This is a Validated Antibody Database (VAD) review about bovine light chain 3, based on 315 published articles (read how Labome selects the articles), using light chain 3 antibody in all methods. It is aimed to help Labome visitors find the most suited light chain 3 antibody. Please note the number of articles fluctuates since newly identified citations are added and citations for discontinued catalog numbers are removed regularly.
Novus Biologicals
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4a
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used in western blot on human samples (fig 4a). Cell Death Dis (2020) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig 5s2b
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB600-1384) was used in western blot on mouse samples at 1:1000 (fig 5s2b). elife (2020) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 2a
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on mouse samples (fig 2a). Cell Death Dis (2019) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; loading ...; fig s2a
  • western blot; human; loading ...; fig 2a
Novus Biologicals light chain 3 antibody (NOVUS, NB100-2220) was used in immunocytochemistry on human samples (fig s2a) and in western blot on human samples (fig 2a). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:20,000; loading ...; fig 6h
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used in western blot on mouse samples at 1:20,000 (fig 6h). Autophagy (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 5a
Novus Biologicals light chain 3 antibody (Novus, NB600-1384) was used in western blot on human samples (fig 5a). Nucleic Acids Res (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:2000; loading ...; fig 2a
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used in western blot on human samples at 1:2000 (fig 2a). J Cancer (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 3g
Novus Biologicals light chain 3 antibody (Novus Biologicals, 100-2220) was used in western blot on human samples (fig 3g). Front Mol Neurosci (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 8c
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples at 1:1000 (fig 8c). Nat Commun (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 5a
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used in western blot on human samples (fig 5a). Autophagy (2019) ncbi
domestic rabbit polyclonal
  • western blot; guinea pig; loading ...; fig 7b
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on guinea pig samples (fig 7b). Biomed Res Int (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4b
Novus Biologicals light chain 3 antibody (Novus, NB600-1384) was used in western blot on human samples (fig 4b). Oncogene (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 1a
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples (fig 1a). Autophagy (2018) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig s8d
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB600-1384) was used in western blot on mouse samples (fig s8d). J Clin Invest (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 3c
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples (fig 3c). PLoS ONE (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:3000; loading ...; fig 1b
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples at 1:3000 (fig 1b). Nat Commun (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples (fig 2a). Front Immunol (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 6a
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples (fig 6a). Cell Death Differ (2018) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:3000; loading ...; fig 4b
Novus Biologicals light chain 3 antibody (Novus Biological, NB100-2220) was used in western blot on mouse samples at 1:3000 (fig 4b). J Lipid Res (2018) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:2000; fig 5g
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on mouse samples at 1:2000 (fig 5g). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 2f
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on mouse samples (fig 2f). J Clin Invest (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 2c
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on mouse samples (fig 2c). PLoS Genet (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:10,000; loading ...; fig 1f
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples at 1:10,000 (fig 1f). J Biol Chem (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 2c
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used in western blot on mouse samples (fig 2c). Cell Immunol (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig e4d
  • western blot; mouse; loading ...; fig 1a
In order to research the effect of polyglutamine tracts on the autophagy process, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB 100-2220) was used in western blot on human samples (fig e4d) and in western blot on mouse samples (fig 1a). Nature (2017) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; rat; 1:200; loading ...; fig 3
  • western blot; rat; 1:1000; loading ...; fig 1a
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB600-1384) was used in immunohistochemistry on rat samples at 1:200 (fig 3) and in western blot on rat samples at 1:1000 (fig 1a). Am J Transl Res (2017) ncbi
domestic rabbit polyclonal
  • western blot; zebrafish ; fig 3d
  • western blot; human; loading ...; fig 5b
Novus Biologicals light chain 3 antibody (Novus, NB 100-2220) was used in western blot on zebrafish samples (fig 3d) and in western blot on human samples (fig 5b). Cell Chem Biol (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig 4d
In order to examine haploinsufficiency network analyses to identify which somatic copy-number alteration patterns are most disruptive in ovarian cancer, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on mouse samples at 1:1000 (fig 4d). Nat Commun (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 8c
In order to show that quercetin inhibits the PI3K/AKT/mTOR and STAT3 pathways in primary effusion lymphoma, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples at 1:1000 (fig 8c). J Nutr Biochem (2017) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:200; loading ...; fig 5a
In order to show that a degenerative phenotype exhibiting mutant pendrin aggregates and increased susceptibility to cellular stresses in cochlear epithelial cells induced from patient-derived induced pluripotent stem cells, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-222055) was used in immunocytochemistry on human samples at 1:200 (fig 5a). Cell Rep (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:2000; loading ...; fig 1b
In order to recognize the inner mitochondrial membrane protein, prohibitin 2, as a crucial mitophagy receptor involved in targeting mitochondria for autophagic degradation, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples at 1:2000 (fig 1b). Cell (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:3000; loading ...; fig 3a
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples at 1:3000 (fig 3a). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 3d
In order to test if BAG3 protects the heart from reperfusion injury, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB00-2220) was used in western blot on mouse samples (fig 3d). JCI Insight (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig 1f
In order to study the role of PEX13 in autophagy, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on mouse samples at 1:1000 (fig 1f). EMBO Rep (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 1h
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples (fig 1h). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:2000; loading ...; fig 5a
In order to assess the contribution of platelet-derived growth factor in morphine-mediated synaptic alterations, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on mouse samples at 1:2000 (fig 5a). J Cell Biol (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 3f
In order to identify autophagy-inducing phytochemicals, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on mouse samples (fig 3f). Autophagy (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig 3a
In order to discuss regulation of mutant huntingtin by transcription factor EB, Novus Biologicals light chain 3 antibody (Novus, NB600-1384) was used in western blot on mouse samples at 1:1000 (fig 3a). J Huntingtons Dis (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; human; loading ...; fig 5a
In order to discuss factors that contribute to the decrease mobility of patients with lower extremity peripheral artery disease, Novus Biologicals light chain 3 antibody (Novus Biologicals, NN100-2220) was used in immunohistochemistry on human samples (fig 5a). J Transl Med (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 5b
Novus Biologicals light chain 3 antibody (Novus biological, NB100-2220) was used in western blot on human samples (fig 5b). Front Cell Infect Microbiol (2016) ncbi
domestic rabbit polyclonal
  • western blot; rat; 1:1000; loading ...
In order to investigate 2-methylcitrate-induced brain toxicity, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on rat samples at 1:1000. Mol Genet Metab (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4e
In order to explore how Ehrlichia chaffeensis survives and commandeers the host cell, Novus Biologicals light chain 3 antibody (NovusBio, NB100-2220) was used in western blot on human samples (fig 4e). Autophagy (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 1e
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used in western blot on human samples (fig 1e). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:5000; fig 6
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used in western blot on mouse samples at 1:5000 (fig 6). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 3
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used in western blot on human samples (fig 3). elife (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; fig 3
  • western blot; human; 1:1000; fig 3
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in immunocytochemistry on human samples (fig 3) and in western blot on human samples at 1:1000 (fig 3). Drug Des Devel Ther (2016) ncbi
domestic rabbit polyclonal
  • western blot; human
In order to analyze prevention of BECN2-mediated drug tolerance to cannabioids by autophagy activation by novel inducers, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples . Autophagy (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:400; loading ...; fig 2d
  • western blot; human; 1:1000; loading ...; fig 5b
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in immunocytochemistry on human samples at 1:400 (fig 2d) and in western blot on human samples at 1:1000 (fig 5b). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 5
Novus Biologicals light chain 3 antibody (Novus Biologicals, 600-1384) was used in western blot on human samples (fig 5). J Immunol (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 6
In order to assess the correlation with levels of phosphotau and autophagy-related proteins and tau inclusions in PSP, Pick, and AD disease and levels of a key component of clathrin-mediated endocytosis, PICALM, Novus Biologicals light chain 3 antibody (Novusbio, NB600-1384) was used in western blot on human samples (fig 6). Neurobiol Dis (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - paraffin section; human; 1:4000; fig 3
  • western blot; human; loading ...; fig 1a
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB600-1384) was used in immunohistochemistry - paraffin section on human samples at 1:4000 (fig 3) and in western blot on human samples (fig 1a). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig 1a
In order to determine the effects of modulating autophagy in a mouse model of metastatic cancer, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on mouse samples at 1:1000 (fig 1a). J Pharmacol Exp Ther (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 4b
In order to investigate the epigenetic regulation of Beclin-1, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples (fig 4b). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; rat; fig 10
  • immunocytochemistry; mouse; fig 7
  • western blot; mouse; fig 1
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on rat samples (fig 10), in immunocytochemistry on mouse samples (fig 7) and in western blot on mouse samples (fig 1). Autophagy (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 6
Novus Biologicals light chain 3 antibody (Novus Biological, NB100-2220) was used in western blot on mouse samples (fig 6). Autophagy (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; fig 2
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB600-1384) was used in western blot on human samples at 1:1000 (fig 2). elife (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 6
In order to characterize the effect of dose-dependent autophagy and titanium dioxide nanoparticles in human HaCaT cells at non-cytotoxic levels, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples (fig 6). J Nanobiotechnology (2016) ncbi
domestic rabbit polyclonal
  • western blot; zebrafish ; 1:2000; fig s2
In order to study impairment of autophagy and protein insufficiency due to FLNC myofibrillar myopathy, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on zebrafish samples at 1:2000 (fig s2). Hum Mol Genet (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on mouse samples . Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; fig s1
  • western blot; mouse; 1:1000; fig 6
Novus Biologicals light chain 3 antibody (Novus, NB 100-2220) was used in western blot on human samples at 1:1000 (fig s1) and in western blot on mouse samples at 1:1000 (fig 6). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 3
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used in western blot on human samples (fig 3). J Neurosci (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:10,000; fig 1
In order to investigate impairment of autophagy flux and induction of cell death independent of necroptosis and apoptosis by dual PI-3 kinase/mTOR inhibition, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples at 1:10,000 (fig 1). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:2000; fig 3
In order to determine how mitochondrial homeostasis is affected by ubiquitin-mediated regulation of E3 ligase GP78 by MGRN1 in trans, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in western blot on human samples at 1:2000 (fig 3). J Cell Sci (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:5000; fig 7
In order to test nuclear LC3 and how it associates with slowly diffusing complexes that interact with the nucleolus, Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used in western blot on human samples at 1:5000 (fig 7). Traffic (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - frozen section; mouse; 1:100; loading ...; fig 2e
In order to develop the MitoTimer protein to study individual mitochondria, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in immunohistochemistry - frozen section on mouse samples at 1:100 (fig 2e). J Mol Cell Cardiol (2016) ncbi
domestic rabbit polyclonal
In order to study the fusion between lysosomes and amphisomes/MVBs regulated by mahogunin via ubiquitination of TSG101, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used . Cell Death Dis (2015) ncbi
domestic rabbit polyclonal
In order to determine the role of autophagy in the regulation of liver regeneration after partial hepatectomy, Novus Biologicals light chain 3 antibody (Novus Biological, NB100?C2220) was used . Sci Rep (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus, NB600-1384) was used . Mol Pharmacol (2015) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - paraffin section; mouse; 1:500; loading ...; fig s4b
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used in immunohistochemistry - paraffin section on mouse samples at 1:500 (fig s4b). Kidney Int (2016) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220SS) was used . Autophagy (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus, NB600-1384) was used . PLoS ONE (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used . PLoS ONE (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biological, NB-100-2220) was used . Oncotarget (2015) ncbi
domestic rabbit polyclonal
In order to characterize immunogenic PEL cell death, revertion of PEL-induced immune suppression, and stimulation of DCs all triggered by capsaicin, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220SS) was used . Oncotarget (2015) ncbi
domestic rabbit polyclonal
In order to determine how starvation-induced autophagy is promoted by transcriptional regulation of Annexin A2, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used . Nat Commun (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used . Biochim Biophys Acta (2015) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 2
Novus Biologicals light chain 3 antibody (Novus Biologicals, 100-2220) was used in western blot on human samples (fig 2). Leukemia (2016) ncbi
domestic rabbit polyclonal
  • western blot; rat; fig 5
In order to analyze the enhanced clearance of phosphorylated tau in primary neurons by epigallocatechin-3-gallate, Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used in western blot on rat samples (fig 5). Nutr Neurosci (2016) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used . Sci Rep (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals;, NB600- 1384) was used . Nature (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used . Life Sci (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used . PLoS Pathog (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals, 100-2220) was used . PLoS ONE (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus, NB600-1384) was used . Nat Cell Biol (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used . Cell Signal (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (novus Biologicals, NB100-2220) was used . Nat Commun (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB600-1384) was used . Nat Commun (2015) ncbi
domestic rabbit polyclonal
In order to describe the development of a closed-body model of spinal cord injury in mice, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB600-1384) was used . Exp Neurol (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used . Autophagy (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus, NB600-1384) was used . Toxicol Lett (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used . Nat Neurosci (2015) ncbi
domestic rabbit polyclonal
In order to investigate how endolysosomal dysfunction causes Parkinson's disease-related neurodegeneration, Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used . J Neurosci (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus, NB600-1384) was used . Nat Genet (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus, NB600-1384) was used . Oncogene (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus, NB600-1384) was used . Sci Signal (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used . Nat Cell Biol (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used . Autophagy (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used . Autophagy (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biologicals, NB100-2220) was used . Autophagy (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus Biological, NB100-2220) was used . Autophagy (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (novus Biologicals, NB600-1384) was used . Autophagy (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (NOVUS Biologicals, NB100-2220) was used . PLoS ONE (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used . J Biol Chem (2015) ncbi
domestic rabbit polyclonal
Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used . Cell Death Dis (2015) ncbi
domestic rabbit polyclonal
In order to study the contribution of mitochondrial function to idiopathic pulmonary fibrosis pathogenesis, Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used . J Clin Invest (2015) ncbi
domestic rabbit polyclonal
In order to determine how Alzheimer disease phenotypes are exacerbated and neurodegeneration occurs by DNA polymerase beta deficiency, Novus Biologicals light chain 3 antibody (Novus, NB100-2220) was used . Nucleic Acids Res (2015) ncbi
Invitrogen
domestic rabbit polyclonal
Invitrogen light chain 3 antibody (Thermo Fisher, PA1-16930) was used . Nature (2018) ncbi
domestic rabbit polyclonal
  • western blot; bovine; 1:500; fig 1
In order to study the mammary gland during the dry period and the effect of heat stress on markers of autophagy, Invitrogen light chain 3 antibody (Thermo Scientific, PA1-16930) was used in western blot on bovine samples at 1:500 (fig 1). J Dairy Sci (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; fig 3
In order to utilize deep RNA profiling to identify molecular clock genes and CLOCK as pathophysiological signatures found in collagen VI myopathy, Invitrogen light chain 3 antibody (Thermo Scientific, PA1-16930) was used in western blot on mouse samples at 1:1000 (fig 3). J Cell Sci (2016) ncbi
domestic rabbit polyclonal
In order to assess the effects of an autophagy inducer on col6a1 knock out mice, Invitrogen light chain 3 antibody (Thermo Scientific, PA1-C16930) was used . Autophagy (2015) ncbi
domestic rabbit polyclonal
In order to study the expression of HSPB8 and BAG3 in non-pregnant and pregnant rat myometrium, Invitrogen light chain 3 antibody (Thermo Scientific, PA1-46286) was used . Biol Reprod (2015) ncbi
domestic rabbit polyclonal
In order to characterize autophagy in zebrafish, Invitrogen light chain 3 antibody (Thermo Scientific, PA1-46286) was used . Methods (2015) ncbi
Cell Signaling Technology
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000; loading ...; fig 4b
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in western blot on human samples at 1:1000 (fig 4b). Nat Commun (2020) ncbi
domestic rabbit monoclonal (D11)
  • western blot; rat; 1:1000; loading ...; fig 3a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on rat samples at 1:1000 (fig 3a). Metabolism (2020) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig s3c
Cell Signaling Technology light chain 3 antibody (CST, 2775) was used in western blot on human samples at 1:1000 (fig s3c). Nat Commun (2020) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - paraffin section; rat; loading ...; fig 2a
  • western blot; rat; 1:1000; loading ...; fig 2e, 4e
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunohistochemistry - paraffin section on rat samples (fig 2a) and in western blot on rat samples at 1:1000 (fig 2e, 4e). Biosci Rep (2020) ncbi
domestic rabbit polyclonal
  • western blot; zebrafish ; 1:1000; loading ...; fig 3a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775S) was used in western blot on zebrafish samples at 1:1000 (fig 3a). Sci Rep (2020) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig s3a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples at 1:1000 (fig s3a). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - frozen section; human; loading ...; fig 5a
  • immunocytochemistry; human; loading ...; fig 3e
  • immunohistochemistry - paraffin section; rat; loading ...; fig 1d
Cell Signaling Technology light chain 3 antibody (Cell signaling, 2775S) was used in immunohistochemistry - frozen section on human samples (fig 5a), in immunocytochemistry on human samples (fig 3e) and in immunohistochemistry - paraffin section on rat samples (fig 1d). J Clin Med (2019) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000; loading ...; fig 3e
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples at 1:1000 (fig 3e). elife (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:200; loading ...; fig 4e
Cell Signaling Technology light chain 3 antibody (CST, 2775) was used in western blot on mouse samples at 1:200 (fig 4e). Aging Cell (2019) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; loading ...; fig 1b
  • western blot; human; loading ...; fig 1g
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunocytochemistry on human samples (fig 1b) and in western blot on human samples (fig 1g). Sci Adv (2019) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; loading ...; fig 3f
  • western blot; human; loading ...; fig 3g
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868S) was used in immunocytochemistry on human samples (fig 3f) and in western blot on human samples (fig 3g). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 6a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples (fig 6a). Antioxid Redox Signal (2019) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig s8k
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in western blot on human samples (fig s8k). Sci Adv (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:500; loading ...; fig 2b
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples at 1:500 (fig 2b). Nat Commun (2019) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; mouse; 1:200; loading ...; fig 6f
  • western blot; mouse; 1:500; loading ...; fig 8a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on mouse samples at 1:200 (fig 6f) and in western blot on mouse samples at 1:500 (fig 8a). J Neurosci (2019) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...
Cell Signaling Technology light chain 3 antibody (Cell signaling, 3868) was used in western blot on human samples . elife (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2c
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples (fig 2c). Front Endocrinol (Lausanne) (2019) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; loading ...; fig e3b
  • western blot; human; loading ...; fig 1b
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunocytochemistry on human samples (fig e3b) and in western blot on human samples (fig 1b). Nature (2019) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; loading ...; fig e3b
  • western blot; human; loading ...; fig 1b
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on human samples (fig e3b) and in western blot on human samples (fig 1b). Nature (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 1d
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775s) was used in western blot on human samples at 1:1000 (fig 1d). J Neurosci (2019) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; loading ...; fig 4c
  • western blot; human; loading ...; fig 1b
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on human samples (fig 4c) and in western blot on human samples (fig 1b). Biochem Biophys Res Commun (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 5a
Cell Signaling Technology light chain 3 antibody (cst, 2775) was used in western blot on human samples (fig 5a). PLoS ONE (2018) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - paraffin section; human; loading ...; fig s1a, s1b
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunohistochemistry - paraffin section on human samples (fig s1a, s1b). Oncogene (2019) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 5e
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 2775) was used in western blot on mouse samples (fig 5e). FASEB J (2019) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig s6a
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 2775) was used in western blot on human samples (fig s6a). J Clin Invest (2018) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:2000; loading ...; fig 6f
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 2775) was used in western blot on mouse samples at 1:2000 (fig 6f). Autophagy (2018) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; fig s3a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples at 1:1000 (fig s3a). Nat Cell Biol (2018) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig 1c
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in western blot on human samples (fig 1c). Oncoimmunology (2018) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 1e
Cell Signaling Technology light chain 3 antibody (CST, 2775S) was used in western blot on mouse samples (fig 1e). Cell Death Dis (2018) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; mouse; 1:200; loading ...; fig 1h
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on mouse samples at 1:200 (fig 1h). Science (2018) ncbi
domestic rabbit monoclonal (D11)
  • western blot; mouse; 1:1000; fig 3a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on mouse samples at 1:1000 (fig 3a). Cell Immunol (2018) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; loading ...; fig 4d
  • western blot; human; loading ...; fig 4i
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technologies, 3868) was used in immunocytochemistry on human samples (fig 4d) and in western blot on human samples (fig 4i). Dev Cell (2018) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:200; loading ...; fig 5h
  • western blot; human; 1:1000; loading ...; fig 5a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunocytochemistry on human samples at 1:200 (fig 5h) and in western blot on human samples at 1:1000 (fig 5a). Am J Pathol (2018) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; loading ...; fig s7b
  • western blot; human; loading ...; fig 5a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunocytochemistry on human samples (fig s7b) and in western blot on human samples (fig 5a). Autophagy (2018) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; 1:100; loading ...; fig 6d
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on human samples at 1:100 (fig 6d). EMBO J (2018) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse; 1:100; loading ...; fig 4g
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 27755) was used in immunocytochemistry on mouse samples at 1:100 (fig 4g). J Biol Chem (2018) ncbi
domestic rabbit monoclonal (D11)
  • western blot; mouse; 1:1000; loading ...; fig 5d
  • western blot; human; 1:1000; loading ...; fig 5c
In order to study induction of cell death by low frequency magnetic fields, Cell Signaling Technology light chain 3 antibody (Cell Signalling, 3868) was used in western blot on mouse samples at 1:1000 (fig 5d) and in western blot on human samples at 1:1000 (fig 5c). Sci Rep (2017) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig 3a
  • western blot; mouse; loading ...; fig 1a
Cell Signaling Technology light chain 3 antibody (cell signalling, 3868) was used in western blot on human samples (fig 3a) and in western blot on mouse samples (fig 1a). Genes Dev (2017) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:300; loading ...; fig s4e
In order to study the involvement of deacetylase HDAC6 in Tau pathology, Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 2775s) was used in immunocytochemistry on human samples at 1:300 (fig s4e). Cell Rep (2017) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000; loading ...; fig 2a
In order to research the effect of methyl-beta-cyclodextrin on autophagy flux in Niemann-Pick C1-deficient cells, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868s) was used in western blot on human samples at 1:1000 (fig 2a). Autophagy (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 1f
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples at 1:1000 (fig 1f). Oncotarget (2017) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000; loading ...; fig 3e
In order to study the effect of environmental and endogenous Toxins on BRCA2 haploinsufficiency and genome instability, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples at 1:1000 (fig 3e). Cell (2017) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - paraffin section; human; 1:800; loading ...; fig 6c
  • western blot; human; 1:1000; fig 3b
In order to investigate the involvement of OSGIN1 in smoking-induced autophagy in the airway epithelium, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunohistochemistry - paraffin section on human samples at 1:800 (fig 6c) and in western blot on human samples at 1:1000 (fig 3b). Autophagy (2017) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - paraffin section; human; 1:200; loading ...; fig 1d
  • western blot; human; 1:1000; loading ...; fig 3h
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868S) was used in immunohistochemistry - paraffin section on human samples at 1:200 (fig 1d) and in western blot on human samples at 1:1000 (fig 3h). Mol Cell (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1500; loading ...; fig 1b
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 2775S) was used in western blot on human samples at 1:1500 (fig 1b). Mol Cell (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Cell Signaling Technology light chain 3 antibody (CST, 2775S) was used in western blot on human samples (fig 2a). J Clin Invest (2017) ncbi
domestic rabbit polyclonal
  • flow cytometry; human; loading ...; fig 10c
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in flow cytometry on human samples (fig 10c). Gene (2017) ncbi
domestic rabbit polyclonal
  • western blot; African green monkey; loading ...; fig 9a
  • western blot; mouse; fig 5a
In order to investigate the role of inositol-requiring enzyme-1 alpha in glomerular capillary integrity and autophagy in podocytes, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775S) was used in western blot on African green monkey samples (fig 9a) and in western blot on mouse samples (fig 5a). Mol Biol Cell (2017) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; loading ...; fig 6
Cell Signaling Technology light chain 3 antibody (cell signalling, 3868) was used in immunocytochemistry on human samples (fig 6). Neoplasia (2017) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; loading ...; fig s3a
  • western blot; human; loading ...; fig 2b
In order to study the synergistic antitumor effect of simultaneously targeting CD47 and autophagy in non-small cell lung cancer, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on human samples (fig s3a) and in western blot on human samples (fig 2b). Cancer Immunol Res (2017) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig 5a
In order to establish the role of Nedd4 in Japanese encephalitis virus propagation, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig 5a). Sci Rep (2017) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:1000; loading ...; fig s8a
In order to identify the protein ATM as a target for senescence alleviation through chemical screen, Cell Signaling Technology light chain 3 antibody (Cell signaling, 2775) was used in immunocytochemistry on human samples at 1:1000 (fig s8a). Nat Chem Biol (2017) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig 8a
In order to investigate Rab7 and Arl8b crosstalk, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig 8a). J Cell Biol (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 6e
In order to report the physiological role of sarcolipin upregulation in muscle myopathy, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples (fig 6e). PLoS ONE (2017) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; mouse; fig 2c
  • western blot; mouse; loading ...; fig 8a
In order to describe the effect of metformin on endoplasmic reticulum stress and autophagy in glucose-starved micro-vascular endothelial cells, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on mouse samples (fig 2c) and in western blot on mouse samples (fig 8a). Biochem Pharmacol (2017) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig 2a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig 2a). Sci Rep (2017) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig 4b
Cell Signaling Technology light chain 3 antibody (Cell Signalling, D11) was used in western blot on human samples (fig 4b). Tumour Biol (2017) ncbi
domestic rabbit monoclonal (D11)
  • western blot; mouse; fig 3D
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on mouse samples (fig 3D). Sci Rep (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig 7a
  • western blot; human; 1:1000; loading ...; fig 1d
In order to analyze a small molecule library for novel autophagy-enhancing factors that inhibit the myotubularin-related phosphatase MTMR14/Jumpy, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples at 1:1000 (fig 7a) and in western blot on human samples at 1:1000 (fig 1d). Sci Rep (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2b
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 2775) was used in western blot on human samples (fig 2b). Nature (2017) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; loading ...; fig 1a
  • western blot; human; loading ...; fig 1s1g
Cell Signaling Technology light chain 3 antibody (CST, 2775) was used in immunocytochemistry on human samples (fig 1a) and in western blot on human samples (fig 1s1g). elife (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:2000; loading ...; fig 1a
  • immunocytochemistry; mouse; loading ...; fig 6b
  • western blot; mouse; 1:2000; loading ...; fig 6a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples at 1:2000 (fig 1a), in immunocytochemistry on mouse samples (fig 6b) and in western blot on mouse samples at 1:2000 (fig 6a). Nucleic Acids Res (2017) ncbi
domestic rabbit monoclonal (D11)
  • western blot; mouse; loading ...; fig 4c
  • western blot; human; loading ...; fig 4a,4d,4H,4i,,5F
Cell Signaling Technology light chain 3 antibody (CST, 3868) was used in western blot on mouse samples (fig 4c) and in western blot on human samples (fig 4a,4d,4H,4i,,5F). Sci Rep (2017) ncbi
domestic rabbit polyclonal
  • immunoprecipitation; bovine; loading ...; fig 6a
  • western blot; bovine; 1:1000; loading ...; fig 5a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 27755) was used in immunoprecipitation on bovine samples (fig 6a) and in western blot on bovine samples at 1:1000 (fig 5a). Vet Comp Oncol (2017) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 2g
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig 2g). Hum Mol Genet (2017) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse; loading ...; fig 4b
  • western blot; mouse; loading ...; fig 4a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunocytochemistry on mouse samples (fig 4b) and in western blot on mouse samples (fig 4a). Autophagy (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 5a
In order to research the role of polo like kinase 1 in MTOR complex 1 and autophagy, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples (fig 5a). Autophagy (2017) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000; loading ...; fig s4c
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples at 1:1000 (fig s4c). Proc Natl Acad Sci U S A (2017) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - frozen section; human; 1:200; loading ...; fig 5c
In order to characterize muscle biopsy specimens derived from patients with spinal and bulbar muscular atrophy, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunohistochemistry - frozen section on human samples at 1:200 (fig 5c). Hum Mol Genet (2017) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; human; loading ...; fig 7b
  • western blot; human; loading ...; fig 5j
  • western blot; mouse; loading ...; fig 5a
In order to assess the feasibility to measure autophagy in blood cells after nutrient deprivation, Cell Signaling Technology light chain 3 antibody (cell signalling, 2775) was used in immunohistochemistry on human samples (fig 7b), in western blot on human samples (fig 5j) and in western blot on mouse samples (fig 5a). Autophagy (2017) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; loading ...; fig 2b
  • western blot; human; loading ...; fig 2a
In order to research the role of MIR7-3HG in autophagy regulation, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 27755) was used in immunocytochemistry on human samples (fig 2b) and in western blot on human samples (fig 2a). Autophagy (2017) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; loading ...; fig 5a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples at 1:1000 (fig 5a). PLoS ONE (2017) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig 8a
In order to determine if aldose reductase enzyme deficiency contributes to Parkinson's disease., Cell Signaling Technology light chain 3 antibody (Cell signaling, 2775) was used in western blot on mouse samples at 1:1000 (fig 8a). Neurobiol Aging (2017) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; mouse; loading ...; fig 6c
  • western blot; mouse; loading ...; fig 6e
  • western blot; human; loading ...; fig 6e
In order to investigate how FYCO1 contributes to the integrity of the chromatoid body, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunohistochemistry on mouse samples (fig 6c), in western blot on mouse samples (fig 6e) and in western blot on human samples (fig 6e). Autophagy (2017) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig 1c
In order to determine the role of SNAPIN in macrophages, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig 1c). Autophagy (2017) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - paraffin section; mouse; 1:100; loading ...; fig 2e
  • western blot; mouse; loading ...; fig 2a
  • western blot; rat; fig 3d
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunohistochemistry - paraffin section on mouse samples at 1:100 (fig 2e), in western blot on mouse samples (fig 2a) and in western blot on rat samples (fig 3d). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 2a
  • western blot; rat; fig 3d
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples (fig 2a) and in western blot on rat samples (fig 3d). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 2f
Cell Signaling Technology light chain 3 antibody (Cell signaling, 2775) was used in western blot on human samples (fig 2f). Nat Med (2017) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; African green monkey; loading ...; fig 6b
  • immunocytochemistry; human; loading ...; fig 6a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775S) was used in immunocytochemistry on African green monkey samples (fig 6b) and in immunocytochemistry on human samples (fig 6a). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 3d
In order to generate a protocol using Cre-loxP to rescue mice lacking a gene essential for cell survival by expressing the human homolog on the X chromosome, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples (fig 3d). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; loading ...; fig s4j
In order to demonstrate that Fat1 cadherin represses mitochondrial respiration that regulates vascular smooth muscle cell proliferation after arterial injury, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775S) was used in western blot on mouse samples at 1:1000 (fig s4j). Nature (2016) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; loading ...; fig 2b
  • western blot; human; loading ...; fig 1b
In order to investigate the impact of TLR9 on autophagy, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on human samples (fig 2b) and in western blot on human samples (fig 1b). Biochem Biophys Res Commun (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - paraffin section; mouse; loading ...; fig 5f
  • western blot; mouse; fig 1b
In order to assess the role of individual TAM family proteins during autophagy induction and hepatic inflammation, Cell Signaling Technology light chain 3 antibody (Cell signaling, 2775) was used in immunohistochemistry - paraffin section on mouse samples (fig 5f) and in western blot on mouse samples (fig 1b). Autophagy (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...
In order to elucidate how FoxO1 regulates mitochondrial uncoupling proteins, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775 s) was used in western blot on mouse samples . Cell Death Discov (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; rat; 1:1000; loading ...; fig 2a
In order to test if autophagy contributes to aldosterone-induced mesangial cell proliferation, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on rat samples at 1:1000 (fig 2a). Mol Med Rep (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:400; fig 5
  • western blot; human; 1:400; fig 5
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunocytochemistry on human samples at 1:400 (fig 5) and in western blot on human samples at 1:400 (fig 5). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 6
In order to discuss targeting mTOR-signaling and lactate dehydrogenase A as a strategy to treat colorectal cancer, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples (fig 6). J Cancer (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; loading ...; fig 3c
  • western blot; human; 1:1000; loading ...; fig 3f
In order to elucidate the upstream mechanisms of apoptosis triggered by an anti-microtubule drug, ABT-751, Cell Signaling Technology light chain 3 antibody (cell signalling, 2775) was used in immunocytochemistry on human samples (fig 3c) and in western blot on human samples at 1:1000 (fig 3f). Toxicol Appl Pharmacol (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000; loading ...; fig 6g
In order to test if OSU-T315 inhibits vestibular schwannoma and meningioma cell growth, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples at 1:1000 (fig 6g). Austin J Med Oncol (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 1g
In order to show that LAMP-2 is essential for STX17 expression and for fusion of autophagasomes with lysosomes, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples (fig 1g). Biol Open (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; mouse; loading ...; fig 2d
In order to report that chronic mild TLR4 stimulation attenuates Alzheimer's disease-related tauopathy, Cell Signaling Technology light chain 3 antibody (Cell Signaling, D11) was used in western blot on mouse samples (fig 2d). J Immunol (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 7a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples (fig 7a). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; mouse; loading ...; fig 3c
  • western blot; mouse; loading ...; fig 3b
In order to study the effects of apolipoprotein B inhibition on VLDL levels and hepatic lipids in mice., Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunohistochemistry on mouse samples (fig 3c) and in western blot on mouse samples (fig 3b). J Clin Invest (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig 2a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, D11) was used in western blot on human samples (fig 2a). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 3
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig 3). Mar Drugs (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 3
Cell Signaling Technology light chain 3 antibody (Abcam, 3868S) was used in western blot on human samples (fig 3). Biosci Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; rat; loading ...; fig 2
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on rat samples (fig 2). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:200; loading ...; fig 2
  • western blot; human; loading ...; fig 4
In order to discover that a triterpene molecule derived from Tripterygium wilfordii, celastrol, induces autophagy, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunocytochemistry on human samples at 1:200 (fig 2) and in western blot on human samples (fig 4). Int J Oncol (2016) ncbi
domestic rabbit polyclonal
  • flow cytometry; human; loading ...; fig 5c
  • western blot; human; loading ...; fig 5b
In order to elucidate the mechanisms by which DRibbles induce T-cell activation, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775 S) was used in flow cytometry on human samples (fig 5c) and in western blot on human samples (fig 5b). Cell Death Dis (2016) ncbi
domestic rabbit polyclonal
  • western blot; rat; fig 4c
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on rat samples (fig 4c). Biochem J (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse; loading ...; fig 2d
  • western blot; mouse; loading ...; fig 1b
  • western blot; human; loading ...; fig 1a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunocytochemistry on mouse samples (fig 2d), in western blot on mouse samples (fig 1b) and in western blot on human samples (fig 1a). Autophagy (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000; fig 3d,4b,7b
Cell Signaling Technology light chain 3 antibody (CST, 3868P) was used in western blot on human samples at 1:1000 (fig 3d,4b,7b). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000; fig 3
In order to create and assess the potential use of Adpa manganese as an antitumor agent, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples at 1:1000 (fig 3). Mol Med Rep (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - free floating section; mouse; 1:250; fig 3j
  • immunohistochemistry - paraffin section; mouse; 1:250; fig 3j
  • western blot; mouse; 1:2000; loading ...; fig 2g
In order to identify NFE2L2/NRF2 as a regulator of autophagy gene expression and study its role in Alzheimer disease, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunohistochemistry - free floating section on mouse samples at 1:250 (fig 3j), in immunohistochemistry - paraffin section on mouse samples at 1:250 (fig 3j) and in western blot on mouse samples at 1:2000 (fig 2g). Autophagy (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; mouse; 1:1000; loading ...; fig 3c
In order to study the nuclear functions of SQSTM1, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on mouse samples at 1:1000 (fig 3c). Autophagy (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 1c
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples (fig 1c). BMC Biochem (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; rat; loading ...; fig 8d
In order to determine the effects of chronic and acute exposure to few-layer pristine graphene and monolayer graphene oxide flakes using primary rat cortical neurons, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunocytochemistry on rat samples (fig 8d). ACS Nano (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse; fig 3
  • western blot; mouse; fig 3
In order to analyze exacerbation of palmitate-induced steatosis and toxicity in hepatocytes by low density lipoprotein receptor-related protein-1 deficiency, Cell Signaling Technology light chain 3 antibody (Cell signaling, 2775) was used in immunocytochemistry on mouse samples (fig 3) and in western blot on mouse samples (fig 3). J Biol Chem (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 1c
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples (fig 1c). Nature (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; mouse; fig 4
  • western blot; mouse; fig s1
In order to study enhanced mitophagy and autophagy induction by PINK1 deficiency, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunocytochemistry on mouse samples (fig 4) and in western blot on mouse samples (fig s1). Mol Cell Oncol (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:5000; fig 3
Cell Signaling Technology light chain 3 antibody (Cell Signaling Tech, 3868) was used in western blot on human samples at 1:5000 (fig 3). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 8
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples (fig 8). Skelet Muscle (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 4a
In order to use knockout mice to study the involvement of iPLA2 gamma in glomerular pathophysiology, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples (fig 4a). J Biol Chem (2016) ncbi
domestic rabbit polyclonal
  • western blot; chicken; fig 7
Cell Signaling Technology light chain 3 antibody (Cell signaling, 2775) was used in western blot on chicken samples (fig 7). Biochem J (2016) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - paraffin section; human; 1:1000; loading ...; fig 6d
  • immunocytochemistry; human; 1:200; loading ...; fig 3b
  • western blot; human; loading ...; fig 3f
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868S) was used in immunohistochemistry - paraffin section on human samples at 1:1000 (fig 6d), in immunocytochemistry on human samples at 1:200 (fig 3b) and in western blot on human samples (fig 3f). Sci Rep (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000; loading ...; fig 1b
In order to assess the efficacy of resveratrol, omega-3 fatty acids, and other nutrients in preventing ARPE-19 cell damage, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples at 1:1000 (fig 1b). Nutrients (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; rat; 1:1000; fig 2
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on rat samples at 1:1000 (fig 2). Mol Med Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig s1
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples (fig s1). Autophagy (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; fig 5a
In order to research the effects of environmental tobacco smoke on autophagy and longevity, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples (fig 5a). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:400; fig 2
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunocytochemistry on human samples at 1:400 (fig 2). Mol Brain (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; fig 3
Cell Signaling Technology light chain 3 antibody (cell Signaling Tech, 2775) was used in western blot on human samples at 1:1000 (fig 3). Acta Neuropathol Commun (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 1a
In order to research the protective role of heme oxygenase-1 against excessive autophagy, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig 1a). Mol Med Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig s5b
In order to determine the role of mitophagy in apoptosis induced by oxidized low-density lipoproteins using human vascular smooth muscle cells, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples (fig s5b). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - paraffin section; human; fig 4b
  • immunocytochemistry; human; loading ...; fig 2a
  • western blot; human; loading ...; fig 1a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunohistochemistry - paraffin section on human samples (fig 4b), in immunocytochemistry on human samples (fig 2a) and in western blot on human samples (fig 1a). Autophagy (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig s1c
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig s1c). J Cell Biol (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; rat; fig 4
  • western blot; rat; 1:1000; fig 3
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 2775) was used in immunohistochemistry on rat samples (fig 4) and in western blot on rat samples at 1:1000 (fig 3). Int J Med Sci (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 2
In order to investigate protection of ovarian cancer-associated fibroblasts against oxidative stress by autophagy, Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in western blot on human samples (fig 2). Cell Cycle (2016) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; fig 4
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868S) was used in immunocytochemistry on human samples (fig 4). Onco Targets Ther (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; rat; fig 6
  • western blot; mouse; fig 4
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on rat samples (fig 6) and in western blot on mouse samples (fig 4). Sci Rep (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 1
In order to investigate the consequences of genetic or pharmacological inhibition of BMI1, Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 2775) was used in western blot on human samples (fig 1). Autophagy (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 7c
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples (fig 7c). Autophagy (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 3
Cell Signaling Technology light chain 3 antibody (Cell Signaling Tech, 2775) was used in western blot on human samples (fig 3). PLoS ONE (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 6c
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples (fig 6c). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - frozen section; mouse; 1:1000; tbl 1
In order to utilize a time course study of sciatic nerves from aging mice to gain a neurogenic perspective of sarcopenia, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunohistochemistry - frozen section on mouse samples at 1:1000 (tbl 1). J Neuropathol Exp Neurol (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; fig s1e
Cell Signaling Technology light chain 3 antibody (Cell signalling technology, 2775) was used in western blot on mouse samples at 1:1000 (fig s1e). Nat Commun (2016) ncbi
domestic rabbit polyclonal
  • western blot; bovine; fig 3a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on bovine samples (fig 3a). Mol Cells (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2c
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples (fig 2c). Genes Dev (2016) ncbi
domestic rabbit polyclonal
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used . elife (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; fig 5
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunocytochemistry on human samples (fig 5). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; 1:1000; fig 3
In order to investigate the effect of Obatoclax in esophageal cancer cells, Cell Signaling Technology light chain 3 antibody (Cell Signaling Tech, 2775) was used in western blot on human samples at 1:1000 (fig 3). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - frozen section; mouse; fig 4
  • western blot; mouse; fig 4
Cell Signaling Technology light chain 3 antibody (CST, 2775) was used in immunohistochemistry - frozen section on mouse samples (fig 4) and in western blot on mouse samples (fig 4). Stem Cell Reports (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 10a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples (fig 10a). J Mol Cell Cardiol (2016) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; hamsters; 1:200; loading ...; fig 3d
  • immunocytochemistry; human; 1:200; loading ...; fig 3d
  • western blot; human; 1:1000; loading ...; fig 1d
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on hamsters samples at 1:200 (fig 3d), in immunocytochemistry on human samples at 1:200 (fig 3d) and in western blot on human samples at 1:1000 (fig 1d). Int J Biochem Cell Biol (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 5
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples (fig 5). Oncogene (2016) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; 1:100; fig 2
  • western blot; human; 1:500; fig 2
In order to assess the interference of HCV replication through the autolysosomal degradation of NS5A by the interferon-inducible protein SCOTIN, Cell Signaling Technology light chain 3 antibody (Cell signaling, 2775) was used in immunocytochemistry on human samples at 1:100 (fig 2) and in western blot on human samples at 1:500 (fig 2). Nat Commun (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 3
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in western blot on human samples (fig 3). elife (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 1
Cell Signaling Technology light chain 3 antibody (Cell Signalling, 3868) was used in western blot on human samples (fig 1). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; fig 1
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 2775) was used in western blot on mouse samples at 1:1000 (fig 1). Cell Death Dis (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - free floating section; mouse; fig s16
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in immunohistochemistry - free floating section on mouse samples (fig s16). Nat Commun (2016) ncbi
domestic rabbit monoclonal (D11)
  • immunoprecipitation; mouse; 1:1000; loading ...; fig 6a
  • western blot; mouse; 1:1000; loading ...; fig 3a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunoprecipitation on mouse samples at 1:1000 (fig 6a) and in western blot on mouse samples at 1:1000 (fig 3a). Oncotarget (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; 1:1000; fig 2
In order to investigate the impact of neuronal Atg7 depletion using a mouse model of severe neonatal hypoxia-ischemia, Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 2775) was used in western blot on mouse samples at 1:1000 (fig 2). Autophagy (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 9
In order to study the effects of sodium formate exposure on photoreceptor cells, Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 2775) was used in western blot on mouse samples (fig 9). Mol Med Rep (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; mouse; fig 1
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on mouse samples (fig 1). Oncotarget (2016) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig s4
In order to study the effect of G2019S on neuronal subtypes, Cell Signaling Technology light chain 3 antibody (Cell Signal, 3868) was used in western blot on human samples (fig s4). Stem Cell Reports (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 5
In order to analyze GTPBP3 defective expression in AMPK-mediated responses, Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in western blot on human samples (fig 5). PLoS ONE (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; mouse; fig 6
Cell Signaling Technology light chain 3 antibody (Cell Signalling, 3868) was used in western blot on mouse samples (fig 6). Biochem Pharmacol (2016) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry; human; loading ...; fig 5a
  • western blot; human; loading ...; fig 5c
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technologies, 3868) was used in immunohistochemistry on human samples (fig 5a) and in western blot on human samples (fig 5c). Free Radic Biol Med (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; fig 4
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples (fig 4). Int J Mol Med (2016) ncbi
domestic rabbit polyclonal
  • western blot; rat; 1:500; fig 2
In order to investigate thyroid hormone-mediated autophagy in skeletal muscle, Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 2775) was used in western blot on rat samples at 1:500 (fig 2). Endocrinology (2016) ncbi
domestic rabbit polyclonal
  • western blot; mouse; loading ...; fig 2a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on mouse samples (fig 2a). Am J Physiol Renal Physiol (2016) ncbi
domestic rabbit monoclonal (D11)
  • chromatin immunoprecipitation; human; fig 2
  • immunoprecipitation; human; fig 1
  • immunocytochemistry; human; fig 3
  • western blot; human; fig 1
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in chromatin immunoprecipitation on human samples (fig 2), in immunoprecipitation on human samples (fig 1), in immunocytochemistry on human samples (fig 3) and in western blot on human samples (fig 1). Nature (2015) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2a
Cell Signaling Technology light chain 3 antibody (Cell signaling, 2775) was used in western blot on human samples (fig 2a). J Neurochem (2016) ncbi
domestic rabbit polyclonal
  • western blot; human; loading ...; fig 2f
In order to study the role of ASCT2/SLC1A5 in the regulation of glutamine uptake and tumour growth, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 2775) was used in western blot on human samples (fig 2f). Oncogene (2016) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; fig 2
  • western blot; human; fig 1
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, D11) was used in immunocytochemistry on human samples (fig 2) and in western blot on human samples (fig 1). Autophagy (2015) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in immunocytochemistry on human samples . Nature (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig 3c, 4a
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig 3c, 4a). Oncotarget (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 3
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig 3). Nat Immunol (2015) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - paraffin section; human; 1:4000; loading ...; fig 1d
  • western blot; human; 1:1000; fig 1e
Cell Signaling Technology light chain 3 antibody (Cell signaling, 3868) was used in immunohistochemistry - paraffin section on human samples at 1:4000 (fig 1d) and in western blot on human samples at 1:1000 (fig 1e). Sci Rep (2015) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; fig s16
  • western blot; human; 1:1000; fig s14
Cell Signaling Technology light chain 3 antibody (Cell signaling, 3868) was used in immunocytochemistry on human samples (fig s16) and in western blot on human samples at 1:1000 (fig s14). Nat Commun (2015) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; fig 4
Cell Signaling Technology light chain 3 antibody (CST, 3868) was used in immunocytochemistry on human samples (fig 4). Oncotarget (2015) ncbi
domestic rabbit monoclonal (D11)
  • flow cytometry; human; loading ...; fig 3b
  • immunohistochemistry; human; loading ...; fig 2c
Cell Signaling Technology light chain 3 antibody (Cell Signaling, D11) was used in flow cytometry on human samples (fig 3b) and in immunohistochemistry on human samples (fig 2c). PLoS Pathog (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; mouse; loading ...; fig 2
Cell Signaling Technology light chain 3 antibody (Cell signaling, 3868) was used in western blot on mouse samples (fig 2). PLoS ONE (2015) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry; mouse; fig 8
  • western blot; mouse; fig 8
  • western blot; pigs ; fig 7
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868s) was used in immunohistochemistry on mouse samples (fig 8), in western blot on mouse samples (fig 8) and in western blot on pigs samples (fig 7). Autophagy (2015) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; loading ...; fig 2d
Cell Signaling Technology light chain 3 antibody (Cell signaling, 3868) was used in immunocytochemistry on human samples (fig 2d). PLoS ONE (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; rat; fig 1
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in western blot on rat samples (fig 1). Kidney Int (2015) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - paraffin section; human; 1:100; fig 5
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868P) was used in immunohistochemistry - paraffin section on human samples at 1:100 (fig 5). Cell Death Dis (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig 2a
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, D11) was used in western blot on human samples (fig 2a). Biochem J (2015) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; 1:100; fig 4
  • western blot; human; 1:1000
Cell Signaling Technology light chain 3 antibody (New England Biolabs, 3868) was used in immunocytochemistry on human samples at 1:100 (fig 4) and in western blot on human samples at 1:1000. EMBO Mol Med (2015) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; mouse
Cell Signaling Technology light chain 3 antibody (Cell signaling, 3868) was used in immunocytochemistry on mouse samples . Vasc Cell (2014) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000; fig 1,2,3,4,5,6,7
In order to show that Che-1 inhibits mTOR activity in response to stress conditions, Cell Signaling Technology light chain 3 antibody (cell signaling, 3868S) was used in western blot on human samples at 1:1000 (fig 1,2,3,4,5,6,7). EMBO J (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 3
Cell Signaling Technology light chain 3 antibody (Cell signaling, 3868) was used in western blot on human samples (fig 3). Exp Mol Med (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig 4c
Cell Signaling Technology light chain 3 antibody (Cell Signaling, D11) was used in western blot on human samples (fig 4c). Oncogene (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 6
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig 6). Aging Cell (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 2
Cell Signaling Technology light chain 3 antibody (Signaling Technology, 3868) was used in western blot on human samples (fig 2). Oncogene (2015) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; rat; 1:250
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on rat samples at 1:250. Oxid Med Cell Longev (2014) ncbi
domestic rabbit monoclonal (D11)
  • western blot; rat; fig 4
In order to elucidate how PLK1 regulates cell survival during mTORC1 hyperactivation, Cell Signaling Technology light chain 3 antibody (Cell signaling, 3868) was used in western blot on rat samples (fig 4). Cell Cycle (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 6
In order to identify PITX1 as a key specificity factor for HIF-1alpha dependent gene expression, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig 6). Cell Cycle (2014) ncbi
domestic rabbit monoclonal (D11)
  • western blot; rat; fig 4f
Cell Signaling Technology light chain 3 antibody (Cell Signaling, D11) was used in western blot on rat samples (fig 4f). J Biol Chem (2015) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - paraffin section; mouse; 1:50
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunohistochemistry - paraffin section on mouse samples at 1:50. PLoS Genet (2014) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; mouse
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on mouse samples . Biomaterials (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; loading ...; fig 3a
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology Inc., 3868) was used in western blot on human samples (fig 3a). Mol Carcinog (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868S) was used in western blot on human samples at 1:1000. Biochim Biophys Acta (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in western blot on human samples at 1:1000. Biochim Biophys Acta (2015) ncbi
domestic rabbit monoclonal (D11)
  • western blot; mouse; fig 1
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868S) was used in western blot on mouse samples (fig 1). Biochim Biophys Acta (2015) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; 1:200
  • western blot; human; 1:500
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, D11) was used in immunocytochemistry on human samples at 1:200 and in western blot on human samples at 1:500. Int J Clin Exp Pathol (2014) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - paraffin section; human; 1:75
Cell Signaling Technology light chain 3 antibody (CST, 3868) was used in immunohistochemistry - paraffin section on human samples at 1:75. Int J Ophthalmol (2014) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - paraffin section; human
  • western blot; human
In order to study the effect of Hinokitiol on DNA damage and autophagy in gefitinib-resistant lung adenocarcinoma cells, Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in immunohistochemistry - paraffin section on human samples and in western blot on human samples . PLoS ONE (2014) ncbi
domestic rabbit monoclonal (D11)
  • western blot; mouse
In order to demonstrate a novel role for Poldip2 in regulating the cell cycle, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868S) was used in western blot on mouse samples . PLoS ONE (2014) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; 1:200
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on human samples at 1:200. Nature (2014) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868S) was used in western blot on human samples at 1:1000. Biochim Biophys Acta (2014) ncbi
domestic rabbit monoclonal (D11)
  • immunohistochemistry - frozen section; mouse
  • western blot; rat
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in immunohistochemistry - frozen section on mouse samples and in western blot on rat samples . Kidney Int (2014) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; fig 1
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on human samples (fig 1). Free Radic Biol Med (2014) ncbi
domestic rabbit monoclonal (D11)
  • immunocytochemistry; human; 1:1000; fig 3
  • western blot; human; 1:1000; fig 1
Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in immunocytochemistry on human samples at 1:1000 (fig 3) and in western blot on human samples at 1:1000 (fig 1). Nat Commun (2013) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human; 1:1000
Cell Signaling Technology light chain 3 antibody (Cell Signaling Technology, 3868) was used in western blot on human samples at 1:1000. Cell Death Dis (2013) ncbi
domestic rabbit monoclonal (D11)
  • western blot; mouse; 1:2000
In order to identify the role of carboxyl terminus of Hsp70-interacting protein in cardiac hypertrophy and attenuate autophagy during exercise, Cell Signaling Technology light chain 3 antibody (Cell Signaling, 3868) was used in western blot on mouse samples at 1:2000. Cell Biochem Funct (2013) ncbi
domestic rabbit monoclonal (D11)
  • western blot; human
Cell Signaling Technology light chain 3 antibody (Cell Signalling Technology, D11) was used in western blot on human samples . PLoS ONE (2012) ncbi
Abgent
domestic rabbit polyclonal
  • immunohistochemistry; rat; 1:100; loading ...; tbl 1
In order to examine if heat shock protein 25 induces astroglial apoptosis or clasmatodendrosis in status epilepticus-induced rat hippocampi, Abgent light chain 3 antibody (Abgent, AP1802a) was used in immunohistochemistry on rat samples at 1:100 (tbl 1). Front Cell Neurosci (2017) ncbi
domestic rabbit polyclonal
  • immunohistochemistry; human; loading ...; fig 6c
  • western blot; human; loading ...; fig 1b
Abgent light chain 3 antibody (Abgent, AP1802a) was used in immunohistochemistry on human samples (fig 6c) and in western blot on human samples (fig 1b). Autophagy (2017) ncbi
domestic rabbit polyclonal
  • immunocytochemistry; human; fig 1
  • western blot; human; fig 4
Abgent light chain 3 antibody (Abgent, 11668-019AP-1802a) was used in immunocytochemistry on human samples (fig 1) and in western blot on human samples (fig 4). J Virol (2016) ncbi
domestic rabbit polyclonal
  • immunohistochemistry - paraffin section; mouse; 1:25; fig 7
Abgent light chain 3 antibody (Abgent, AP1802a) was used in immunohistochemistry - paraffin section on mouse samples at 1:25 (fig 7). Cell Death Dis (2016) ncbi
Articles Reviewed
  1. Silva M, Nandi G, Tentarelli S, Gurrell I, Jamier T, Lucente D, et al. Prolonged tau clearance and stress vulnerability rescue by pharmacological activation of autophagy in tauopathy neurons. Nat Commun. 2020;11:3258 pubmed publisher
  2. Sozen E, Yazgan B, Tok O, Demirel T, Ercan F, Proto J, et al. Cholesterol induced autophagy via IRE1/JNK pathway promotes autophagic cell death in heart tissue. Metabolism. 2020;106:154205 pubmed publisher
  3. Mahameed M, Boukeileh S, Obiedat A, Darawshi O, Dipta P, Rimon A, et al. Pharmacological induction of selective endoplasmic reticulum retention as a strategy for cancer therapy. Nat Commun. 2020;11:1304 pubmed publisher
  4. Yan S, Ding H, Peng J, Wang X, Pang C, Wei J, et al. Down-regulation of protease-activated receptor 2 ameliorated osteoarthritis in rats through regulation of MAPK/NF-κB signaling pathway in vivo and in vitro. Biosci Rep. 2020;40: pubmed publisher
  5. Zhuang X, Wang S, Tan Y, Song J, Zhu Z, Wang Z, et al. Pharmacological enhancement of TFEB-mediated autophagy alleviated neuronal death in oxidative stress-induced Parkinson's disease models. Cell Death Dis. 2020;11:128 pubmed publisher
  6. Chávez M, Morales R, Lopez Crisosto C, Roa J, Allende M, Lavandero S. Autophagy Activation in Zebrafish Heart Regeneration. Sci Rep. 2020;10:2191 pubmed publisher
  7. Lieberman O, Frier M, McGuirt A, Griffey C, Rafikian E, Yang M, et al. Cell-type-specific regulation of neuronal intrinsic excitability by macroautophagy. elife. 2020;9: pubmed publisher
  8. Wu Y, Chen K, Xing G, Li L, Ma B, Hu Z, et al. Phospholipid remodeling is critical for stem cell pluripotency by facilitating mesenchymal-to-epithelial transition. Sci Adv. 2019;5:eaax7525 pubmed publisher
  9. Shin H, Park H, Shin N, Kwon H, Yin Y, Hwang J, et al. Pink1-Mediated Chondrocytic Mitophagy Contributes to Cartilage Degeneration in Osteoarthritis. J Clin Med. 2019;8: pubmed publisher
  10. Zhao X, Nedvetsky P, Stanchi F, Vion A, Popp O, Zühlke K, et al. Endothelial PKA activity regulates angiogenesis by limiting autophagy through phosphorylation of ATG16L1. elife. 2019;8: pubmed publisher
  11. di Meco A, Pratico D. Early-life exposure to high-fat diet influences brain health in aging mice. Aging Cell. 2019;18:e13040 pubmed publisher
  12. Oleinik N, Kim J, Roth B, Selvam S, Gooz M, Johnson R, et al. Mitochondrial protein import is regulated by p17/PERMIT to mediate lipid metabolism and cellular stress. Sci Adv. 2019;5:eaax1978 pubmed publisher
  13. Li J, Shi K, Sabet Z, Fu W, Zhou H, Xu S, et al. New power of self-assembling carbonic anhydrase inhibitor: Short peptide-constructed nanofibers inspire hypoxic cancer therapy. Sci Adv. 2019;5:eaax0937 pubmed publisher
  14. Tang C, Han H, Liu Z, Liu Y, Yin L, Cai J, et al. Activation of BNIP3-mediated mitophagy protects against renal ischemia-reperfusion injury. Cell Death Dis. 2019;10:677 pubmed publisher
  15. Yang M, Chen P, Liu J, Zhu S, Kroemer G, Klionsky D, et al. Clockophagy is a novel selective autophagy process favoring ferroptosis. Sci Adv. 2019;5:eaaw2238 pubmed publisher
  16. Grossmann D, Berenguer Escuder C, Bellet M, Scheibner D, Bohler J, Massart F, et al. Mutations in RHOT1 Disrupt Endoplasmic Reticulum-Mitochondria Contact Sites Interfering with Calcium Homeostasis and Mitochondrial Dynamics in Parkinson's Disease. Antioxid Redox Signal. 2019;31:1213-1234 pubmed publisher
  17. Jung S, Choe S, Woo H, Jeong H, An H, Moon H, et al. Autophagic death of neural stem cells mediates chronic stress-induced decline of adult hippocampal neurogenesis and cognitive deficits. Autophagy. 2019;:1-19 pubmed publisher
  18. Xu D, Li X, Shao F, Lv G, Lv H, Lee J, et al. The protein kinase activity of fructokinase A specifies the antioxidant responses of tumor cells by phosphorylating p62. Sci Adv. 2019;5:eaav4570 pubmed publisher
  19. Zheng J, Croteau D, Bohr V, Akbari M. Diminished OPA1 expression and impaired mitochondrial morphology and homeostasis in Aprataxin-deficient cells. Nucleic Acids Res. 2019;: pubmed publisher
  20. Saito T, Kuma A, Sugiura Y, Ichimura Y, Obata M, Kitamura H, et al. Autophagy regulates lipid metabolism through selective turnover of NCoR1. Nat Commun. 2019;10:1567 pubmed publisher
  21. Li Z, Tian Y, Qu L, Mao J, Zhong H. AAV-Mig-6 Increase the Efficacy of TAE in VX2 Rabbit Model, Is Associated With JNK Mediated Autophagy. J Cancer. 2019;10:1060-1069 pubmed publisher
  22. Park H, Chung K, An H, Gim J, Hong J, Woo H, et al. Parkin Promotes Mitophagic Cell Death in Adult Hippocampal Neural Stem Cells Following Insulin Withdrawal. Front Mol Neurosci. 2019;12:46 pubmed publisher
  23. Carballo Carbajal I, Laguna A, Romero Gimenez J, Cuadros T, Bove J, Martinez Vicente M, et al. Brain tyrosinase overexpression implicates age-dependent neuromelanin production in Parkinson's disease pathogenesis. Nat Commun. 2019;10:973 pubmed publisher
  24. Hass D, Barnstable C. Mitochondrial Uncoupling Protein 2 Knock-out Promotes Mitophagy to Decrease Retinal Ganglion Cell Death in a Mouse Model of Glaucoma. J Neurosci. 2019;39:3582-3596 pubmed publisher
  25. Huang X, Gan G, Wang X, Xu T, Xie W. The HGF-MET axis coordinates liver cancer metabolism and autophagy for chemotherapeutic resistance. Autophagy. 2019;15:1258-1279 pubmed publisher
  26. Yambire K, Fernández Mosquera L, Steinfeld R, Mühle C, Ikonen E, Milosevic I, et al. Mitochondrial biogenesis is transcriptionally repressed in lysosomal lipid storage diseases. elife. 2019;8: pubmed publisher
  27. Zhang J, He J, Johnson J, Rahman F, Gavathiotis E, Cuervo A, et al. Chaperone-Mediated Autophagy Upregulation Rescues Megalin Expression and Localization in Cystinotic Proximal Tubule Cells. Front Endocrinol (Lausanne). 2019;10:21 pubmed publisher
  28. Zhang Y, Jiang Q, Xie S, Wu X, Zhou J, Sun H. Lead Induced Ototoxicity and Neurotoxicity in Adult Guinea Pig. Biomed Res Int. 2019;2019:3626032 pubmed publisher
  29. Nassour J, Radford R, Correia A, Fusté J, Schoell B, Jauch A, et al. Autophagic cell death restricts chromosomal instability during replicative crisis. Nature. 2019;565:659-663 pubmed publisher
  30. Wang D, Xu Q, Yuan Q, Jia M, Niu H, Liu X, et al. Proteasome inhibition boosts autophagic degradation of ubiquitinated-AGR2 and enhances the antitumor efficiency of bevacizumab. Oncogene. 2019;38:3458-3474 pubmed publisher
  31. Chao H, Lin C, Zuo Q, Liu Y, Xiao M, Xu X, et al. Cardiolipin-Dependent Mitophagy Guides Outcome after Traumatic Brain Injury. J Neurosci. 2019;39:1930-1943 pubmed publisher
  32. Nitta A, Hori K, Tanida I, Igarashi A, Deyama Y, Ueno T, et al. Blocking LC3 lipidation and ATG12 conjugation reactions by ATG7 mutant protein containing C572S. Biochem Biophys Res Commun. 2019;508:521-526 pubmed publisher
  33. Cheruiyot A, Li S, Nickless A, Roth R, Fitzpatrick J, You Z. Compound C inhibits nonsense-mediated RNA decay independently of AMPK. PLoS ONE. 2018;13:e0204978 pubmed publisher
  34. Huang X, Wang X, Yuan X, Wu W, Lobie P, Wu Z. XIAP facilitates breast and colon carcinoma growth via promotion of p62 depletion through ubiquitination-dependent proteasomal degradation. Oncogene. 2019;38:1448-1460 pubmed publisher
  35. Gallot Y, Bohnert K, Straughn A, Xiong G, Hindi S, Kumar A. PERK regulates skeletal muscle mass and contractile function in adult mice. FASEB J. 2019;33:1946-1962 pubmed publisher
  36. Song K, Kim J, Lee Y, Bae H, Lee H, Woo S, et al. Mitochondrial reprogramming via ATP5H loss promotes multimodal cancer therapy resistance. J Clin Invest. 2018;128:4098-4114 pubmed publisher
  37. Pajares M, Rojo A, Arias E, Díaz Carretero A, Cuervo A, Cuadrado A. Transcription factor NFE2L2/NRF2 modulates chaperone-mediated autophagy through the regulation of LAMP2A. Autophagy. 2018;14:1310-1322 pubmed publisher
  38. Wang W, Xia Z, Farre J, Subramani S. TRIM37 deficiency induces autophagy through deregulating the MTORC1-TFEB axis. Autophagy. 2018;14:1574-1585 pubmed publisher
  39. Rapino F, Delaunay S, Rambow F, Zhou Z, Tharun L, de Tullio P, et al. Codon-specific translation reprogramming promotes resistance to targeted therapy. Nature. 2018;558:605-609 pubmed publisher
  40. Li F, Li Y, Liang H, Xu T, Kong Y, Huang M, et al. HECTD3 mediates TRAF3 polyubiquitination and type I interferon induction during bacterial infection. J Clin Invest. 2018;128:4148-4162 pubmed publisher
  41. Chhipa R, Fan Q, Anderson J, Muraleedharan R, Huang Y, Ciraolo G, et al. AMP kinase promotes glioblastoma bioenergetics and tumour growth. Nat Cell Biol. 2018;20:823-835 pubmed publisher
  42. Yang M, Li C, Zhu S, Cao L, Kroemer G, Zeh H, et al. TFAM is a novel mediator of immunogenic cancer cell death. Oncoimmunology. 2018;7:e1431086 pubmed publisher
  43. Perot B, Boussier J, Yatim N, Rossman J, Ingersoll M, Albert M. Autophagy diminishes the early interferon-? response to influenza A virus resulting in differential expression of interferon-stimulated genes. Cell Death Dis. 2018;9:539 pubmed publisher
  44. Leeman D, Hebestreit K, Ruetz T, Webb A, McKay A, Pollina E, et al. Lysosome activation clears aggregates and enhances quiescent neural stem cell activation during aging. Science. 2018;359:1277-1283 pubmed publisher
  45. Marrone L, Bus C, Schöndorf D, Fitzgerald J, Kübler M, Schmid B, et al. Generation of iPSCs carrying a common LRRK2 risk allele for in vitro modeling of idiopathic Parkinson's disease. PLoS ONE. 2018;13:e0192497 pubmed publisher
  46. Hsu C, Lee E, Gordon K, Paz E, Shen W, Ohnishi K, et al. MAP4K3 mediates amino acid-dependent regulation of autophagy via phosphorylation of TFEB. Nat Commun. 2018;9:942 pubmed publisher
  47. Agod Z, Pazmandi K, Bencze D, Vereb G, Biro T, Szabo A, et al. Signaling Lymphocyte Activation Molecule Family 5 Enhances Autophagy and Fine-Tunes Cytokine Response in Monocyte-Derived Dendritic Cells via Stabilization of Interferon Regulatory Factor 8. Front Immunol. 2018;9:62 pubmed publisher
  48. Goiran T, Duplan E, Rouland L, El Manaa W, Lauritzen I, Dunys J, et al. Nuclear p53-mediated repression of autophagy involves PINK1 transcriptional down-regulation. Cell Death Differ. 2018;25:873-884 pubmed publisher
  49. Shroff A, Sequeira R, Patel V, Reddy K. Knockout of autophagy gene, ATG5 in mice vaginal cells abrogates cytokine response and pathogen clearance during vaginal infection of Candida albicans. Cell Immunol. 2018;324:59-73 pubmed publisher
  50. Smith M, Harley M, Kemp A, Wills J, Lee M, Arends M, et al. CCPG1 Is a Non-canonical Autophagy Cargo Receptor Essential for ER-Phagy and Pancreatic ER Proteostasis. Dev Cell. 2018;44:217-232.e11 pubmed publisher
  51. Lee S, Bazick H, Chittoor Vinod V, Al Salihi M, Xia G, Notterpek L. Elevated Peripheral Myelin Protein 22, Reduced Mitotic Potential, and Proteasome Impairment in Dermal Fibroblasts from Charcot-Marie-Tooth Disease Type 1A Patients. Am J Pathol. 2018;188:728-738 pubmed publisher
  52. Sun H, Krauss R, Chang J, Teng B. PCSK9 deficiency reduces atherosclerosis, apolipoprotein B secretion, and endothelial dysfunction. J Lipid Res. 2018;59:207-223 pubmed publisher
  53. Ni Z, HE J, Wu Y, Hu C, Dai X, Yan X, et al. AKT-mediated phosphorylation of ATG4B impairs mitochondrial activity and enhances the Warburg effect in hepatocellular carcinoma cells. Autophagy. 2018;14:685-701 pubmed publisher
  54. Jimenez Orgaz A, Kvainickas A, Nägele H, Denner J, Eimer S, Dengjel J, et al. Control of RAB7 activity and localization through the retromer-TBC1D5 complex enables RAB7-dependent mitophagy. EMBO J. 2018;37:235-254 pubmed publisher
  55. Bansal M, Moharir S, Sailasree S, Sirohi K, Sudhakar C, Sarathi D, et al. Optineurin promotes autophagosome formation by recruiting the autophagy-related Atg12-5-16L1 complex to phagophores containing the Wipi2 protein. J Biol Chem. 2018;293:132-147 pubmed publisher
  56. Lüningschrör P, Binotti B, Dombert B, Heimann P, Pérez Lara A, Slotta C, et al. Plekhg5-regulated autophagy of synaptic vesicles reveals a pathogenic mechanism in motoneuron disease. Nat Commun. 2017;8:678 pubmed publisher
  57. Xu Y, Wang Y, Yao A, Xu Z, Dou H, Shen S, et al. Low Frequency Magnetic Fields Induce Autophagy-associated Cell Death in Lung Cancer through miR-486-mediated Inhibition of Akt/mTOR Signaling Pathway. Sci Rep. 2017;7:11776 pubmed publisher
  58. Ruan H, Ma Y, Torres S, Zhang B, Feriod C, Heck R, et al. Calcium-dependent O-GlcNAc signaling drives liver autophagy in adaptation to starvation. Genes Dev. 2017;31:1655-1665 pubmed publisher
  59. Bartolomeo R, Cinque L, De Leonibus C, Forrester A, Salzano A, Monfregola J, et al. mTORC1 hyperactivation arrests bone growth in lysosomal storage disorders by suppressing autophagy. J Clin Invest. 2017;127:3717-3729 pubmed publisher
  60. Tseng J, Xie L, Song S, Xie Y, Allen L, Ajit D, et al. The Deacetylase HDAC6 Mediates Endogenous Neuritic Tau Pathology. Cell Rep. 2017;20:2169-2183 pubmed publisher
  61. Rocchi A, Yamamoto S, Ting T, Fan Y, SADLEIR K, Wang Y, et al. A Becn1 mutation mediates hyperactive autophagic sequestration of amyloid oligomers and improved cognition in Alzheimer's disease. PLoS Genet. 2017;13:e1006962 pubmed publisher
  62. Button R, Roberts S, Willis T, Hanemann C, Luo S. Accumulation of autophagosomes confers cytotoxicity. J Biol Chem. 2017;292:13599-13614 pubmed publisher
  63. Dai S, Dulcey A, Hu X, Wassif C, Porter F, Austin C, et al. Methyl-β-cyclodextrin restores impaired autophagy flux in Niemann-Pick C1-deficient cells through activation of AMPK. Autophagy. 2017;13:1435-1451 pubmed publisher
  64. Tan Y, Ci Y, Dai X, Wu F, Guo J, Liu D, et al. Cullin 3SPOP ubiquitin E3 ligase promotes the poly-ubiquitination and degradation of HDAC6. Oncotarget. 2017;8:47890-47901 pubmed publisher
  65. Tan S, Chadha S, Liu Y, Gabasova E, Perera D, Ahmed K, et al. A Class of Environmental and Endogenous Toxins Induces BRCA2 Haploinsufficiency and Genome Instability. Cell. 2017;169:1105-1118.e15 pubmed publisher
  66. Wang G, Zhou H, Strulovici Barel Y, Al Hijji M, Ou X, Salit J, et al. Role of OSGIN1 in mediating smoking-induced autophagy in the human airway epithelium. Autophagy. 2017;13:1205-1220 pubmed publisher
  67. Sakamaki J, Wilkinson S, Hahn M, Tasdemir N, O Prey J, Clark W, et al. Bromodomain Protein BRD4 Is a Transcriptional Repressor of Autophagy and Lysosomal Function. Mol Cell. 2017;66:517-532.e9 pubmed publisher
  68. Nayar U, Sadek J, Reichel J, Hernandez Hopkins D, Akar G, Barelli P, et al. Identification of a nucleoside analog active against adenosine kinase-expressing plasma cell malignancies. J Clin Invest. 2017;127:2066-2080 pubmed publisher
  69. Wu D, Adamopoulos I. Loss of WDFY3 ameliorates severity of serum transfer-induced arthritis independently of autophagy. Cell Immunol. 2017;316:61-69 pubmed publisher
  70. Ashkenazi A, Bento C, Ricketts T, Vicinanza M, Siddiqi F, Pavel M, et al. Polyglutamine tracts regulate beclin 1-dependent autophagy. Nature. 2017;545:108-111 pubmed publisher
  71. Banerjee B, Koner D, Lal P, Saha N. Unique mitochondrial localization of arginase 1 and 2 in hepatocytes of air-breathing walking catfish, Clarias batrachus and their differential expression patterns under hyper-ammonia stress. Gene. 2017;622:13-22 pubmed publisher
  72. Kaufman D, Papillon J, Larose L, Iwawaki T, Cybulsky A. Deletion of inositol-requiring enzyme-1? in podocytes disrupts glomerular capillary integrity and autophagy. Mol Biol Cell. 2017;28:1636-1651 pubmed publisher
  73. Xiao Z, Gaertner S, Morresi Hauf A, Genzel R, Duell T, Ullrich A, et al. Metformin Triggers Autophagy to Attenuate Drug-Induced Apoptosis in NSCLC Cells, with Minor Effects on Tumors of Diabetic Patients. Neoplasia. 2017;19:385-395 pubmed publisher
  74. Gao Y, Zhuang Z, Gao S, Li X, Zhang Z, Ye Z, et al. Tetrahydrocurcumin reduces oxidative stress-induced apoptosis via the mitochondrial apoptotic pathway by modulating autophagy in rats after traumatic brain injury. Am J Transl Res. 2017;9:887-899 pubmed
  75. Zhang Y, Nguyen D, Olzomer E, Poon G, Cole N, Puvanendran A, et al. Rescue of Pink1 Deficiency by Stress-Dependent Activation of Autophagy. Cell Chem Biol. 2017;24:471-480.e4 pubmed publisher
  76. Zhang X, Fan J, Wang S, Li Y, Wang Y, Li S, et al. Targeting CD47 and Autophagy Elicited Enhanced Antitumor Effects in Non-Small Cell Lung Cancer. Cancer Immunol Res. 2017;5:363-375 pubmed publisher
  77. Xu Q, Zhu N, Chen S, Zhao P, Ren H, Zhu S, et al. E3 Ubiquitin Ligase Nedd4 Promotes Japanese Encephalitis Virus Replication by Suppressing Autophagy in Human Neuroblastoma Cells. Sci Rep. 2017;7:45375 pubmed publisher
  78. Kang H, Park J, Choi K, Kim Y, Choi H, Jung C, et al. Chemical screening identifies ATM as a target for alleviating senescence. Nat Chem Biol. 2017;13:616-623 pubmed publisher
  79. Marwaha R, Arya S, Jagga D, Kaur H, Tuli A, Sharma M. The Rab7 effector PLEKHM1 binds Arl8b to promote cargo traffic to lysosomes. J Cell Biol. 2017;216:1051-1070 pubmed publisher
  80. Fajardo V, Gamu D, Mitchell A, Bloemberg D, Bombardier E, Chambers P, et al. Sarcolipin deletion exacerbates soleus muscle atrophy and weakness in phospholamban overexpressing mice. PLoS ONE. 2017;12:e0173708 pubmed publisher
  81. Kim J, Hyun H, Min S, Kang T. Sustained HSP25 Expression Induces Clasmatodendrosis via ER Stress in the Rat Hippocampus. Front Cell Neurosci. 2017;11:47 pubmed publisher
  82. Samuel S, Ghosh S, Majeed Y, Arunachalam G, Emara M, Ding H, et al. Metformin represses glucose starvation induced autophagic response in microvascular endothelial cells and promotes cell death. Biochem Pharmacol. 2017;132:118-132 pubmed publisher
  83. Møller A, Kampmann U, Hedegaard J, Thorsen K, Nordentoft I, Vendelbo M, et al. Altered gene expression and repressed markers of autophagy in skeletal muscle of insulin resistant patients with type 2 diabetes. Sci Rep. 2017;7:43775 pubmed publisher
  84. Datta S, Choudhury D, Das A, Das Mukherjee D, Das N, Roy S, et al. Paclitaxel resistance development is associated with biphasic changes in reactive oxygen species, mitochondrial membrane potential and autophagy with elevated energy production capacity in lung cancer cells: A chronological study. Tumour Biol. 2017;39:1010428317694314 pubmed publisher
  85. Kemter E, Frohlich T, Arnold G, Wolf E, Wanke R. Mitochondrial Dysregulation Secondary to Endoplasmic Reticulum Stress in Autosomal Dominant Tubulointerstitial Kidney Disease - UMOD (ADTKD-UMOD). Sci Rep. 2017;7:42970 pubmed publisher
  86. Kovacs T, Billes V, Komlos M, Hotzi B, Manzéger A, Tarnóci A, et al. The small molecule AUTEN-99 (autophagy enhancer-99) prevents the progression of neurodegenerative symptoms. Sci Rep. 2017;7:42014 pubmed publisher
  87. Wolfson R, Chantranupong L, Wyant G, Gu X, Orozco J, Shen K, et al. KICSTOR recruits GATOR1 to the lysosome and is necessary for nutrients to regulate mTORC1. Nature. 2017;543:438-442 pubmed publisher
  88. Delaney J, Patel C, Willis K, Haghighiabyaneh M, Axelrod J, Tancioni I, et al. Haploinsufficiency networks identify targetable patterns of allelic deficiency in low mutation ovarian cancer. Nat Commun. 2017;8:14423 pubmed publisher
  89. Jung J, Nayak A, Schaeffer V, Starzetz T, Kirsch A, Muller S, et al. Multiplex image-based autophagy RNAi screening identifies SMCR8 as ULK1 kinase activity and gene expression regulator. elife. 2017;6: pubmed publisher
  90. Chen S, Jing Y, Kang X, Yang L, Wang D, Zhang W, et al. Histone H2B monoubiquitination is a critical epigenetic switch for the regulation of autophagy. Nucleic Acids Res. 2017;45:1144-1158 pubmed publisher
  91. Roy D, Mondal S, Khurana A, Jung D, Hoffmann R, He X, et al. Loss of HSulf-1: The Missing Link between Autophagy and Lipid Droplets in Ovarian Cancer. Sci Rep. 2017;7:41977 pubmed publisher
  92. Russo V, Inglese C, Avallone L, Roperto F, Abate C, Zizzo N, et al. Sigma 2 receptor expression levels in blood and bladder from healthy and bladder cancer cattle. Vet Comp Oncol. 2017;15:1503-1512 pubmed publisher
  93. Kim M, Deng H, Wong Y, Siddique T, Krainc D. The Parkinson's disease-linked protein TMEM230 is required for Rab8a-mediated secretory vesicle trafficking and retromer trafficking. Hum Mol Genet. 2017;26:729-741 pubmed publisher
  94. Ma K, Fu W, Tang M, Zhang C, Hou T, Li R, et al. PTK2-mediated degradation of ATG3 impedes cancer cells susceptible to DNA damage treatment. Autophagy. 2017;13:579-591 pubmed publisher
  95. Ruf S, Heberle A, Langelaar Makkinje M, Gelino S, Wilkinson D, Gerbeth C, et al. PLK1 (polo like kinase 1) inhibits MTOR complex 1 and promotes autophagy. Autophagy. 2017;13:486-505 pubmed publisher
  96. Coccia M, Rossi A, Riccio A, Trotta E, Santoro M. Human NF-κB repressing factor acts as a stress-regulated switch for ribosomal RNA processing and nucleolar homeostasis surveillance. Proc Natl Acad Sci U S A. 2017;114:1045-1050 pubmed publisher
  97. Granato M, Rizzello C, Gilardini Montani M, Cuomo L, Vitillo M, Santarelli R, et al. Quercetin induces apoptosis and autophagy in primary effusion lymphoma cells by inhibiting PI3K/AKT/mTOR and STAT3 signaling pathways. J Nutr Biochem. 2017;41:124-136 pubmed publisher
  98. Borgia D, Malena A, Spinazzi M, Desbats M, Salviati L, Russell A, et al. Increased mitophagy in the skeletal muscle of spinal and bulbar muscular atrophy patients. Hum Mol Genet. 2017;26:1087-1103 pubmed publisher
  99. Sun A, Wei J, Childress C, Shaw J, Peng K, Shao G, et al. The E3 ubiquitin ligase NEDD4 is an LC3-interactive protein and regulates autophagy. Autophagy. 2017;13:522-537 pubmed publisher
  100. Pietrocola F, Demont Y, Castoldi F, Enot D, Durand S, Semeraro M, et al. Metabolic effects of fasting on human and mouse blood in vivo. Autophagy. 2017;13:567-578 pubmed publisher
  101. Capizzi M, Strappazzon F, Cianfanelli V, Papaleo E, Cecconi F. MIR7-3HG, a MYC-dependent modulator of cell proliferation, inhibits autophagy by a regulatory loop involving AMBRA1. Autophagy. 2017;13:554-566 pubmed publisher
  102. Laporte A, Barrott J, Yao R, Poulin N, Brodin B, Jones K, et al. HDAC and Proteasome Inhibitors Synergize to Activate Pro-Apoptotic Factors in Synovial Sarcoma. PLoS ONE. 2017;12:e0169407 pubmed publisher
  103. Hosoya M, Fujioka M, Sone T, Okamoto S, Akamatsu W, Ukai H, et al. Cochlear Cell Modeling Using Disease-Specific iPSCs Unveils a Degenerative Phenotype and Suggests Treatments for Congenital Progressive Hearing Loss. Cell Rep. 2017;18:68-81 pubmed publisher
  104. Wei Y, Chiang W, Sumpter R, Mishra P, Levine B. Prohibitin 2 Is an Inner Mitochondrial Membrane Mitophagy Receptor. Cell. 2017;168:224-238.e10 pubmed publisher
  105. Yeung P, Lai A, Son H, Zhang X, Hwang O, Chung S, et al. Aldose reductase deficiency leads to oxidative stress-induced dopaminergic neuronal loss and autophagic abnormality in an animal model of Parkinson's disease. Neurobiol Aging. 2017;50:119-133 pubmed publisher
  106. Da Ros M, Lehtiniemi T, Olotu O, Fischer D, Zhang F, Vihinen H, et al. FYCO1 and autophagy control the integrity of the haploid male germ cell-specific RNP granules. Autophagy. 2017;13:302-321 pubmed publisher
  107. Shi B, Huang Q, Birkett R, Doyle R, Dorfleutner A, Stehlik C, et al. SNAPIN is critical for lysosomal acidification and autophagosome maturation in macrophages. Autophagy. 2017;13:285-301 pubmed publisher
  108. Pavel M, Imarisio S, Menzies F, Jimenez Sanchez M, Siddiqi F, Wu X, et al. CCT complex restricts neuropathogenic protein aggregation via autophagy. Nat Commun. 2016;7:13821 pubmed publisher
  109. Su F, Myers V, Knezevic T, Wang J, Gao E, Madesh M, et al. Bcl-2-associated athanogene 3 protects the heart from ischemia/reperfusion injury. JCI Insight. 2016;1:e90931 pubmed publisher
  110. Li J, Chen T, Xiao M, Li N, Wang S, Su H, et al. Mouse Sirt3 promotes autophagy in AngII-induced myocardial hypertrophy through the deacetylation of FoxO1. Oncotarget. 2016;7:86648-86659 pubmed publisher
  111. Cramer S, Saha A, Liu J, Tadi S, Tiziani S, Yan W, et al. Systemic depletion of L-cyst(e)ine with cyst(e)inase increases reactive oxygen species and suppresses tumor growth. Nat Med. 2017;23:120-127 pubmed publisher
  112. Tábara L, Escalante R. VMP1 Establishes ER-Microdomains that Regulate Membrane Contact Sites and Autophagy. PLoS ONE. 2016;11:e0166499 pubmed publisher
  113. Sakata K, Araki K, Nakano H, Nishina T, Komazawa Sakon S, Murai S, et al. Novel method to rescue a lethal phenotype through integration of target gene onto the X-chromosome. Sci Rep. 2016;6:37200 pubmed publisher
  114. Cao L, Riascos Bernal D, Chinnasamy P, Dunaway C, Hou R, Pujato M, et al. Control of mitochondrial function and cell growth by the atypical cadherin Fat1. Nature. 2016;539:575-578 pubmed publisher
  115. Lee M, Sumpter R, Zou Z, Sirasanagandla S, Wei Y, Mishra P, et al. Peroxisomal protein PEX13 functions in selective autophagy. EMBO Rep. 2017;18:48-60 pubmed publisher
  116. Li D, Xie B, Wu X, Li J, Ding Y, Wen X, et al. Late-stage inhibition of autophagy enhances calreticulin surface exposure. Oncotarget. 2016;7:80842-80854 pubmed publisher
  117. Cai Y, Yang L, Hu G, Chen X, Niu F, Yuan L, et al. Regulation of morphine-induced synaptic alterations: Role of oxidative stress, ER stress, and autophagy. J Cell Biol. 2016;215:245-258 pubmed
  118. Lim J, Kim H, Nguyen K, Cho K. The role of TLR9 in stress-dependent autophagy formation. Biochem Biophys Res Commun. 2016;481:219-226 pubmed publisher
  119. Fan Y, Wang N, Rocchi A, Zhang W, Vassar R, Zhou Y, et al. Identification of natural products with neuronal and metabolic benefits through autophagy induction. Autophagy. 2017;13:41-56 pubmed publisher
  120. Han J, Bae J, Choi C, Choi S, Kang H, Jo E, et al. Autophagy induced by AXL receptor tyrosine kinase alleviates acute liver injury via inhibition of NLRP3 inflammasome activation in mice. Autophagy. 2016;12:2326-2343 pubmed
  121. Liu L, Tao Z, Zheng L, Brooke J, Smith C, Liu D, et al. FoxO1 interacts with transcription factor EB and differentially regulates mitochondrial uncoupling proteins via autophagy in adipocytes. Cell Death Discov. 2016;2:16066 pubmed
  122. Yang M, Wang B, Miao L, Xu X, He X. Autophagy is involved in aldosterone‑induced mesangial cell proliferation. Mol Med Rep. 2016;14:4638-4642 pubmed publisher
  123. Wang H, Chen S, Lo W. Identification of Cofilin-1 Induces G0/G1 Arrest and Autophagy in Angiotensin-(1-7)-treated Human Aortic Endothelial Cells from iTRAQ Quantitative Proteomics. Sci Rep. 2016;6:35372 pubmed publisher
  124. Figueroa González G, García Castillo V, Coronel Hernández J, López Urrutia E, León Cabrera S, Arias Romero L, et al. Anti-inflammatory and Antitumor Activity of a Triple Therapy for a Colitis-Related Colorectal Cancer. J Cancer. 2016;7:1632-1644 pubmed
  125. Vodicka P, Chase K, Iuliano M, Tousley A, Valentine D, Sapp E, et al. Autophagy Activation by Transcription Factor EB (TFEB) in Striatum of HDQ175/Q7 Mice. J Huntingtons Dis. 2016;5:249-260 pubmed
  126. White S, McDermott M, Sufit R, Kosmac K, Bugg A, Gonzalez Freire M, et al. Walking performance is positively correlated to calf muscle fiber size in peripheral artery disease subjects, but fibers show aberrant mitophagy: an observational study. J Transl Med. 2016;14:284 pubmed publisher
  127. Wei R, Lin S, Wu W, Chen L, Li C, Chen H, et al. A microtubule inhibitor, ABT-751, induces autophagy and delays apoptosis in Huh-7 cells. Toxicol Appl Pharmacol. 2016;311:88-98 pubmed publisher
  128. Mercado Pimentel M, Igarashi S, Dunn A, Behbahani M, Miller C, Read C, et al. The Novel Small Molecule Inhibitor, OSU-T315, Suppresses Vestibular Schwannoma and Meningioma Growth by Inhibiting PDK2 Function in the AKT Pathway Activation. Austin J Med Oncol. 2016;3: pubmed
  129. Hubert V, Peschel A, Langer B, Groger M, Rees A, Kain R. LAMP-2 is required for incorporating syntaxin-17 into autophagosomes and for their fusion with lysosomes. Biol Open. 2016;5:1516-1529 pubmed publisher
  130. Teo W, Kerr M, Teasdale R. MTMR4 Is Required for the Stability of the Salmonella-Containing Vacuole. Front Cell Infect Microbiol. 2016;6:91 pubmed publisher
  131. Qin Y, Liu Y, Hao W, Decker Y, Tomic I, Menger M, et al. Stimulation of TLR4 Attenuates Alzheimer's Disease-Related Symptoms and Pathology in Tau-Transgenic Mice. J Immunol. 2016;197:3281-3292 pubmed
  132. Heulot M, Chevalier N, Puyal J, Margue C, Michel S, Kreis S, et al. The TAT-RasGAP317-326 anti-cancer peptide can kill in a caspase-, apoptosis-, and necroptosis-independent manner. Oncotarget. 2016;7:64342-64359 pubmed publisher
  133. Cudré Cung H, Zavadakova P, Do Vale Pereira S, Remacle N, Henry H, Ivanisevic J, et al. Ammonium accumulation is a primary effect of 2-methylcitrate exposure in an in vitro model for brain damage in methylmalonic aciduria. Mol Genet Metab. 2016;119:57-67 pubmed publisher
  134. Conlon D, Thomas T, Fedotova T, Hernandez Ono A, Di Paolo G, Chan R, et al. Inhibition of apolipoprotein B synthesis stimulates endoplasmic reticulum autophagy that prevents steatosis. J Clin Invest. 2016;126:3852-3867 pubmed publisher
  135. Mirkheshti N, Park S, Jiang S, Cropper J, Werner S, Song C, et al. Dual targeting of androgen receptor and mTORC1 by salinomycin in prostate cancer. Oncotarget. 2016;7:62240-62254 pubmed publisher
  136. Lin M, Liu H, Xiong Q, Niu H, Cheng Z, Yamamoto A, et al. Ehrlichia secretes Etf-1 to induce autophagy and capture nutrients for its growth through RAB5 and class III phosphatidylinositol 3-kinase. Autophagy. 2016;12:2145-2166 pubmed
  137. Ratovitski E. Tumor Protein (TP)-p53 Members as Regulators of Autophagy in Tumor Cells upon Marine Drug Exposure. Mar Drugs. 2016;14: pubmed publisher
  138. Weikel K, Cacicedo J, Ruderman N, Ido Y. Knockdown of GSK3β increases basal autophagy and AMPK signalling in nutrient-laden human aortic endothelial cells. Biosci Rep. 2016;36: pubmed publisher
  139. Jo Y, Park N, Park S, Kim B, Shin J, Jo D, et al. O-GlcNAcylation of ATG4B positively regulates autophagy by increasing its hydroxylase activity. Oncotarget. 2016;7:57186-57196 pubmed publisher
  140. Ogasawara R, Fujita S, Hornberger T, Kitaoka Y, Makanae Y, Nakazato K, et al. The role of mTOR signalling in the regulation of skeletal muscle mass in a rodent model of resistance exercise. Sci Rep. 2016;6:31142 pubmed publisher
  141. Xu S, Law B, Mok S, Leung E, Fan X, Coghi P, et al. Autophagic degradation of epidermal growth factor receptor in gefitinib-resistant lung cancer by celastrol. Int J Oncol. 2016;49:1576-88 pubmed publisher
  142. Xing Y, Cao R, Hu H. TLR and NLRP3 inflammasome-dependent innate immune responses to tumor-derived autophagosomes (DRibbles). Cell Death Dis. 2016;7:e2322 pubmed publisher
  143. Bartlett J, Trivedi P, Yeung P, Kienesberger P, Pulinilkunnil T. Doxorubicin impairs cardiomyocyte viability by suppressing transcription factor EB expression and disrupting autophagy. Biochem J. 2016;473:3769-3789 pubmed
  144. Wang J, Zhou J, Kho D, Reiners J, Wu G. Role for DUSP1 (dual-specificity protein phosphatase 1) in the regulation of autophagy. Autophagy. 2016;12:1791-1803 pubmed
  145. Grinshtein N, Rioseco C, Marcellus R, UEHLING D, Aman A, Lun X, et al. Small molecule epigenetic screen identifies novel EZH2 and HDAC inhibitors that target glioblastoma brain tumor-initiating cells. Oncotarget. 2016;7:59360-59376 pubmed publisher
  146. Buckingham E, Jarosinski K, Jackson W, Carpenter J, Grose C. Exocytosis of Varicella-Zoster Virus Virions Involves a Convergence of Endosomal and Autophagy Pathways. J Virol. 2016;90:8673-85 pubmed publisher
  147. Geng J, Li J, Huang T, Zhao K, Chen Q, Guo W, et al. A novel manganese complex selectively induces malignant glioma cell death by targeting mitochondria. Mol Med Rep. 2016;14:1970-8 pubmed publisher
  148. Pajares M, Jiménez Moreno N, García Yagüe A, Escoll M, De Ceballos M, Van Leuven F, et al. Transcription factor NFE2L2/NRF2 is a regulator of macroautophagy genes. Autophagy. 2016;12:1902-1916 pubmed
  149. Hewitt G, Carroll B, Sarallah R, Correia Melo C, Ogrodnik M, Nelson G, et al. SQSTM1/p62 mediates crosstalk between autophagy and the UPS in DNA repair. Autophagy. 2016;12:1917-1930 pubmed
  150. Zea A, Stewart T, Ascani J, Tate D, Finkel Jimenez B, Wilk A, et al. Activation of the IL-2 Receptor in Podocytes: A Potential Mechanism for Podocyte Injury in Idiopathic Nephrotic Syndrome?. PLoS ONE. 2016;11:e0157907 pubmed publisher
  151. Pan H, Zhong X, Lee S. Sustained activation of mTORC1 in macrophages increases AMPKα-dependent autophagy to maintain cellular homeostasis. BMC Biochem. 2016;17:14 pubmed publisher
  152. Bramini M, Sacchetti S, Armirotti A, Rocchi A, Vazquez E, León Castellanos V, et al. Graphene Oxide Nanosheets Disrupt Lipid Composition, Ca(2+) Homeostasis, and Synaptic Transmission in Primary Cortical Neurons. ACS Nano. 2016;10:7154-71 pubmed publisher
  153. Dejesus R, Moretti F, McAllister G, Wang Z, Bergman P, Liu S, et al. Functional CRISPR screening identifies the ufmylation pathway as a regulator of SQSTM1/p62. elife. 2016;5: pubmed publisher
  154. Davis M, Delaney J, Patel C, Storgard R, Stupack D. Nelfinavir is effective against human cervical cancer cells in vivo: a potential treatment modality in resource-limited settings. Drug Des Devel Ther. 2016;10:1837-46 pubmed publisher
  155. Hamlin A, Basford J, Jaeschke A, Hui D. LRP1 Protein Deficiency Exacerbates Palmitate-induced Steatosis and Toxicity in Hepatocytes. J Biol Chem. 2016;291:16610-9 pubmed publisher
  156. Shin H, Kim H, Oh S, Lee J, Kee M, Ko H, et al. AMPK-SKP2-CARM1 signalling cascade in transcriptional regulation of autophagy. Nature. 2016;534:553-7 pubmed publisher
  157. Gómez Sánchez R, Yakhine Diop S, Bravo San Pedro J, Pizarro Estrella E, Rodríguez Arribas M, Climent V, et al. PINK1 deficiency enhances autophagy and mitophagy induction. Mol Cell Oncol. 2016;3:e1046579 pubmed publisher
  158. Kuramoto K, Wang N, Fan Y, Zhang W, Schoenen F, Frankowski K, et al. Autophagy activation by novel inducers prevents BECN2-mediated drug tolerance to cannabinoids. Autophagy. 2016;12:1460-71 pubmed publisher
  159. Andersson A, Andersson B, Lorell C, Raffetseder J, Larsson M, Blomgran R. Autophagy induction targeting mTORC1 enhances Mycobacterium tuberculosis replication in HIV co-infected human macrophages. Sci Rep. 2016;6:28171 pubmed publisher
  160. Wijdeven R, Janssen H, Nahidiazar L, Janssen L, Jalink K, Berlin I, et al. Cholesterol and ORP1L-mediated ER contact sites control autophagosome transport and fusion with the endocytic pathway. Nat Commun. 2016;7:11808 pubmed publisher
  161. Kobayashi K, Araya J, Minagawa S, Hara H, Saito N, Kadota T, et al. Involvement of PARK2-Mediated Mitophagy in Idiopathic Pulmonary Fibrosis Pathogenesis. J Immunol. 2016;197:504-16 pubmed publisher
  162. Ando K, Tomimura K, Sazdovitch V, Suain V, Yilmaz Z, Authelet M, et al. Level of PICALM, a key component of clathrin-mediated endocytosis, is correlated with levels of phosphotau and autophagy-related proteins and is associated with tau inclusions in AD, PSP and Pick disease. Neurobiol Dis. 2016;94:32-43 pubmed publisher
  163. Foltz S, Luan J, Call J, Patel A, Peissig K, Fortunato M, et al. Four-week rapamycin treatment improves muscular dystrophy in a fukutin-deficient mouse model of dystroglycanopathy. Skelet Muscle. 2016;6:20 pubmed publisher
  164. Adams O, Dislich B, Berezowska S, Schläfli A, Seiler C, Kröll D, et al. Prognostic relevance of autophagy markers LC3B and p62 in esophageal adenocarcinomas. Oncotarget. 2016;7:39241-39255 pubmed publisher
  165. Barnard R, Regan D, Hansen R, Maycotte P, Thorburn A, Gustafson D. Autophagy Inhibition Delays Early but Not Late-Stage Metastatic Disease. J Pharmacol Exp Ther. 2016;358:282-93 pubmed publisher
  166. Elimam H, Papillon J, Kaufman D, Guillemette J, Aoudjit L, Gross R, et al. Genetic Ablation of Calcium-independent Phospholipase A2? Induces Glomerular Injury in Mice. J Biol Chem. 2016;291:14468-82 pubmed publisher
  167. Droubi A, Bulley S, Clarke J, Irvine R. Nuclear localizations of phosphatidylinositol 5-phosphate 4-kinases ? and ? are dynamic and independently regulated during starvation-induced stress. Biochem J. 2016;473:2155-63 pubmed publisher
  168. Ranjan A, Srivastava S. Penfluridol suppresses pancreatic tumor growth by autophagy-mediated apoptosis. Sci Rep. 2016;6:26165 pubmed publisher
  169. Koskela A, Reinisalo M, Petrovski G, Sinha D, Olmiere C, Karjalainen R, et al. Nutraceutical with Resveratrol and Omega-3 Fatty Acids Induces Autophagy in ARPE-19 Cells. Nutrients. 2016;8: pubmed publisher
  170. Liu L, Wang C, Lin Y, Xi Y, Li H, Shi S, et al. Suppression of calcium?sensing receptor ameliorates cardiac hypertrophy through inhibition of autophagy. Mol Med Rep. 2016;14:111-20 pubmed publisher
  171. Park S, Yi H, Suh N, Park Y, Koh J, Jeong S, et al. Inhibition of EHMT2/G9a epigenetically increases the transcription of Beclin-1 via an increase in ROS and activation of NF-?B. Oncotarget. 2016;7:39796-39808 pubmed publisher
  172. Song J, Sun Y, Peluso I, Zeng Y, Yu X, Lu J, et al. A novel curcumin analog binds to and activates TFEB in vitro and in vivo independent of MTOR inhibition. Autophagy. 2016;12:1372-89 pubmed publisher
  173. Pastore N, Brady O, Diab H, Martina J, Sun L, Huynh T, et al. TFEB and TFE3 cooperate in the regulation of the innate immune response in activated macrophages. Autophagy. 2016;12:1240-58 pubmed publisher
  174. Karvela M, Baquero P, Kuntz E, Mukhopadhyay A, Mitchell R, Allan E, et al. ATG7 regulates energy metabolism, differentiation and survival of Philadelphia-chromosome-positive cells. Autophagy. 2016;12:936-48 pubmed publisher
  175. Ting W, Yang J, Kuo C, Xiao Z, Lu X, Yeh Y, et al. Environmental tobacco smoke increases autophagic effects but decreases longevity associated with Sirt-1 protein expression in young C57BL mice hearts. Oncotarget. 2016;7:39017-39025 pubmed publisher
  176. De Filippis L, Halikere A, McGowan H, Moore J, Tischfield J, Hart R, et al. Ethanol-mediated activation of the NLRP3 inflammasome in iPS cells and iPS cells-derived neural progenitor cells. Mol Brain. 2016;9:51 pubmed publisher
  177. Onesto E, Colombrita C, Gumina V, Borghi M, Dusi S, Doretti A, et al. Gene-specific mitochondria dysfunctions in human TARDBP and C9ORF72 fibroblasts. Acta Neuropathol Commun. 2016;4:47 pubmed publisher
  178. Xu J, Li J, Wang J, Chi Y, Zhang K, Cui R. Heme oxygenase?1 protects H2O2?insulted glomerular mesangial cells from excessive autophagy. Mol Med Rep. 2016;13:5269-75 pubmed publisher
  179. Swiader A, Nahapetyan H, Faccini J, D Angelo R, Mucher E, Elbaz M, et al. Mitophagy acts as a safeguard mechanism against human vascular smooth muscle cell apoptosis induced by atherogenic lipids. Oncotarget. 2016;7:28821-35 pubmed publisher
  180. Follo C, Barbone D, Richards W, Bueno R, Broaddus V. Autophagy initiation correlates with the autophagic flux in 3D models of mesothelioma and with patient outcome. Autophagy. 2016;12:1180-94 pubmed publisher
  181. Pryde K, Smith H, Chau K, Schapira A. PINK1 disables the anti-fission machinery to segregate damaged mitochondria for mitophagy. J Cell Biol. 2016;213:163-71 pubmed publisher
  182. Lai C, Tsai C, Kuo W, Ho T, Day C, Pai P, et al. Multi-Strain Probiotics Inhibit Cardiac Myopathies and Autophagy to Prevent Heart Injury in High-Fat Diet-Fed Rats. Int J Med Sci. 2016;13:277-85 pubmed publisher
  183. Wang Q, Xue L, Zhang X, Bu S, Zhu X, Lai D. Autophagy protects ovarian cancer-associated fibroblasts against oxidative stress. Cell Cycle. 2016;15:1376-85 pubmed publisher
  184. Xiao L, Shi X, Zhang Y, Zhu Y, Zhu L, Tian W, et al. YAP induces cisplatin resistance through activation of autophagy in human ovarian carcinoma cells. Onco Targets Ther. 2016;9:1105-14 pubmed publisher
  185. Wohlgemuth S, Ramirez Lee Y, Tao S, Monteiro A, Ahmed B, Dahl G. Short communication: Effect of heat stress on markers of autophagy in the mammary gland during the dry period. J Dairy Sci. 2016;99:4875-4880 pubmed publisher
  186. Ren J, Li J, Liu X, Feng Y, Gui Y, Yang J, et al. Quercetin Inhibits Fibroblast Activation and Kidney Fibrosis Involving the Suppression of Mammalian Target of Rapamycin and β-catenin Signaling. Sci Rep. 2016;6:23968 pubmed publisher
  187. Dey A, Mustafi S, Saha S, Kumar Dhar Dwivedi S, Mukherjee P, Bhattacharya R. Inhibition of BMI1 induces autophagy-mediated necroptosis. Autophagy. 2016;12:659-70 pubmed publisher
  188. Park J, Jung C, Seo M, Otto N, Grunwald D, Kim K, et al. The ULK1 complex mediates MTORC1 signaling to the autophagy initiation machinery via binding and phosphorylating ATG14. Autophagy. 2016;12:547-64 pubmed publisher
  189. Phelps Polirer K, Abt M, Smith D, Yeh E. Co-Targeting of JNK and HUNK in Resistant HER2-Positive Breast Cancer. PLoS ONE. 2016;11:e0153025 pubmed publisher
  190. Lin T, Chang Y, Lee S, Campbell M, Wang T, Shen S, et al. REST reduction is essential for hypoxia-induced neuroendocrine differentiation of prostate cancer cells by activating autophagy signaling. Oncotarget. 2016;7:26137-51 pubmed publisher
  191. Krishnan V, White Z, McMahon C, Hodgetts S, Fitzgerald M, Shavlakadze T, et al. A Neurogenic Perspective of Sarcopenia: Time Course Study of Sciatic Nerves From Aging Mice. J Neuropathol Exp Neurol. 2016;75:464-78 pubmed publisher
  192. Prieto J, León M, Ponsoda X, Sendra R, Bort R, Ferrer Lorente R, et al. Early ERK1/2 activation promotes DRP1-dependent mitochondrial fission necessary for cell reprogramming. Nat Commun. 2016;7:11124 pubmed publisher
  193. Xia X, Che Y, Gao Y, Zhao S, Ao C, Yang H, et al. Arginine Supplementation Recovered the IFN-?-Mediated Decrease in Milk Protein and Fat Synthesis by Inhibiting the GCN2/eIF2? Pathway, Which Induces Autophagy in Primary Bovine Mammary Epithelial Cells. Mol Cells. 2016;39:410-7 pubmed publisher
  194. Chen S, Wang C, Yeo S, Liang C, Okamoto T, Sun S, et al. Distinct roles of autophagy-dependent and -independent functions of FIP200 revealed by generation and analysis of a mutant knock-in mouse model. Genes Dev. 2016;30:856-69 pubmed publisher
  195. Gschweitl M, Ulbricht A, Barnes C, Enchev R, Stoffel Studer I, Meyer Schaller N, et al. A SPOPL/Cullin-3 ubiquitin ligase complex regulates endocytic trafficking by targeting EPS15 at endosomes. elife. 2016;5:e13841 pubmed publisher
  196. Lopes V, Loitto V, Audinot J, Bayat N, Gutleb A, Cristobal S. Dose-dependent autophagic effect of titanium dioxide nanoparticles in human HaCaT cells at non-cytotoxic levels. J Nanobiotechnology. 2016;14:22 pubmed publisher
  197. Ruparelia A, Oorschot V, Ramm G, Bryson Richardson R. FLNC myofibrillar myopathy results from impaired autophagy and protein insufficiency. Hum Mol Genet. 2016;25:2131-2142 pubmed
  198. Yeo S, Itahana Y, Guo A, Han R, Iwamoto K, Nguyen H, et al. Transglutaminase 2 contributes to a TP53-induced autophagy program to prevent oncogenic transformation. elife. 2016;5:e07101 pubmed publisher
  199. Jennewein L, Ronellenfitsch M, Antonietti P, Ilina E, Jung J, Stadel D, et al. Diagnostic and clinical relevance of the autophago-lysosomal network in human gliomas. Oncotarget. 2016;7:20016-32 pubmed publisher
  200. Scotton C, Bovolenta M, Schwartz E, Falzarano M, Martoni E, Passarelli C, et al. Deep RNA profiling identified CLOCK and molecular clock genes as pathophysiological signatures in collagen VI myopathy. J Cell Sci. 2016;129:1671-84 pubmed publisher
  201. Yu L, Wu W, Gu C, Zhong D, Zhao X, Kong Y, et al. Obatoclax impairs lysosomal function to block autophagy in cisplatin-sensitive and -resistant esophageal cancer cells. Oncotarget. 2016;7:14693-707 pubmed publisher
  202. Li M, Lu G, Hu J, Shen X, Ju J, Gao Y, et al. EVA1A/TMEM166 Regulates Embryonic Neurogenesis by Autophagy. Stem Cell Reports. 2016;6:396-410 pubmed publisher
  203. Cao L, Qin X, Peterson M, Haller S, Wilson K, Hu N, et al. CARD9 knockout ameliorates myocardial dysfunction associated with high fat diet-induced obesity. J Mol Cell Cardiol. 2016;92:185-95 pubmed publisher
  204. Zhang W, Shi H, Zhang M, Liu B, Mao S, Li L, et al. Poly C binding protein 1 represses autophagy through downregulation of LC3B to promote tumor cell apoptosis in starvation. Int J Biochem Cell Biol. 2016;73:127-136 pubmed publisher
  205. Lei Y, Kansy B, Li J, Cong L, Liu Y, Trivedi S, et al. EGFR-targeted mAb therapy modulates autophagy in head and neck squamous cell carcinoma through NLRX1-TUFM protein complex. Oncogene. 2016;35:4698-707 pubmed publisher
  206. Kim N, Kim M, Sung P, Bae Y, Shin E, Yoo J. Interferon-inducible protein SCOTIN interferes with HCV replication through the autolysosomal degradation of NS5A. Nat Commun. 2016;7:10631 pubmed publisher
  207. Liu Y, Takahashi Y, Desai N, Zhang J, Serfass J, Shi Y, et al. Bif-1 deficiency impairs lipid homeostasis and causes obesity accompanied by insulin resistance. Sci Rep. 2016;6:20453 pubmed publisher
  208. Wu X, Fleming A, Ricketts T, Pavel M, Virgin H, Menzies F, et al. Autophagy regulates Notch degradation and modulates stem cell development and neurogenesis. Nat Commun. 2016;7:10533 pubmed publisher
  209. Gentry E, Henderson B, Arrant A, Gearing M, Feng Y, Riddle N, et al. Rho Kinase Inhibition as a Therapeutic for Progressive Supranuclear Palsy and Corticobasal Degeneration. J Neurosci. 2016;36:1316-23 pubmed publisher
  210. Button R, Vincent J, Strang C, Luo S. Dual PI-3 kinase/mTOR inhibition impairs autophagy flux and induces cell death independent of apoptosis and necroptosis. Oncotarget. 2016;7:5157-75 pubmed publisher
  211. Kim M, Sandford E, Gatica D, Qiu Y, Liu X, Zheng Y, et al. Mutation in ATG5 reduces autophagy and leads to ataxia with developmental delay. elife. 2016;5: pubmed publisher
  212. Goulielmaki M, Koustas E, Moysidou E, Vlassi M, Sasazuki T, Shirasawa S, et al. BRAF associated autophagy exploitation: BRAF and autophagy inhibitors synergise to efficiently overcome resistance of BRAF mutant colorectal cancer cells. Oncotarget. 2016;7:9188-221 pubmed publisher
  213. Ruiz A, Rockfield S, Taran N, Haller E, Engelman R, Flores I, et al. Effect of hydroxychloroquine and characterization of autophagy in a mouse model of endometriosis. Cell Death Dis. 2016;7:e2059 pubmed publisher
  214. Zhou Q, Yen A, Rymarczyk G, Asai H, Trengrove C, Aziz N, et al. Impairment of PARK14-dependent Ca(2+) signalling is a novel determinant of Parkinson's disease. Nat Commun. 2016;7:10332 pubmed publisher
  215. Mukherjee R, Chakrabarti O. Ubiquitin-mediated regulation of the E3 ligase GP78 by MGRN1 in trans affects mitochondrial homeostasis. J Cell Sci. 2016;129:757-73 pubmed publisher
  216. Wu B, Yu L, Wang Y, Wang H, Li C, Yin Y, et al. Aldehyde dehydrogenase 2 activation in aged heart improves the autophagy by reducing the carbonyl modification on SIRT1. Oncotarget. 2016;7:2175-88 pubmed publisher
  217. Kraft L, Manral P, Dowler J, Kenworthy A. Nuclear LC3 Associates with Slowly Diffusing Complexes that Survey the Nucleolus. Traffic. 2016;17:369-99 pubmed publisher
  218. Xie C, Ginet V, Sun Y, Koike M, Zhou K, Li T, et al. Neuroprotection by selective neuronal deletion of Atg7 in neonatal brain injury. Autophagy. 2016;12:410-23 pubmed publisher
  219. Wang Y, Xu S, Xu W, Yang H, Hu P, Li Y. Sodium formate induces autophagy and apoptosis via the JNK signaling pathway of photoreceptor cells. Mol Med Rep. 2016;13:1111-8 pubmed publisher
  220. Chen Y, Tsou B, Hu S, Ma H, Liu X, Yen Y, et al. Autophagy induction causes a synthetic lethal sensitization to ribonucleotide reductase inhibition in breast cancer cells. Oncotarget. 2016;7:1984-99 pubmed publisher
  221. Stotland A, Gottlieb R. α-MHC MitoTimer mouse: In vivo mitochondrial turnover model reveals remarkable mitochondrial heterogeneity in the heart. J Mol Cell Cardiol. 2016;90:53-8 pubmed publisher
  222. Schwab A, Ebert A. Neurite Aggregation and Calcium Dysfunction in iPSC-Derived Sensory Neurons with Parkinson's Disease-Related LRRK2 G2019S Mutation. Stem Cell Reports. 2015;5:1039-1052 pubmed publisher
  223. Martínez Zamora A, Meseguer S, Esteve J, Villarroya M, Aguado C, Enríquez J, et al. Defective Expression of the Mitochondrial-tRNA Modifying Enzyme GTPBP3 Triggers AMPK-Mediated Adaptive Responses Involving Complex I Assembly Factors, Uncoupling Protein 2, and the Mitochondrial Pyruvate Carrier. PLoS ONE. 2015;10:e0144273 pubmed publisher
  224. McIlroy G, Tammireddy S, Maskrey B, Grant L, Doherty M, Watson D, et al. Fenretinide mediated retinoic acid receptor signalling and inhibition of ceramide biosynthesis regulates adipogenesis, lipid accumulation, mitochondrial function and nutrient stress signalling in adipocytes and adipose tissue. Biochem Pharmacol. 2016;100:86-97 pubmed publisher
  225. Pettersen K, Monsen V, Hakvåg Pettersen C, Overland H, Pettersen G, Samdal H, et al. DHA-induced stress response in human colon cancer cells - Focus on oxidative stress and autophagy. Free Radic Biol Med. 2016;90:158-72 pubmed publisher
  226. Huang Y, Chen Y, Lai Y, Cheng C, Lin T, Su Y, et al. Resveratrol alleviates the cytotoxicity induced by the radiocontrast agent, ioxitalamate, by reducing the production of reactive oxygen species in HK-2 human renal proximal tubule epithelial cells in vitro. Int J Mol Med. 2016;37:83-91 pubmed publisher
  227. Chrisam M, Pirozzi M, Castagnaro S, Blaauw B, Polishchuck R, Cecconi F, et al. Reactivation of autophagy by spermidine ameliorates the myopathic defects of collagen VI-null mice. Autophagy. 2015;11:2142-52 pubmed publisher
  228. Lesmana R, Sinha R, Singh B, Zhou J, Ohba K, Wu Y, et al. Thyroid Hormone Stimulation of Autophagy Is Essential for Mitochondrial Biogenesis and Activity in Skeletal Muscle. Endocrinology. 2016;157:23-38 pubmed publisher
  229. Alnasser H, Guan Q, Zhang F, Gleave M, Nguan C, Du C. Requirement of clusterin expression for prosurvival autophagy in hypoxic kidney tubular epithelial cells. Am J Physiol Renal Physiol. 2016;310:F160-73 pubmed publisher
  230. Majumder P, Chakrabarti O. Mahogunin regulates fusion between amphisomes/MVBs and lysosomes via ubiquitination of TSG101. Cell Death Dis. 2015;6:e1970 pubmed publisher
  231. Dou Z, Xu C, Donahue G, Shimi T, Pan J, Zhu J, et al. Autophagy mediates degradation of nuclear lamina. Nature. 2015;527:105-9 pubmed publisher
  232. Lin C, Chen Y, Lin C, Chen Y, Lo G, Lee P, et al. Amiodarone as an autophagy promoter reduces liver injury and enhances liver regeneration and survival in mice after partial hepatectomy. Sci Rep. 2015;5:15807 pubmed publisher
  233. Ivankovic D, Chau K, Schapira A, Gegg M. Mitochondrial and lysosomal biogenesis are activated following PINK1/parkin-mediated mitophagy. J Neurochem. 2016;136:388-402 pubmed publisher
  234. van Geldermalsen M, Wang Q, Nagarajah R, Marshall A, Thoeng A, Gao D, et al. ASCT2/SLC1A5 controls glutamine uptake and tumour growth in triple-negative basal-like breast cancer. Oncogene. 2016;35:3201-8 pubmed publisher
  235. Xiong R, Zhou W, Siegel D, Kitson R, Freed C, Moody C, et al. A Novel Hsp90 Inhibitor Activates Compensatory Heat Shock Protein Responses and Autophagy and Alleviates Mutant A53T α-Synuclein Toxicity. Mol Pharmacol. 2015;88:1045-54 pubmed publisher
  236. Sorrell S, Golder Z, Johnstone D, Frankl F. Renal peroxiredoxin 6 interacts with anion exchanger 1 and plays a novel role in pH homeostasis. Kidney Int. 2016;89:105-112 pubmed publisher
  237. Granato M, Santarelli R, Filardi M, Gonnella R, Farina A, Torrisi M, et al. The activation of KSHV lytic cycle blocks autophagy in PEL cells. Autophagy. 2015;11:1978-1986 pubmed publisher
  238. Koukourakis M, Kalamida D, Giatromanolaki A, Zois C, Sivridis E, Pouliliou S, et al. Autophagosome Proteins LC3A, LC3B and LC3C Have Distinct Subcellular Distribution Kinetics and Expression in Cancer Cell Lines. PLoS ONE. 2015;10:e0137675 pubmed publisher
  239. Pellegrini C, Columbaro M, Capanni C, D Apice M, Cavallo C, Murdocca M, et al. All-trans retinoic acid and rapamycin normalize Hutchinson Gilford progeria fibroblast phenotype. Oncotarget. 2015;6:29914-28 pubmed publisher
  240. Granato M, Gilardini Montani M, Filardi M, Faggioni A, Cirone M. Capsaicin triggers immunogenic PEL cell death, stimulates DCs and reverts PEL-induced immune suppression. Oncotarget. 2015;6:29543-54 pubmed publisher
  241. Moreau K, Ghislat G, Hochfeld W, Renna M, Zavodszky E, Runwal G, et al. Transcriptional regulation of Annexin A2 promotes starvation-induced autophagy. Nat Commun. 2015;6:8045 pubmed publisher
  242. Triplett J, Tramutola A, Swomley A, Kirk J, Grimes K, Lewis K, et al. Age-related changes in the proteostasis network in the brain of the naked mole-rat: Implications promoting healthy longevity. Biochim Biophys Acta. 2015;1852:2213-24 pubmed publisher
  243. Hermanova I, Arruabarrena Aristorena A, Valis K, Nůsková H, Alberich Jorda M, Fiser K, et al. Pharmacological inhibition of fatty-acid oxidation synergistically enhances the effect of l-asparaginase in childhood ALL cells. Leukemia. 2016;30:209-18 pubmed publisher
  244. Johansson I, Monsen V, Pettersen K, Mildenberger J, Misund K, Kaarniranta K, et al. The marine n-3 PUFA DHA evokes cytoprotection against oxidative stress and protein misfolding by inducing autophagy and NFE2L2 in human retinal pigment epithelial cells. Autophagy. 2015;11:1636-51 pubmed publisher
  245. Chesser A, Ganeshan V, Yang J, Johnson G. Epigallocatechin-3-gallate enhances clearance of phosphorylated tau in primary neurons. Nutr Neurosci. 2016;19:21-31 pubmed publisher
  246. Wu H, Jiang Z, Ding P, Shao L, Liu R. Hypoxia-induced autophagy mediates cisplatin resistance in lung cancer cells. Sci Rep. 2015;5:12291 pubmed publisher
  247. Perera R, Stoykova S, Nicolay B, Ross K, Fitamant J, Boukhali M, et al. Transcriptional control of autophagy-lysosome function drives pancreatic cancer metabolism. Nature. 2015;524:361-5 pubmed publisher
  248. Wang I, Sun K, Tsai T, Chen C, Chang S, Yu T, et al. MiR-20a-5p mediates hypoxia-induced autophagy by targeting ATG16L1 in ischemic kidney injury. Life Sci. 2015;136:133-41 pubmed publisher
  249. Yang S, Lin H, Chang V, Chen C, Liu Y, Wang J, et al. Lovastatin overcomes gefitinib resistance through TNF-α signaling in human cholangiocarcinomas with different LKB1 statuses in vitro and in vivo. Oncotarget. 2015;6:23857-73 pubmed
  250. Su X, Yu Y, Zhong Y, Giannopoulou E, Hu X, Liu H, et al. Interferon-γ regulates cellular metabolism and mRNA translation to potentiate macrophage activation. Nat Immunol. 2015;16:838-849 pubmed publisher
  251. Metge B, Mitra A, Chen D, Shevde L, Samant R. N-Myc and STAT Interactor regulates autophagy and chemosensitivity in breast cancer cells. Sci Rep. 2015;5:11995 pubmed publisher
  252. Ohashi A, Ohori M, Iwai K, Nakayama Y, Nambu T, Morishita D, et al. Aneuploidy generates proteotoxic stress and DNA damage concurrently with p53-mediated post-mitotic apoptosis in SAC-impaired cells. Nat Commun. 2015;6:7668 pubmed publisher
  253. Wang J, Ma L, Tang X, Zhang X, Qiao Y, Shi Y, et al. Doxorubicin induces apoptosis by targeting Madcam1 and AKT and inhibiting protein translation initiation in hepatocellular carcinoma cells. Oncotarget. 2015;6:24075-91 pubmed
  254. Campbell G, Rawat P, Bruckman R, Spector S. Human Immunodeficiency Virus Type 1 Nef Inhibits Autophagy through Transcription Factor EB Sequestration. PLoS Pathog. 2015;11:e1005018 pubmed publisher
  255. Giordano C, Lemaire C, Li T, Kimoff R, Petrof B. Autophagy-associated atrophy and metabolic remodeling of the mouse diaphragm after short-term intermittent hypoxia. PLoS ONE. 2015;10:e0131068 pubmed publisher
  256. Liu K, Frazier W. Phosphorylation of the BNIP3 C-Terminus Inhibits Mitochondrial Damage and Cell Death without Blocking Autophagy. PLoS ONE. 2015;10:e0129667 pubmed publisher
  257. Hu G, McQuiston T, Bernard A, Park Y, Qiu J, Vural A, et al. A conserved mechanism of TOR-dependent RCK-mediated mRNA degradation regulates autophagy. Nat Cell Biol. 2015;17:930-942 pubmed publisher
  258. Park S, Choi S, Yoo S, Nah J, Jeong E, Kim H, et al. Pyruvate stimulates mitophagy via PINK1 stabilization. Cell Signal. 2015;27:1824-30 pubmed publisher
  259. Yuan J, Zhang Y, Sheng Y, Fu X, Cheng H, Zhou R. MYBL2 guides autophagy suppressor VDAC2 in the developing ovary to inhibit autophagy through a complex of VDAC2-BECN1-BCL2L1 in mammals. Autophagy. 2015;11:1081-98 pubmed publisher
  260. Huang C, Lee C, Lin H, Chen M, Lin C, Chang J. Autophagy-Regulated ROS from Xanthine Oxidase Acts as an Early Effector for Triggering Late Mitochondria-Dependent Apoptosis in Cathepsin S-Targeted Tumor Cells. PLoS ONE. 2015;10:e0128045 pubmed publisher
  261. Sun T, Li X, Zhang P, Chen W, Zhang H, Li D, et al. Acetylation of Beclin 1 inhibits autophagosome maturation and promotes tumour growth. Nat Commun. 2015;6:7215 pubmed publisher
  262. Milkereit R, Persaud A, Vanoaica L, Guetg A, Verrey F, Rotin D. LAPTM4b recruits the LAT1-4F2hc Leu transporter to lysosomes and promotes mTORC1 activation. Nat Commun. 2015;6:7250 pubmed publisher
  263. Li J, Ren J, Liu X, Jiang L, He W, Yuan W, et al. Rictor/mTORC2 signaling mediates TGFβ1-induced fibroblast activation and kidney fibrosis. Kidney Int. 2015;88:515-27 pubmed publisher
  264. Del Mar N, von Buttlar X, Yu A, Guley N, Reiner A, Honig M. A novel closed-body model of spinal cord injury caused by high-pressure air blasts produces extensive axonal injury and motor impairments. Exp Neurol. 2015;271:53-71 pubmed publisher
  265. Cheng H, Liang Y, Kuo Y, Chuu C, Lin C, Lee M, et al. Identification of thioridazine, an antipsychotic drug, as an antiglioblastoma and anticancer stem cell agent using public gene expression data. Cell Death Dis. 2015;6:e1753 pubmed publisher
  266. Kim Y, Kang Y, Lee N, Kim K, Hwang Y, Kim H, et al. Uvrag targeting by Mir125a and Mir351 modulates autophagy associated with Ewsr1 deficiency. Autophagy. 2015;11:796-811 pubmed publisher
  267. Zhang L, Wang H, Ding K, Xu J. FTY720 induces autophagy-related apoptosis and necroptosis in human glioblastoma cells. Toxicol Lett. 2015;236:43-59 pubmed publisher
  268. Zhao J, Molitor T, Langston J, Nichols R. LRRK2 dephosphorylation increases its ubiquitination. Biochem J. 2015;469:107-20 pubmed publisher
  269. Laguna A, Schintu N, Nobre A, Alvarsson A, Volakakis N, Jacobsen J, et al. Dopaminergic control of autophagic-lysosomal function implicates Lmx1b in Parkinson's disease. Nat Neurosci. 2015;18:826-35 pubmed publisher
  270. Marsh N, Wareham A, White B, Miskiewicz E, Landry J, MacPhee D. HSPB8 and the Cochaperone BAG3 Are Highly Expressed During the Synthetic Phase of Rat Myometrium Programming During Pregnancy. Biol Reprod. 2015;92:131 pubmed publisher
  271. Meidhof S, Brabletz S, Lehmann W, Preca B, Mock K, Ruh M, et al. ZEB1-associated drug resistance in cancer cells is reversed by the class I HDAC inhibitor mocetinostat. EMBO Mol Med. 2015;7:831-47 pubmed publisher
  272. Kett L, Stiller B, Bernath M, Tasset I, Blesa J, Jackson Lewis V, et al. α-Synuclein-independent histopathological and motor deficits in mice lacking the endolysosomal Parkinsonism protein Atp13a2. J Neurosci. 2015;35:5724-42 pubmed publisher
  273. Akizu N, Cantagrel V, Zaki M, Al Gazali L, Wang X, Rosti R, et al. Biallelic mutations in SNX14 cause a syndromic form of cerebellar atrophy and lysosome-autophagosome dysfunction. Nat Genet. 2015;47:528-34 pubmed publisher
  274. Roost M, van Iperen L, De Melo Bernardo A, Mummery C, Carlotti F, de Koning E, et al. Lymphangiogenesis and angiogenesis during human fetal pancreas development. Vasc Cell. 2014;6:22 pubmed publisher
  275. Strohecker A, Joshi S, Possemato R, Abraham R, Sabatini D, White E. Identification of 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase as a novel autophagy regulator by high content shRNA screening. Oncogene. 2015;34:5662-76 pubmed publisher
  276. Desantis A, Bruno T, Catena V, De Nicola F, Goeman F, Iezzi S, et al. Che-1-induced inhibition of mTOR pathway enables stress-induced autophagy. EMBO J. 2015;34:1214-30 pubmed publisher
  277. Wengrod J, Wang D, Weiss S, Zhong H, Osman I, Gardner L. Phosphorylation of eIF2α triggered by mTORC1 inhibition and PP6C activation is required for autophagy and is aberrant in PP6C-mutated melanoma. Sci Signal. 2015;8:ra27 pubmed publisher
  278. Yi Y, Kang H, Bae E, Oh S, Seong Y, Bae I. β-TrCP1 degradation is a novel action mechanism of PI3K/mTOR inhibitors in triple-negative breast cancer cells. Exp Mol Med. 2015;47:e143 pubmed publisher
  279. Medina D, Di Paola S, Peluso I, Armani A, De Stefani D, Venditti R, et al. Lysosomal calcium signalling regulates autophagy through calcineurin and ​TFEB. Nat Cell Biol. 2015;17:288-99 pubmed
  280. Pedro J, Wei Y, Sica V, Maiuri M, Zou Z, Kroemer G, et al. BAX and BAK1 are dispensable for ABT-737-induced dissociation of the BCL2-BECN1 complex and autophagy. Autophagy. 2015;11:452-9 pubmed publisher
  281. Ulbricht A, Gehlert S, Leciejewski B, Schiffer T, Bloch W, Höhfeld J. Induction and adaptation of chaperone-assisted selective autophagy CASA in response to resistance exercise in human skeletal muscle. Autophagy. 2015;11:538-46 pubmed publisher
  282. Sanjurjo L, Amézaga N, Aran G, Naranjo Gómez M, Arias L, Armengol C, et al. The human CD5L/AIM-CD36 axis: A novel autophagy inducer in macrophages that modulates inflammatory responses. Autophagy. 2015;11:487-502 pubmed publisher
  283. Jabir M, Hopkins L, Ritchie N, Ullah I, Bayes H, Li D, et al. Mitochondrial damage contributes to Pseudomonas aeruginosa activation of the inflammasome and is downregulated by autophagy. Autophagy. 2015;11:166-82 pubmed publisher
  284. Polletta L, Vernucci E, Carnevale I, Arcangeli T, Rotili D, Palmerio S, et al. SIRT5 regulation of ammonia-induced autophagy and mitophagy. Autophagy. 2015;11:253-70 pubmed publisher
  285. Kim E, Shin J, Park S, Jo Y, Kim J, Kang I, et al. Inhibition of autophagy suppresses sertraline-mediated primary ciliogenesis in retinal pigment epithelium cells. PLoS ONE. 2015;10:e0118190 pubmed publisher
  286. Kommaddi R, Jean Charles P, Shenoy S. Phosphorylation of the deubiquitinase USP20 by protein kinase A regulates post-endocytic trafficking of β2 adrenergic receptors to autophagosomes during physiological stress. J Biol Chem. 2015;290:8888-903 pubmed publisher
  287. Greenall S, Donoghue J, van Sinderen M, Dubljevic V, Budiman S, Devlin M, et al. EGFRvIII-mediated transactivation of receptor tyrosine kinases in glioma: mechanism and therapeutic implications. Oncogene. 2015;34:5277-87 pubmed publisher
  288. Guerrero A, Iglesias C, Raguz S, Floridia E, Gil J, Pombo C, et al. The cerebral cavernous malformation 3 gene is necessary for senescence induction. Aging Cell. 2015;14:274-83 pubmed publisher
  289. Rohatgi R, Janusis J, Leonard D, Bellvé K, Fogarty K, Baehrecke E, et al. Beclin 1 regulates growth factor receptor signaling in breast cancer. Oncogene. 2015;34:5352-62 pubmed publisher
  290. Arel Dubeau A, Longpré F, Bournival J, Tremblay C, Demers Lamarche J, Haskova P, et al. Cucurbitacin E has neuroprotective properties and autophagic modulating activities on dopaminergic neurons. Oxid Med Cell Longev. 2014;2014:425496 pubmed publisher
  291. Liu S, Sarkar C, Dinizo M, Faden A, Koh E, Lipinski M, et al. Disrupted autophagy after spinal cord injury is associated with ER stress and neuronal cell death. Cell Death Dis. 2015;6:e1582 pubmed publisher
  292. Valianou M, Cox A, Pichette B, Hartley S, Paladhi U, Astrinidis A. Pharmacological inhibition of Polo-like kinase 1 (PLK1) by BI-2536 decreases the viability and survival of hamartin and tuberin deficient cells via induction of apoptosis and attenuation of autophagy. Cell Cycle. 2015;14:399-407 pubmed publisher
  293. Bueno M, Lai Y, Romero Y, Brands J, St Croix C, Kamga C, et al. PINK1 deficiency impairs mitochondrial homeostasis and promotes lung fibrosis. J Clin Invest. 2015;125:521-38 pubmed publisher
  294. Mudie S, Bandarra D, Batie M, Biddlestone J, Moniz S, Ortmann B, et al. PITX1, a specificity determinant in the HIF-1α-mediated transcriptional response to hypoxia. Cell Cycle. 2014;13:3878-91 pubmed publisher
  295. Sykora P, Misiak M, Wang Y, Ghosh S, Leandro G, Liu D, et al. DNA polymerase β deficiency leads to neurodegeneration and exacerbates Alzheimer disease phenotypes. Nucleic Acids Res. 2015;43:943-59 pubmed publisher
  296. Mir S, George N, Zahoor L, Harms R, Guinn Z, SARVETNICK N. Inhibition of autophagic turnover in β-cells by fatty acids and glucose leads to apoptotic cell death. J Biol Chem. 2015;290:6071-85 pubmed publisher
  297. Bifsha P, Yang J, Fisher R, Drouin J. Rgs6 is required for adult maintenance of dopaminergic neurons in the ventral substantia nigra. PLoS Genet. 2014;10:e1004863 pubmed publisher
  298. Chen G, Meng C, Lin K, Tuan H, Yang H, Chen C, et al. Graphene oxide as a chemosensitizer: diverted autophagic flux, enhanced nuclear import, elevated necrosis and improved antitumor effects. Biomaterials. 2015;40:12-22 pubmed publisher
  299. Varga M, Fodor E, Vellai T. Autophagy in zebrafish. Methods. 2015;75:172-80 pubmed publisher
  300. Kaushik G, Venugopal A, Ramamoorthy P, Standing D, Subramaniam D, Umar S, et al. Honokiol inhibits melanoma stem cells by targeting notch signaling. Mol Carcinog. 2015;54:1710-21 pubmed publisher
  301. Porter K, Hirt J, Stamer W, Liton P. Autophagic dysregulation in glaucomatous trabecular meshwork cells. Biochim Biophys Acta. 2015;1852:379-85 pubmed publisher
  302. Kim T, Kim H, Kang Y, Yoon S, Lee J, Choi W, et al. Psammaplin A induces Sirtuin 1-dependent autophagic cell death in doxorubicin-resistant MCF-7/adr human breast cancer cells and xenografts. Biochim Biophys Acta. 2015;1850:401-10 pubmed publisher
  303. Roe N, Xu X, Kandadi M, Hu N, Pang J, Weiser Evans M, et al. Targeted deletion of PTEN in cardiomyocytes renders cardiac contractile dysfunction through interruption of Pink1-AMPK signaling and autophagy. Biochim Biophys Acta. 2015;1852:290-8 pubmed publisher
  304. Nitta T, Sato Y, Ren X, Harada K, Sasaki M, Hirano S, et al. Autophagy may promote carcinoma cell invasion and correlate with poor prognosis in cholangiocarcinoma. Int J Clin Exp Pathol. 2014;7:4913-21 pubmed
  305. Liu Y, Wan S, Zhang P, Zhang W, Zheng J, Lin J, et al. Expression levels of autophagy related proteins and their prognostic significance in retinocytoma and retinoblastoma. Int J Ophthalmol. 2014;7:594-601 pubmed publisher
  306. Li L, Wu P, Lee J, Li P, Hsieh W, Ho C, et al. Hinokitiol induces DNA damage and autophagy followed by cell cycle arrest and senescence in gefitinib-resistant lung adenocarcinoma cells. PLoS ONE. 2014;9:e104203 pubmed publisher
  307. Brown D, LASSEGUE B, Lee M, Zafari R, Long J, Saavedra H, et al. Poldip2 knockout results in perinatal lethality, reduced cellular growth and increased autophagy of mouse embryonic fibroblasts. PLoS ONE. 2014;9:e96657 pubmed publisher
  308. Mancias J, Wang X, Gygi S, Harper J, Kimmelman A. Quantitative proteomics identifies NCOA4 as the cargo receptor mediating ferritinophagy. Nature. 2014;509:105-9 pubmed publisher
  309. Porter K, Jeyabalan N, Liton P. MTOR-independent induction of autophagy in trabecular meshwork cells subjected to biaxial stretch. Biochim Biophys Acta. 2014;1843:1054-62 pubmed publisher
  310. Li J, Xu Z, Jiang L, Mao J, Zeng Z, Fang L, et al. Rictor/mTORC2 protects against cisplatin-induced tubular cell death and acute kidney injury. Kidney Int. 2014;86:86-102 pubmed publisher
  311. Rubio N, Verrax J, Dewaele M, Verfaillie T, Johansen T, Piette J, et al. p38(MAPK)-regulated induction of p62 and NBR1 after photodynamic therapy promotes autophagic clearance of ubiquitin aggregates and reduces reactive oxygen species levels by supporting Nrf2-antioxidant signaling. Free Radic Biol Med. 2014;67:292-303 pubmed publisher
  312. Gurkar A, Chu K, Raj L, Bouley R, Lee S, Kim Y, et al. Identification of ROCK1 kinase as a critical regulator of Beclin1-mediated autophagy during metabolic stress. Nat Commun. 2013;4:2189 pubmed publisher
  313. Yuan Y, Tang A, Castoreno A, Kuo S, Wang Q, Kuballa P, et al. Gossypol and an HMT G9a inhibitor act in synergy to induce cell death in pancreatic cancer cells. Cell Death Dis. 2013;4:e690 pubmed publisher
  314. Willis M, Min J, Wang S, McDonough H, Lockyer P, Wadosky K, et al. Carboxyl terminus of Hsp70-interacting protein (CHIP) is required to modulate cardiac hypertrophy and attenuate autophagy during exercise. Cell Biochem Funct. 2013;31:724-35 pubmed publisher
  315. Newman A, Scholefield C, Kemp A, Newman M, McIver E, Kamal A, et al. TBK1 kinase addiction in lung cancer cells is mediated via autophagy of Tax1bp1/Ndp52 and non-canonical NF-κB signalling. PLoS ONE. 2012;7:e50672 pubmed publisher