:196 pubmed publisher
  63. Cai L, Chao G, Li W, Zhu J, Li F, Qi B, et al. Activated CD4+ T cells-derived exosomal miR-142-3p boosts post-ischemic ventricular remodeling by activating myofibroblast. Aging (Albany NY). 2020;12:7380-7396 pubmed publisher
  64. Matos I, Asare A, Levorse J, Ouspenskaia T, de la Cruz Racelis J, Schuhmacher L, et al. Progenitors oppositely polarize WNT activators and inhibitors to orchestrate tissue development. elife. 2020;9: pubmed publisher
  65. Weber C, Zhou Y, Lee J, Looger L, Qian G, Ge C, et al. Temperature-dependent sex determination is mediated by pSTAT3 repression of Kdm6b. Science. 2020;368:303-306 pubmed publisher
  66. Schauer A, Pinheiro D, Hauschild R, Heisenberg C. Zebrafish embryonic explants undergo genetically encoded self-assembly. elife. 2020;9: pubmed publisher
  67. Singh S, Adam M, Matkar P, Bugyei Twum A, Desjardins J, Chen H, et al. Endothelial-specific Loss of IFT88 Promotes Endothelial-to-Mesenchymal Transition and Exacerbates Bleomycin-induced Pulmonary Fibrosis. Sci Rep. 2020;10:4466 pubmed publisher
  68. Marchetti M, Meloni M, Anwar M, Zen A, Sala Newby G, Slater S, et al. MicroRNA-24-3p Targets Notch and Other Vascular Morphogens to Regulate Post-ischemic Microvascular Responses in Limb Muscles. Int J Mol Sci. 2020;21: pubmed publisher
  69. Chen Z, Zhang J, Xue H, Qian M, Guo X, Gao X, et al. Nitidine Chloride Is a Potential Alternative Therapy for Glioma Through Inducing Endoplasmic Reticulum Stress and Alleviating Epithelial-Mesenchymal Transition. Integr Cancer Ther. 2020;19:1534735419900927 pubmed publisher
  70. Wang S, Qi Y, Gao X, Qiu W, Liu Q, Guo X, et al. Hypoxia-induced lncRNA PDIA3P1 promotes mesenchymal transition via sponging of miR-124-3p in glioma. Cell Death Dis. 2020;11:168 pubmed publisher
  71. Kasacka I, Piotrowska Z, Niezgoda M, Lewandowska A, Łebkowski W. Ageing-related changes in the levels of β-catenin, CacyBP/SIP, galectin-3 and immunoproteasome subunit LMP7 in the heart of men. PLoS ONE. 2020;15:e0229462 pubmed publisher
  72. Padthaisong S, Thanee M, Namwat N, Phetcharaburanin J, Klanrit P, Khuntikeo N, et al. A panel of protein kinase high expression is associated with postoperative recurrence in cholangiocarcinoma. BMC Cancer. 2020;20:154 pubmed publisher
  73. Chandrasekaran B, Dahiya N, Tyagi A, Kolluru V, Saran U, Baby B, et al. Chronic exposure to cadmium induces a malignant transformation of benign prostate epithelial cells. Oncogenesis. 2020;9:23 pubmed publisher
  74. Rinastiti P, Ikeda K, Rahardini E, Miyagawa K, Tamada N, Kuribayashi Y, et al. Loss of family with sequence similarity 13, member A exacerbates pulmonary hypertension through accelerating endothelial-to-mesenchymal transition. PLoS ONE. 2020;15:e0226049 pubmed publisher
  75. Kluz P, Kolb R, Xie Q, Borcherding N, Liu Q, Luo Y, et al. Cancer cell-intrinsic function of CD177 in attenuating β-catenin signaling. Oncogene. 2020;39:2877-2889 pubmed publisher
  76. Ju L, Shan L, Yin B, Song Y. δ-Catenin regulates proliferation and apoptosis in renal cell carcinoma via promoting β-catenin nuclear localization and activating its downstream target genes. Cancer Med. 2020;9:2201-2212 pubmed publisher
  77. McGinn O, Ward A, Fettig L, Riley D, Ivie J, Paul K, et al. Cytokeratin 5 alters β-catenin dynamics in breast cancer cells. Oncogene. 2020;39:2478-2492 pubmed publisher
  78. Liao S, Chen H, Liu M, Gan L, Li C, Zhang W, et al. Aquaporin 9 inhibits growth and metastasis of hepatocellular carcinoma cells via Wnt/β-catenin pathway. Aging (Albany NY). 2020;12:1527-1544 pubmed publisher
  79. Deng M, Chen Z, Tan J, Liu H. Down-regulation of SLC35C1 induces colon cancer through over-activating Wnt pathway. J Cell Mol Med. 2020;24:3079-3090 pubmed publisher
  80. Zhou L, Shao C, Xie Y, Wang N, Xu S, Luo B, et al. Gab1 mediates PDGF signaling and is essential to oligodendrocyte differentiation and CNS myelination. elife. 2020;9: pubmed publisher
  81. Boukhalfa A, Nascimbeni A, Ramel D, Dupont N, Hirsch E, Gayral S, et al. PI3KC2α-dependent and VPS34-independent generation of PI3P controls primary cilium-mediated autophagy in response to shear stress. Nat Commun. 2020;11:294 pubmed publisher
  82. Hsu H, Liu C, Lin J, Hsu T, Hsu J, Li A, et al. Involvement of collagen XVII in pluripotency gene expression and metabolic reprogramming of lung cancer stem cells. J Biomed Sci. 2020;27:5 pubmed publisher
  83. Liu Q, Zhou C, Zhang B. Upregulation of musashi1 increases malignancy of hepatocellular carcinoma via the Wnt/β-catenin signaling pathway and predicts a poor prognosis. BMC Gastroenterol. 2019;19:230 pubmed publisher
  84. Xing T, Benderman L, Sabu S, Parker J, Yang J, Lu Q, et al. Tight Junction Protein Claudin-7 Is Essential for Intestinal Epithelial Stem Cell Self-Renewal and Differentiation. Cell Mol Gastroenterol Hepatol. 2020;9:641-659 pubmed publisher
  85. Wang H, Chen Z, Wang S, Gao X, Qian M, Qiu W, et al. TGFβ1-induced beta-site APP-cleaving enzyme 2 upregulation promotes tumorigenesis through the NF-κB signalling pathway in human gliomas. Mol Oncol. 2020;14:407-425 pubmed publisher
  86. Quach C, Song Y, Guo H, Li S, Maazi H, Fung M, et al. A truncating mutation in the autophagy gene UVRAG drives inflammation and tumorigenesis in mice. Nat Commun. 2019;10:5681 pubmed publisher
  87. Hiepen C, Jatzlau J, Hildebrandt S, Kampfrath B, Goktas M, Murgai A, et al. BMPR2 acts as a gatekeeper to protect endothelial cells from increased TGFβ responses and altered cell mechanics. PLoS Biol. 2019;17:e3000557 pubmed publisher
  88. Jiang K, Zhi X, Ma Y, Zhou L. Long non-coding RNA TOB1-AS1 modulates cell proliferation, apoptosis, migration and invasion through miR-23a/NEU1 axis via Wnt/b-catenin pathway in gastric cancer. Eur Rev Med Pharmacol Sci. 2019;23:9890-9899 pubmed publisher
  89. Yang X, Jiang J, Zhang C, Li Y. Baicalein restrains proliferation, migration, and invasion of human malignant melanoma cells by down-regulating colon cancer associated transcript-1. Braz J Med Biol Res. 2019;52:e8934 pubmed publisher
  90. Chen X, Xiong X, Cui D, Yang F, Wei D, Li H, et al. DEPTOR is an in vivo tumor suppressor that inhibits prostate tumorigenesis via the inactivation of mTORC1/2 signals. Oncogene. 2020;39:1557-1571 pubmed publisher
  91. Eyre R, Alferez D, Santiago Gómez A, Spence K, McConnell J, Hart C, et al. Microenvironmental IL1β promotes breast cancer metastatic colonisation in the bone via activation of Wnt signalling. Nat Commun. 2019;10:5016 pubmed publisher
  92. Hu Y, Zhao Y, Shi C, Ren P, Wei B, Guo Y, et al. A circular RNA from APC inhibits the proliferation of diffuse large B-cell lymphoma by inactivating Wnt/β-catenin signaling via interacting with TET1 and miR-888. Aging (Albany NY). 2019;11:8068-8084 pubmed publisher
  93. Padmanaban V, Krol I, Suhail Y, Szczerba B, Aceto N, Bader J, et al. E-cadherin is required for metastasis in multiple models of breast cancer. Nature. 2019;573:439-444 pubmed publisher
  94. Deng Q, Li P, Che M, Liu J, Biswas S, Ma G, et al. Activation of hedgehog signaling in mesenchymal stem cells induces cartilage and bone tumor formation via Wnt/β-Catenin. elife. 2019;8: pubmed publisher
  95. Diaz Osterman C, Ozmadenci D, Kleinschmidt E, Taylor K, Barrie A, Jiang S, et al. FAK activity sustains intrinsic and acquired ovarian cancer resistance to platinum chemotherapy. elife. 2019;8: pubmed publisher
  96. Jiang S, Zhang M, Zhang Y, Zhou W, Zhu T, Ruan Q, et al. WNT5B governs the phenotype of basal-like breast cancer by activating WNT signaling. Cell Commun Signal. 2019;17:109 pubmed publisher
  97. Ji M, Wang Z, Chen J, Gu L, Chen M, Ding Y, et al. Up-regulated ENO1 promotes the bladder cancer cell growth and proliferation via regulating β-catenin. Biosci Rep. 2019;39: pubmed publisher
  98. Wei C, Zhu M, Zhang P, Yang X, Wang L, Ying J, et al. Elevated kindlin-2 promotes tumour progression and angiogenesis through the mTOR/VEGFA pathway in melanoma. Aging (Albany NY). 2019;11:6273-6285 pubmed publisher
  99. Dumortier J, Le Verge Serandour M, Tortorelli A, Mielke A, de Plater L, Turlier H, et al. Hydraulic fracturing and active coarsening position the lumen of the mouse blastocyst. Science. 2019;365:465-468 pubmed publisher
  100. Li Q, Lai Q, He C, Fang Y, Yan Q, Zhang Y, et al. RUNX1 promotes tumour metastasis by activating the Wnt/β-catenin signalling pathway and EMT in colorectal cancer. J Exp Clin Cancer Res. 2019;38:334 pubmed publisher
  101. van de Vlekkert D, Demmers J, Nguyen X, Campos Y, Machado E, Annunziata I, et al. Excessive exosome release is the pathogenic pathway linking a lysosomal deficiency to generalized fibrosis. Sci Adv. 2019;5:eaav3270 pubmed publisher
  102. Parolia A, Cieslik M, Chu S, Xiao L, Ouchi T, Zhang Y, et al. Distinct structural classes of activating FOXA1 alterations in advanced prostate cancer. Nature. 2019;: pubmed publisher
  103. Gu C, Wang L, Zurawski S, Oh S. Signaling Cascade through DC-ASGPR Induces Transcriptionally Active CREB for IL-10 Induction and Immune Regulation. J Immunol. 2019;: pubmed publisher
  104. Choi J, Zhong X, McAlpine W, Liao T, Zhang D, Fang B, et al. LMBR1L regulates lymphopoiesis through Wnt/β-catenin signaling. Science. 2019;364: pubmed publisher
  105. Huang X, Xue H, Ma J, Zhang Y, Zhang J, Liu Y, et al. Salidroside ameliorates Adriamycin nephropathy in mice by inhibiting β-catenin activity. J Cell Mol Med. 2019;23:4443-4453 pubmed publisher
  106. Montalbán Loro R, Lozano Ureña A, Ito M, Krueger C, Reik W, Ferguson Smith A, et al. TET3 prevents terminal differentiation of adult NSCs by a non-catalytic action at Snrpn. Nat Commun. 2019;10:1726 pubmed publisher
  107. Gong L, Xiao Y, Xia F, Wu P, Zhao T, Xie S, et al. The mevalonate coordinates energy input and cell proliferation. Cell Death Dis. 2019;10:327 pubmed publisher
  108. Li Y, Lu Y, Chen Y. Long non-coding RNA SNHG16 affects cell proliferation and predicts a poor prognosis in patients with colorectal cancer via sponging miR-200a-3p. Biosci Rep. 2019;39: pubmed publisher
  109. 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
  110. Huang K, Ru B, Zhang Y, Chan W, Chow S, Zhang J, et al. Sertoli cell-specific coxsackievirus and adenovirus receptor knockout regulates cell adhesion and gene transcription via β-catenin inactivation and Cdc42 activation. FASEB J. 2019;33:7588-7602 pubmed publisher
  111. 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
  112. Zhang X, Qin Q, Dai H, Cai S, Zhou C, Guan J. Emodin protects H9c2 cells from hypoxia-induced injury by up-regulating miR-138 expression. Braz J Med Biol Res. 2019;52:e7994 pubmed publisher
  113. Hwang J, Kim A, Kim K, Il Park J, Oh H, Moon S, et al. TAZ couples Hippo/Wnt signalling and insulin sensitivity through Irs1 expression. Nat Commun. 2019;10:421 pubmed publisher
  114. 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
  115. Ren D, Dai Y, Yang Q, Zhang X, Guo W, Ye L, et al. Wnt5a induces and maintains prostate cancer cells dormancy in bone. J Exp Med. 2019;216:428-449 pubmed publisher
  116. Xie Y, Fan H, Lu W, Yang Q, Nurkesh A, Yeleussizov T, et al. Nuclear MET requires ARF and is inhibited by carbon nanodots through binding to phospho-tyrosine in prostate cancer. Oncogene. 2019;38:2967-2983 pubmed publisher
  117. Yang F, Fang E, Mei H, Chen Y, Li H, Li D, et al. Cis-Acting circ-CTNNB1 Promotes β-Catenin Signaling and Cancer Progression via DDX3-Mediated Transactivation of YY1. Cancer Res. 2019;79:557-571 pubmed publisher
  118. Zhang Z, Chen J, Huang W, Ning D, Liu Q, Wang C, et al. FAM134B induces tumorigenesis and epithelial-to-mesenchymal transition via Akt signaling in hepatocellular carcinoma. Mol Oncol. 2019;13:792-810 pubmed publisher
  119. Peng J, Liang S, Li L. sFRP1 exerts effects on gastric cancer cells through GSK3β/Rac1‑mediated restraint of TGFβ/Smad3 signaling. Oncol Rep. 2019;41:224-234 pubmed publisher
  120. Xu H, Li J, Chen H, Ghishan F. NHE8 Deficiency Promotes Colitis-Associated Cancer in Mice via Expansion of Lgr5-Expressing Cells. Cell Mol Gastroenterol Hepatol. 2019;7:19-31 pubmed publisher
  121. Koren E, Yosefzon Y, Ankawa R, Soteriou D, Jacob A, Nevelsky A, et al. ARTS mediates apoptosis and regeneration of the intestinal stem cell niche. Nat Commun. 2018;9:4582 pubmed publisher
  122. Wang H, Deng G, Ai M, Xu Z, Mou T, Yu J, et al. Hsp90ab1 stabilizes LRP5 to promote epithelial-mesenchymal transition via activating of AKT and Wnt/β-catenin signaling pathways in gastric cancer progression. Oncogene. 2019;38:1489-1507 pubmed publisher
  123. Mangolini M, Götte F, Moore A, Ammon T, Oelsner M, Lutzny Geier G, et al. Notch2 controls non-autonomous Wnt-signalling in chronic lymphocytic leukaemia. Nat Commun. 2018;9:3839 pubmed publisher
  124. Yang J, Sun L, Fan X, Yin B, Kang Y, Tang L, et al. Effect of exercise on bone in poorly controlled type 1 diabetes mediated by the ActRIIB/Smad signaling pathway. Exp Ther Med. 2018;16:3686-3693 pubmed publisher
  125. Russell J, Lu W, Okabe H, Abrams M, Oertel M, Poddar M, et al. Hepatocyte-Specific β-Catenin Deletion During Severe Liver Injury Provokes Cholangiocytes to Differentiate Into Hepatocytes. Hepatology. 2019;69:742-759 pubmed publisher
  126. Ji L, Lu B, Wang Z, Yang Z, Reece Hoyes J, Russ C, et al. Identification of ICAT as an APC Inhibitor, Revealing Wnt-Dependent Inhibition of APC-Axin Interaction. Mol Cell. 2018;72:37-47.e4 pubmed publisher
  127. Zhou L, Jing J, Wang H, Wu X, Lu Z. Decorin promotes proliferation and migration of ORS keratinocytes and maintains hair anagen in mice. Exp Dermatol. 2018;27:1237-1244 pubmed publisher
  128. Qiu C, Liu Z, Hou K, Liu S, Hu Y, Zhang L, et al. Wip1 knockout inhibits neurogenesis by affecting the Wnt/β-catenin signaling pathway in focal cerebral ischemia in mice. Exp Neurol. 2018;309:44-53 pubmed publisher
  129. Pan B, Wu L, Pan L, Yang Y, Li H, Dai Y, et al. Up-regulation of microRNA-340 promotes osteosarcoma cell apoptosis while suppressing proliferation, migration, and invasion by inactivating the CTNNB1-mediated Notch signaling pathway. Biosci Rep. 2018;38: pubmed publisher
  130. Manalo A, Schroer A, Fenix A, Shancer Z, Coogan J, Brolsma T, et al. Loss of CENP-F Results in Dilated Cardiomyopathy with Severe Disruption of Cardiac Myocyte Architecture. Sci Rep. 2018;8:7546 pubmed publisher
  131. Hsu J, Xia W, Hsu Y, Chan L, Yu W, Cha J, et al. STT3-dependent PD-L1 accumulation on cancer stem cells promotes immune evasion. Nat Commun. 2018;9:1908 pubmed publisher
  132. 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
  133. Macdougall C, Wood E, Loschko J, Scagliotti V, Cassidy F, Robinson M, et al. Visceral Adipose Tissue Immune Homeostasis Is Regulated by the Crosstalk between Adipocytes and Dendritic Cell Subsets. Cell Metab. 2018;27:588-601.e4 pubmed publisher
  134. Sarikhani M, Mishra S, Maity S, Kotyada C, Wolfgeher D, Gupta M, et al. SIRT2 deacetylase regulates the activity of GSK3 isoforms independent of inhibitory phosphorylation. elife. 2018;7: pubmed publisher
  135. Vl kov K, Vachtenheim J, R da J, Hor k P, Ondru ov L. Inducibly decreased MITF levels do not affect proliferation and phenotype switching but reduce differentiation of melanoma cells. J Cell Mol Med. 2018;22:2240-2251 pubmed publisher
  136. Xue C, Hong L, Lin J, Yao X, Wu D, Lin X, et al. β-Elemene inhibits the proliferation of primary human airway granulation fibroblasts by down-regulating canonical Wnt/β-catenin pathway. Biosci Rep. 2018;38: pubmed publisher
  137. Wang W, Wang Y, Qu C, Wang S, Zhou J, Cao W, et al. The RNA genome of hepatitis E virus robustly triggers an antiviral interferon response. Hepatology. 2018;67:2096-2112 pubmed publisher
  138. Frey J, Kim S, Li Z, Wolfgang M, Riddle R. β-Catenin Directs Long-Chain Fatty Acid Catabolism in the Osteoblasts of Male Mice. Endocrinology. 2018;159:272-284 pubmed publisher
  139. Caino M, Seo J, Wang Y, Rivadeneira D, Gabrilovich D, Kim E, et al. Syntaphilin controls a mitochondrial rheostat for proliferation-motility decisions in cancer. J Clin Invest. 2017;127:3755-3769 pubmed publisher
  140. Luo W, Tan P, Rodriguez M, He L, Tan K, Zeng L, et al. Leucine-rich repeat-containing G protein-coupled receptor 4 (Lgr4) is necessary for prostate cancer metastasis via epithelial-mesenchymal transition. J Biol Chem. 2017;292:15525-15537 pubmed publisher
  141. 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
  142. Li Q, Ye L, Zhang X, Wang M, Lin C, Huang S, et al. FZD8, a target of p53, promotes bone metastasis in prostate cancer by activating canonical Wnt/β-catenin signaling. Cancer Lett. 2017;402:166-176 pubmed publisher
  143. Matsumoto Y, La Rose J, Lim M, Adissu H, Law N, Mao X, et al. Ubiquitin ligase RNF146 coordinates bone dynamics and energy metabolism. J Clin Invest. 2017;127:2612-2625 pubmed publisher
  144. Lu J, Yang Y, Guo G, Liu Y, Zhang Z, Dong S, et al. IKBKE regulates cell proliferation and epithelial-mesenchymal transition of human malignant glioma via the Hippo pathway. Oncotarget. 2017;8:49502-49514 pubmed publisher
  145. Choi E, Jung B, Lee S, Yoo H, Shin E, Ko H, et al. A clinical drug library screen identifies clobetasol propionate as an NRF2 inhibitor with potential therapeutic efficacy in KEAP1 mutant lung cancer. Oncogene. 2017;36:5285-5295 pubmed publisher
  146. Janda C, Dang L, You C, Chang J, de Lau W, Zhong Z, et al. Surrogate Wnt agonists that phenocopy canonical Wnt and ?-catenin signalling. Nature. 2017;545:234-237 pubmed publisher
  147. Olvedy M, Tisserand J, Luciani F, Boeckx B, Wouters J, Lopez S, et al. Comparative oncogenomics identifies tyrosine kinase FES as a tumor suppressor in melanoma. J Clin Invest. 2017;127:2310-2325 pubmed publisher
  148. Iglesia R, Prado M, Cruz L, Martins V, Santos T, Lopes M. Engagement of cellular prion protein with the co-chaperone Hsp70/90 organizing protein regulates the proliferation of glioblastoma stem-like cells. Stem Cell Res Ther. 2017;8:76 pubmed publisher
  149. Kharfallah F, Guyot M, El Hassan A, Allache R, Merello E, De Marco P, et al. Scribble1 plays an important role in the pathogenesis of neural tube defects through its mediating effect of Par-3 and Vangl1/2 localization. Hum Mol Genet. 2017;26:2307-2320 pubmed publisher
  150. Wang X, Chen H, Tian R, Zhang Y, Drutskaya M, Wang C, et al. Macrophages induce AKT/β-catenin-dependent Lgr5+ stem cell activation and hair follicle regeneration through TNF. Nat Commun. 2017;8:14091 pubmed publisher
  151. Sahu U, Choudhury A, Parvez S, Biswas S, Kar S. Induction of intestinal stemness and tumorigenicity by aberrant internalization of commensal non-pathogenic E. coli. Cell Death Dis. 2017;8:e2667 pubmed publisher
  152. Boutin A, Liao W, Wang M, Hwang S, Karpinets T, Cheung H, et al. Oncogenic Kras drives invasion and maintains metastases in colorectal cancer. Genes Dev. 2017;31:370-382 pubmed publisher
  153. Dogan A, Demirci S, Apdik H, Bayrak O, Gulluoglu S, Tuysuz E, et al. A new hope for obesity management: Boron inhibits adipogenesis in progenitor cells through the Wnt/β-catenin pathway. Metabolism. 2017;69:130-142 pubmed publisher
  154. Domingues M, Martinez Sanz J, Papon L, Larue L, Mouawad L, Bonaventure J. Structure-based mutational analysis of ICAT residues mediating negative regulation of ?-catenin co-transcriptional activity. PLoS ONE. 2017;12:e0172603 pubmed publisher
  155. Shi G, Zheng X, Zhu C, Li B, Wang Y, Jiang S, et al. Evidence of the Role of R-Spondin 1 and Its Receptor Lgr4 in the Transmission of Mechanical Stimuli to Biological Signals for Bone Formation. Int J Mol Sci. 2017;18: pubmed publisher
  156. Balashova O, Visina O, Borodinsky L. Folate receptor 1 is necessary for neural plate cell apical constriction during Xenopus neural tube formation. Development. 2017;144:1518-1530 pubmed publisher
  157. Genovese N, Domeier T, Telugu B, Roberts R. Enhanced Development of Skeletal Myotubes from Porcine Induced Pluripotent Stem Cells. Sci Rep. 2017;7:41833 pubmed publisher
  158. Andersson Rolf A, Mustata R, Merenda A, Kim J, Perera S, Grego T, et al. One-step generation of conditional and reversible gene knockouts. Nat Methods. 2017;14:287-289 pubmed publisher
  159. Melchionna R, Iapicca P, Di Modugno F, Trono P, Sperduti I, Fassan M, et al. The pattern of hMENA isoforms is regulated by TGF-?1 in pancreatic cancer and may predict patient outcome. Oncoimmunology. 2016;5:e1221556 pubmed publisher
  160. Golden R, Chen B, Li T, Braun J, Manjunath H, Chen X, et al. An Argonaute phosphorylation cycle promotes microRNA-mediated silencing. Nature. 2017;542:197-202 pubmed publisher
  161. Barnes L, Saurat J, Kaya G. Senescent Atrophic Epidermis Retains Lrig1+ Stem Cells and Loses Wnt Signaling, a Phenotype Shared with CD44KO Mice. PLoS ONE. 2017;12:e0169452 pubmed publisher
  162. Zhu J, Wang P, Yu Z, Lai W, Cao Y, Huang P, et al. Advanced glycosylation end product promotes forkhead box O1 and inhibits Wnt pathway to suppress capacities of epidermal stem cells. Am J Transl Res. 2016;8:5569-5579 pubmed
  163. 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
  164. Shen X, Jia Z, D Alonzo D, Wang X, Bruder E, Emch F, et al. HECTD1 controls the protein level of IQGAP1 to regulate the dynamics of adhesive structures. Cell Commun Signal. 2017;15:2 pubmed publisher
  165. Le Dour C, Macquart C, Sera F, Homma S, Bonne G, Morrow J, et al. Decreased WNT/?-catenin signalling contributes to the pathogenesis of dilated cardiomyopathy caused by mutations in the lamin a/C gene. Hum Mol Genet. 2017;26:333-343 pubmed publisher
  166. Boylan K, Buchanan P, Manion R, Shukla D, Braumberger K, Bruggemeyer C, et al. The expression of Nectin-4 on the surface of ovarian cancer cells alters their ability to adhere, migrate, aggregate, and proliferate. Oncotarget. 2017;8:9717-9738 pubmed publisher
  167. Cao X, Shen L, Wu S, Yan C, Zhou Y, Xiong G, et al. Urban fine particulate matter exposure causes male reproductive injury through destroying blood-testis barrier (BTB) integrity. Toxicol Lett. 2017;266:1-12 pubmed publisher
  168. Xu D, Zhou P, Wang Y, Zhang Y, Zhang R, Zhang L, et al. miR-150 Suppresses the Proliferation and Tumorigenicity of Leukemia Stem Cells by Targeting the Nanog Signaling Pathway. Front Pharmacol. 2016;7:439 pubmed
  169. Chen Z, Tang C, Zhu Y, Xie M, He D, Pan Q, et al. TrpC5 regulates differentiation through the Ca2+/Wnt5a signalling pathway in colorectal cancer. Clin Sci (Lond). 2017;131:227-237 pubmed publisher
  170. Yousefi M, Li N, Nakauka Ddamba A, Wang S, Davidow K, Schoenberger J, et al. Msi RNA-binding proteins control reserve intestinal stem cell quiescence. J Cell Biol. 2016;215:401-413 pubmed
  171. Beyer S, Pontis J, Schirwis E, Battisti V, Rudolf A, Le Grand F, et al. Canonical Wnt signalling regulates nuclear export of Setdb1 during skeletal muscle terminal differentiation. Cell Discov. 2016;2:16037 pubmed
  172. JENKINS L, Singh P, Varadaraj A, Lee N, Shah S, Flores H, et al. Altering the Proteoglycan State of Transforming Growth Factor ? Type III Receptor (T?RIII)/Betaglycan Modulates Canonical Wnt/?-Catenin Signaling. J Biol Chem. 2016;291:25716-25728 pubmed
  173. Günther C, He G, Kremer A, Murphy J, Petrie E, Amann K, et al. The pseudokinase MLKL mediates programmed hepatocellular necrosis independently of RIPK3 during hepatitis. J Clin Invest. 2016;126:4346-4360 pubmed publisher
  174. Che D, Zhou T, Lan Y, Xie J, Gong H, Li C, et al. High glucose-induced epithelial-mesenchymal transition contributes to the upregulation of fibrogenic factors in retinal pigment epithelial cells. Int J Mol Med. 2016;38:1815-1822 pubmed publisher
  175. Gammons M, Rutherford T, Steinhart Z, Angers S, Bienz M. Essential role of the Dishevelled DEP domain in a Wnt-dependent human-cell-based complementation assay. J Cell Sci. 2016;129:3892-3902 pubmed
  176. King B, Boccalatte F, Moran Crusio K, Wolf E, Wang J, Kayembe C, et al. The ubiquitin ligase Huwe1 regulates the maintenance and lymphoid commitment of hematopoietic stem cells. Nat Immunol. 2016;17:1312-1321 pubmed publisher
  177. Park S, Yoon S, Kim H, Kim K. 90K Glycoprotein Promotes Degradation of Mutant ?-Catenin Lacking the ISGylation or Phosphorylation Sites in the N-terminus. Neoplasia. 2016;18:618-625 pubmed publisher
  178. Hubbs A, Fluharty K, Edwards R, Barnabei J, Grantham J, Palmer S, et al. Accumulation of Ubiquitin and Sequestosome-1 Implicate Protein Damage in Diacetyl-Induced Cytotoxicity. Am J Pathol. 2016;186:2887-2908 pubmed publisher
  179. Gallego Delgado J, Basu Roy U, Ty M, Alique M, Fernandez Arias C, Movila A, et al. Angiotensin receptors and ?-catenin regulate brain endothelial integrity in malaria. J Clin Invest. 2016;126:4016-4029 pubmed publisher
  180. Chang L, Chen T, Chen S, Chen C, Lee C, Wu S, et al. Identification of a new class of WNT1 inhibitor: Cancer cells migration, G-quadruplex stabilization and target validation. Oncotarget. 2016;7:67986-68001 pubmed publisher
  181. Wang H, Han X, Bretz C, Becker S, Gambhir D, Smith G, et al. Retinal pigment epithelial cell expression of active Rap 1a by scAAV2 inhibits choroidal neovascularization. Mol Ther Methods Clin Dev. 2016;3:16056 pubmed publisher
  182. Kong X, Liu F, Gao J. MiR-155 promotes epithelial-mesenchymal transition in hepatocellular carcinoma cells through the activation of PI3K/SGK3/β-catenin signaling pathways. Oncotarget. 2016;7:66051-66060 pubmed publisher
  183. Vardaki I, Ceder S, Rutishauser D, Baltatzis G, Foukakis T, Panaretakis T. Periostin is identified as a putative metastatic marker in breast cancer-derived exosomes. Oncotarget. 2016;7:74966-74978 pubmed publisher
  184. Wegwitz F, Lenfert E, Gerstel D, von Ehrenstein L, Einhoff J, Schmidt G, et al. CEACAM1 controls the EMT switch in murine mammary carcinoma in vitro and in vivo. Oncotarget. 2016;7:63730-63746 pubmed publisher
  185. Ramazzotti G, Billi A, Manzoli L, Mazzetti C, Ruggeri A, Erneux C, et al. IPMK and β-catenin mediate PLC-β1-dependent signaling in myogenic differentiation. Oncotarget. 2016;7:84118-84127 pubmed publisher
  186. Hofbauer P, Jung J, McArdle T, Ogle B. Simple Monolayer Differentiation of Murine Cardiomyocytes via Nutrient Deprivation-Mediated Activation of β-Catenin. Stem Cell Rev. 2016;12:731-743 pubmed
  187. Li L, Liu H, Wang C, Liu X, Hu F, Xie N, et al. Overexpression of ?-Catenin Induces Cisplatin Resistance in Oral Squamous Cell Carcinoma. Biomed Res Int. 2016;2016:5378567 pubmed publisher
  188. Gao S, Yang X, Wang M. Inhibitory effects of B?cell translocation gene 2 on skin cancer cells via the Wnt/??catenin signaling pathway. Mol Med Rep. 2016;14:3464-8 pubmed publisher
  189. Gerling M, Büller N, Kirn L, Joost S, Frings O, Englert B, et al. Stromal Hedgehog signalling is downregulated in colon cancer and its restoration restrains tumour growth. Nat Commun. 2016;7:12321 pubmed publisher
  190. Freddo A, Shoffner S, Shao Y, Taniguchi K, Grosse A, Guysinger M, et al. Coordination of signaling and tissue mechanics during morphogenesis of murine intestinal villi: a role for mitotic cell rounding. Integr Biol (Camb). 2016;8:918-28 pubmed publisher
  191. Fang F, Qin Y, Hao F, Li Q, Zhang W, Zhao C, et al. CD147 modulates androgen receptor activity through the Akt/Gsk-3?/?-catenin/AR pathway in prostate cancer cells. Oncol Lett. 2016;12:1124-1128 pubmed
  192. Jiang S, Chen G, Feng L, Jiang Z, Yu M, Bao J, et al. Disruption of kif3a results in defective osteoblastic differentiation in dental mesenchymal stem/precursor cells via the Wnt signaling pathway. Mol Med Rep. 2016;14:1891-900 pubmed publisher
  193. Cantú A, Altshuler Keylin S, Laird D. Discrete somatic niches coordinate proliferation and migration of primordial germ cells via Wnt signaling. J Cell Biol. 2016;214:215-29 pubmed publisher
  194. Zhang Q, Liu S, Parajuli K, Zhang W, Zhang K, Mo Z, et al. Interleukin-17 promotes prostate cancer via MMP7-induced epithelial-to-mesenchymal transition. Oncogene. 2017;36:687-699 pubmed publisher
  195. Shriver M, Marimuthu S, Paul C, Geist J, Seale T, Konstantopoulos K, et al. Giant obscurins regulate the PI3K cascade in breast epithelial cells via direct binding to the PI3K/p85 regulatory subunit. Oncotarget. 2016;7:45414-45428 pubmed publisher
  196. Fagnocchi L, Cherubini A, Hatsuda H, Fasciani A, Mazzoleni S, Poli V, et al. A Myc-driven self-reinforcing regulatory network maintains mouse embryonic stem cell identity. Nat Commun. 2016;7:11903 pubmed publisher
  197. Dianati E, Poiraud J, Weber Ouellette A, Plante I. Connexins, E-cadherin, Claudin-7 and ?-catenin transiently form junctional nexuses during the post-natal mammary gland development. Dev Biol. 2016;416:52-68 pubmed publisher
  198. Horrillo A, Porras G, Ayuso M, González Manchón C. Loss of endothelial barrier integrity in mice with conditional ablation of podocalyxin (Podxl) in endothelial cells. Eur J Cell Biol. 2016;95:265-76 pubmed publisher
  199. Guo Y, Wang L, Li B, Xu H, Yang J, Zheng L, et al. Wnt/?-catenin pathway transactivates microRNA-150 that promotes EMT of colorectal cancer cells by suppressing CREB signaling. Oncotarget. 2016;7:42513-42526 pubmed publisher
  200. Li N, Yousefi M, Nakauka Ddamba A, Tobias J, Jensen S, Morrisey E, et al. Heterogeneity in readouts of canonical wnt pathway activity within intestinal crypts. Dev Dyn. 2016;245:822-33 pubmed publisher
  201. Kuang J, Li L, Guo L, Su Y, Wang Y, Xu Y, et al. RNF8 promotes epithelial-mesenchymal transition of breast cancer cells. J Exp Clin Cancer Res. 2016;35:88 pubmed publisher
  202. 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
  203. Chesnokova V, Zonis S, Zhou C, Recouvreux M, Ben Shlomo A, Araki T, et al. Growth hormone is permissive for neoplastic colon growth. Proc Natl Acad Sci U S A. 2016;113:E3250-9 pubmed publisher
  204. Jacobsen A, Heijmans N, Verkaar F, Smit M, Heringa J, van Amerongen R, et al. Construction and Experimental Validation of a Petri Net Model of Wnt/β-Catenin Signaling. PLoS ONE. 2016;11:e0155743 pubmed publisher
  205. Lubeseder Martellato C, Hidalgo Sastre A, Hartmann C, Alexandrow K, Kamyabi Moghaddam Z, Sipos B, et al. Membranous CD24 drives the epithelial phenotype of pancreatic cancer. Oncotarget. 2016;7:49156-49168 pubmed publisher
  206. Illich D, Zhang M, Ursu A, Osorno R, Kim K, Yoon J, et al. Distinct Signaling Requirements for the Establishment of ESC Pluripotency in Late-Stage EpiSCs. Cell Rep. 2016;15:787-800 pubmed publisher
  207. Bie Q, Sun C, Gong A, Li C, Su Z, Zheng D, et al. Non-tumor tissue derived interleukin-17B activates IL-17RB/AKT/β-catenin pathway to enhance the stemness of gastric cancer. Sci Rep. 2016;6:25447 pubmed publisher
  208. Chen Y, Pan K, Wang P, Cao Z, Wang W, Wang S, et al. HBP1-mediated Regulation of p21 Protein through the Mdm2/p53 and TCF4/EZH2 Pathways and Its Impact on Cell Senescence and Tumorigenesis. J Biol Chem. 2016;291:12688-705 pubmed publisher
  209. Frank R, Komiyama N, Ryan T, Zhu F, O Dell T, Grant S. NMDA receptors are selectively partitioned into complexes and supercomplexes during synapse maturation. Nat Commun. 2016;7:11264 pubmed publisher
  210. Zhuang L, Yang Y, Ma X, Han B, Wang Z, Zhao Q, et al. MicroRNA-92b promotes hepatocellular carcinoma progression by targeting Smad7 and is mediated by long non-coding RNA XIST. Cell Death Dis. 2016;7:e2203 pubmed publisher
  211. Kumar A, Chalamalasetty R, Kennedy M, Thomas S, Inala S, Garriock R, et al. Zfp703 Is a Wnt/?-Catenin Feedback Suppressor Targeting the ?-Catenin/Tcf1 Complex. Mol Cell Biol. 2016;36:1793-802 pubmed publisher
  212. 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
  213. 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
  214. Kaur A, Webster M, Marchbank K, Behera R, Ndoye A, Kugel C, et al. sFRP2 in the aged microenvironment drives melanoma metastasis and therapy resistance. Nature. 2016;532:250-4 pubmed publisher
  215. Yu J, Berga S, Johnston MacAnanny E, Sidell N, Bagchi I, Bagchi M, et al. Endometrial Stromal Decidualization Responds Reversibly to Hormone Stimulation and Withdrawal. Endocrinology. 2016;157:2432-46 pubmed publisher
  216. Jun S, Jung Y, Suh H, Wang W, Kim M, Oh Y, et al. LIG4 mediates Wnt signalling-induced radioresistance. Nat Commun. 2016;7:10994 pubmed publisher
  217. Koussounadis A, Langdon S, Um I, Kay C, Francis K, Harrison D, et al. Dynamic modulation of phosphoprotein expression in ovarian cancer xenograft models. BMC Cancer. 2016;16:205 pubmed publisher
  218. Hirth S, Bühler A, Bührdel J, Rudeck S, Dahme T, Rottbauer W, et al. Paxillin and Focal Adhesion Kinase (FAK) Regulate Cardiac Contractility in the Zebrafish Heart. PLoS ONE. 2016;11:e0150323 pubmed publisher
  219. Beyaz S, Mana M, Roper J, Kedrin D, Saadatpour A, Hong S, et al. High-fat diet enhances stemness and tumorigenicity of intestinal progenitors. Nature. 2016;531:53-8 pubmed publisher
  220. Zhang M, Linghu E, Zhan Q, He T, Cao B, Brock M, et al. Methylation of DACT2 accelerates esophageal cancer development by activating Wnt signaling. Oncotarget. 2016;7:17957-69 pubmed publisher
  221. Katoh I, Fukunishi N, Fujimuro M, Kasai H, Moriishi K, Hata R, et al. Repression of Wnt/β-catenin response elements by p63 (TP63). Cell Cycle. 2016;15:699-710 pubmed publisher
  222. Bühler A, Kustermann M, Bummer T, Rottbauer W, Sandri M, Just S. Atrogin-1 Deficiency Leads to Myopathy and Heart Failure in Zebrafish. Int J Mol Sci. 2016;17: pubmed publisher
  223. Cui H, Wang S, Miao J, Fu Z, Feng F, Wu J, et al. CD147 regulates cancer migration via direct interaction with Annexin A2 and DOCK3-β-catenin-WAVE2 signaling. Oncotarget. 2016;7:5613-29 pubmed publisher
  224. Wang F, Feng Y, Li P, Wang K, Feng L, Liu Y, et al. RASSF10 is an epigenetically inactivated tumor suppressor and independent prognostic factor in hepatocellular carcinoma. Oncotarget. 2016;7:4279-97 pubmed publisher
  225. Goodnough L, Dinuoscio G, ATIT R. Twist1 contributes to cranial bone initiation and dermal condensation by maintaining Wnt signaling responsiveness. Dev Dyn. 2016;245:144-56 pubmed publisher
  226. Rafehi S, Ramos Valdes Y, Bertrand M, McGee J, Préfontaine M, Sugimoto A, et al. TGFβ signaling regulates epithelial-mesenchymal plasticity in ovarian cancer ascites-derived spheroids. Endocr Relat Cancer. 2016;23:147-59 pubmed publisher
  227. Uribe R, Buzzi A, Bronner M, Strobl Mazzulla P. Histone demethylase KDM4B regulates otic vesicle invagination via epigenetic control of Dlx3 expression. J Cell Biol. 2015;211:815-27 pubmed publisher
  228. Ye S, Zhang D, Cheng F, Wilson D, Mackay J, He K, et al. Wnt/β-catenin and LIF-Stat3 signaling pathways converge on Sp5 to promote mouse embryonic stem cell self-renewal. J Cell Sci. 2016;129:269-76 pubmed publisher
  229. Zhou R, Zhou X, Yin Z, Guo J, Hu T, Jiang S, et al. Tumor invasion and metastasis regulated by microRNA-184 and microRNA-574-5p in small-cell lung cancer. Oncotarget. 2015;6:44609-22 pubmed publisher
  230. Abshagen K, Senne M, Genz B, Thomas M, Vollmar B. Differential Effects of Axin2 Deficiency on the Fibrogenic and Regenerative Response in Livers of Bile Duct-Ligated Mice. Eur Surg Res. 2015;55:328-340 pubmed
  231. Ma S, Yang L, Niu T, Cheng C, Zhong L, Zheng M, et al. SKLB-677, an FLT3 and Wnt/β-catenin signaling inhibitor, displays potent activity in models of FLT3-driven AML. Sci Rep. 2015;5:15646 pubmed publisher
  232. Chakedis J, French R, Babicky M, Jaquish D, Howard H, Mose E, et al. A novel protein isoform of the RON tyrosine kinase receptor transforms human pancreatic duct epithelial cells. Oncogene. 2016;35:3249-59 pubmed publisher
  233. Lin K, Kao S, Lai C, Chen C, Wu C, Hsu H, et al. Tumor Suppressor Lzap Suppresses Wnt/β-Catenin Signaling to Promote Zebrafish Embryonic Ventral Cell Fates via the Suppression of Inhibitory Phosphorylation of Glycogen Synthase Kinase 3. J Biol Chem. 2015;290:29808-19 pubmed publisher
  234. Martínez Revollar G, Garay E, Martín Tapia D, Nava P, Huerta M, Lopez Bayghen E, et al. Heterogeneity between triple negative breast cancer cells due to differential activation of Wnt and PI3K/AKT pathways. Exp Cell Res. 2015;339:67-80 pubmed publisher
  235. Akhade V, Dighe S, Kataruka S, Rao M. Mechanism of Wnt signaling induced down regulation of mrhl long non-coding RNA in mouse spermatogonial cells. Nucleic Acids Res. 2016;44:387-401 pubmed publisher
  236. Xiong W, Zhang L, Yu L, Xie W, Man Y, Xiong Y, et al. Estradiol promotes cells invasion by activating β-catenin signaling pathway in endometriosis. Reproduction. 2015;150:507-16 pubmed publisher
  237. Basu S, Combe K, Kwiatkowski F, Caldefie Chézet F, Penault Llorca F, Bignon Y, et al. Cellular Expression of Cyclooxygenase, Aromatase, Adipokines, Inflammation and Cell Proliferation Markers in Breast Cancer Specimen. PLoS ONE. 2015;10:e0138443 pubmed publisher
  238. Leve F, Peres Moreira R, Binato R, Abdelhay E, Morgado Díaz J. LPA Induces Colon Cancer Cell Proliferation through a Cooperation between the ROCK and STAT-3 Pathways. PLoS ONE. 2015;10:e0139094 pubmed publisher
  239. Yokdang N, Hatakeyama J, Wald J, Simion C, Tellez J, Chang D, et al. LRIG1 opposes epithelial-to-mesenchymal transition and inhibits invasion of basal-like breast cancer cells. Oncogene. 2016;35:2932-47 pubmed publisher
  240. Bebee T, Park J, Sheridan K, Warzecha C, Cieply B, Rohacek A, et al. The splicing regulators Esrp1 and Esrp2 direct an epithelial splicing program essential for mammalian development. elife. 2015;4: pubmed publisher
  241. Reuther C, Heinzle V, Spampatti M, Vlotides G, de Toni E, Spöttl G, et al. Cabozantinib and Tivantinib, but Not INC280, Induce Antiproliferative and Antimigratory Effects in Human Neuroendocrine Tumor Cells in vitro: Evidence for 'Off-Target' Effects Not Mediated by c-Met Inhibition. Neuroendocrinology. 2016;103:383-401 pubmed publisher
  242. Zhang Y, Dai Q, Chen W, Jiang S, Chen S, Zhang Y, et al. Effects of acupuncture on cortical expression of Wnt3a, β-catenin and Sox2 in a rat model of traumatic brain injury. Acupunct Med. 2016;34:48-54 pubmed publisher
  243. Madison B, Jeganathan A, Mizuno R, Winslow M, Castells A, Cuatrecasas M, et al. Let-7 Represses Carcinogenesis and a Stem Cell Phenotype in the Intestine via Regulation of Hmga2. PLoS Genet. 2015;11:e1005408 pubmed publisher
  244. Yoshida N, Kinugasa T, Ohshima K, Yuge K, Ohchi T, Fujino S, et al. Analysis of Wnt and β-catenin Expression in Advanced Colorectal Cancer. Anticancer Res. 2015;35:4403-10 pubmed
  245. Evason K, Francisco M, Juric V, Balakrishnan S, Lopez Pazmino M, Gordan J, et al. Identification of Chemical Inhibitors of β-Catenin-Driven Liver Tumorigenesis in Zebrafish. PLoS Genet. 2015;11:e1005305 pubmed publisher
  246. Mathur R, Sehgal L, Braun F, Berkova Z, Romaguerra J, Wang M, et al. Targeting Wnt pathway in mantle cell lymphoma-initiating cells. J Hematol Oncol. 2015;8:63 pubmed publisher
  247. Ayadi M, Bouygues A, Ouaret D, Ferrand N, Chouaib S, Thiery J, et al. Chronic chemotherapeutic stress promotes evolution of stemness and WNT/beta-catenin signaling in colorectal cancer cells: implications for clinical use of WNT-signaling inhibitors. Oncotarget. 2015;6:18518-33 pubmed
  248. Bag S, Pal M, Chaudhary A, Das R, Paul R, Sengupta S, et al. Connecting cyto-nano-architectural attributes and epithelial molecular expression in oral submucous fibrosis progression to cancer. J Clin Pathol. 2015;68:605-13 pubmed publisher
  249. Tréhoux S, Lahdaoui F, Delpu Y, Renaud F, Leteurtre E, Torrisani J, et al. Micro-RNAs miR-29a and miR-330-5p function as tumor suppressors by targeting the MUC1 mucin in pancreatic cancer cells. Biochim Biophys Acta. 2015;1853:2392-403 pubmed publisher
  250. Remo A, Simeone I, Pancione M, Parcesepe P, Finetti P, Cerulo L, et al. Systems biology analysis reveals NFAT5 as a novel biomarker and master regulator of inflammatory breast cancer. J Transl Med. 2015;13:138 pubmed publisher
  251. Lin X, Xu W, Shao M, Fan Q, Wen G, Li C, et al. Shenling Baizhu San supresses colitis associated colorectal cancer through inhibition of epithelial-mesenchymal transition and myeloid-derived suppressor infiltration. BMC Complement Altern Med. 2015;15:126 pubmed publisher
  252. Fu Q, Chen Z, Gong X, Cai Y, Chen Y, Ma X, et al. β-Catenin expression is regulated by an IRES-dependent mechanism and stimulated by paclitaxel in human ovarian cancer cells. Biochem Biophys Res Commun. 2015;461:21-7 pubmed publisher
  253. Chen X, Liu X, Lang H, Zhang S, Luo Y, Zhang J. S100 calcium-binding protein A6 promotes epithelial-mesenchymal transition through β-catenin in pancreatic cancer cell line. PLoS ONE. 2015;10:e0121319 pubmed publisher
  254. Furihata T, Kawamatsu S, Ito R, Saito K, Suzuki S, Kishida S, et al. Hydrocortisone enhances the barrier properties of HBMEC/ciβ, a brain microvascular endothelial cell line, through mesenchymal-to-endothelial transition-like effects. Fluids Barriers CNS. 2015;12:7 pubmed publisher
  255. Song E, Yu W, Xiong X, Kuang X, Ai Y, Xiong X. Astrocyte elevated gene-1 promotes progression of cervical squamous cell carcinoma by inducing epithelial-mesenchymal transition via Wnt signaling. Int J Gynecol Cancer. 2015;25:345-55 pubmed publisher
  256. Dow L, Fisher J, O Rourke K, Muley A, Kastenhuber E, Livshits G, et al. Inducible in vivo genome editing with CRISPR-Cas9. Nat Biotechnol. 2015;33:390-394 pubmed publisher
  257. Walker M, Stopford C, Cederlund M, Fang F, Jahn C, Rabinowitz A, et al. FOXP1 potentiates Wnt/β-catenin signaling in diffuse large B cell lymphoma. Sci Signal. 2015;8:ra12 pubmed publisher
  258. Wei Y, Backlund L, Wegener G, Mathé A, Lavebratt C. Telomerase dysregulation in the hippocampus of a rat model of depression: normalization by lithium. Int J Neuropsychopharmacol. 2015;18:pyv002 pubmed publisher
  259. Traenkle B, Emele F, Anton R, Poetz O, Haeussler R, Maier J, et al. Monitoring interactions and dynamics of endogenous beta-catenin with intracellular nanobodies in living cells. Mol Cell Proteomics. 2015;14:707-23 pubmed publisher
  260. Gao B, Huang Q, Jie Q, Wang L, Zhang H, Liu J, et al. Dose-response estrogen promotes osteogenic differentiation via GPR40 (FFAR1) in murine BMMSCs. Biochimie. 2015;110:36-44 pubmed publisher
  261. Satelli A, Mitra A, Brownlee Z, Xia X, Bellister S, Overman M, et al. Epithelial-mesenchymal transitioned circulating tumor cells capture for detecting tumor progression. Clin Cancer Res. 2015;21:899-906 pubmed publisher
  262. 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
  263. Wang T, Chen Z, Zhu Y, Pan Q, Liu Y, Qi X, et al. Inhibition of transient receptor potential channel 5 reverses 5-Fluorouracil resistance in human colorectal cancer cells. J Biol Chem. 2015;290:448-56 pubmed publisher
  264. Vestergaard M, Awan A, Warzecha C, Christensen S, Andersen C. Immunofluorescence Microscopy and mRNA Analysis of Human Embryonic Stem Cells (hESCs) Including Primary Cilia Associated Signaling Pathways. Methods Mol Biol. 2016;1307:123-40 pubmed publisher
  265. Matsuyama M, Nomori A, Nakakuni K, Shimono A, Fukushima M. Secreted Frizzled-related protein 1 (Sfrp1) regulates the progression of renal fibrosis in a mouse model of obstructive nephropathy. J Biol Chem. 2014;289:31526-33 pubmed publisher
  266. Valkenburg K, Yu X, De Marzo A, Spiering T, Matusik R, Williams B. Activation of Wnt/β-catenin signaling in a subpopulation of murine prostate luminal epithelial cells induces high grade prostate intraepithelial neoplasia. Prostate. 2014;74:1506-20 pubmed publisher
  267. Lu G, Zhang Q, Huang Y, Song J, Tomaino R, Ehrenberger T, et al. Phosphorylation of ETS1 by Src family kinases prevents its recognition by the COP1 tumor suppressor. Cancer Cell. 2014;26:222-34 pubmed publisher
  268. Xie Y, Lu W, Liu S, Yang Q, Carver B, Li E, et al. Crosstalk between nuclear MET and SOX9/?-catenin correlates with castration-resistant prostate cancer. Mol Endocrinol. 2014;28:1629-39 pubmed publisher
  269. Ostapoff K, Cenik B, Wang M, Ye R, Xu X, Nugent D, et al. Neutralizing murine TGF?R2 promotes a differentiated tumor cell phenotype and inhibits pancreatic cancer metastasis. Cancer Res. 2014;74:4996-5007 pubmed publisher
  270. Coulson Thomas V, Gesteira T, Esko J, KAO W. Heparan sulfate regulates hair follicle and sebaceous gland morphogenesis and homeostasis. J Biol Chem. 2014;289:25211-26 pubmed publisher
  271. Herrera A, Saade M, Menendez A, Marti E, Pons S. Sustained Wnt/?-catenin signalling causes neuroepithelial aberrations through the accumulation of aPKC at the apical pole. Nat Commun. 2014;5:4168 pubmed publisher
  272. Otani K, Dong Y, Li X, Lu J, Zhang N, Xu L, et al. Odd-skipped related 1 is a novel tumour suppressor gene and a potential prognostic biomarker in gastric cancer. J Pathol. 2014;234:302-15 pubmed publisher
  273. Konsavage W, Yochum G. The myc 3' wnt-responsive element suppresses colonic tumorigenesis. Mol Cell Biol. 2014;34:1659-69 pubmed publisher
  274. Hilliard S, Yao X, El Dahr S. Mdm2 is required for maintenance of the nephrogenic niche. Dev Biol. 2014;387:1-14 pubmed publisher
  275. Knoblich K, Wang H, Sharma C, Fletcher A, Turley S, Hemler M. Tetraspanin TSPAN12 regulates tumor growth and metastasis and inhibits ?-catenin degradation. Cell Mol Life Sci. 2014;71:1305-14 pubmed publisher
  276. Nakamura I, Fernández Barrena M, Ortiz Ruiz M, Almada L, Hu C, Elsawa S, et al. Activation of the transcription factor GLI1 by WNT signaling underlies the role of SULFATASE 2 as a regulator of tissue regeneration. J Biol Chem. 2013;288:21389-98 pubmed publisher
  277. Okumura N, Akutsu H, Sugawara T, Miura T, Takezawa Y, Hosoda A, et al. ?-catenin functions pleiotropically in differentiation and tumorigenesis in mouse embryo-derived stem cells. PLoS ONE. 2013;8:e63265 pubmed publisher
  278. Nair M, Nagamori I, Sun P, Mishra D, Rhéaume C, Li B, et al. Nuclear regulator Pygo2 controls spermiogenesis and histone H3 acetylation. Dev Biol. 2008;320:446-55 pubmed publisher