p20BAP31 induces cell apoptosis via both AIF caspase-independent and the ROS/JNK mitochondrial pathway in colorectal cancer
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X. Jiang | Guo-xun Li | Bing Wang | Tian Lan | Ben-zhi Zhu | Rui Jiang | Jingnan Zang
[1] Shenghui Chen,et al. E2F1 promotes cell cycle progression by stabilizing spindle fiber in colorectal cancer cells , 2022, Cellular & Molecular Biology Letters.
[2] S. Ran,et al. Inhibiting NADPH Oxidases to Target Vascular and Other Pathologies: An Update on Recent Experimental and Clinical Studies , 2022, Biomolecules.
[3] E. Quistgaard,et al. BAP31: Physiological functions and roles in disease. , 2021, Biochimie.
[4] G. Maxwell,et al. Progesterone induces apoptosis by activation of caspase-8 and calcitriol via activation of caspase-9 pathways in ovarian and endometrial cancer cells in vitro , 2021, Apoptosis.
[5] Yamin Zhang,et al. High glucose may promote the proliferation and metastasis of hepatocellular carcinoma via E2F1/RRBP1 pathway. , 2020, Life sciences.
[6] W. El-Deiry,et al. Targeting apoptosis in cancer therapy , 2020, Nature Reviews Clinical Oncology.
[7] H. Yao,et al. The E2F family as potential biomarkers and therapeutic targets in colon cancer , 2020, PeerJ.
[8] U. Yadav,et al. Induction of growth cessation by acacetin via β-catenin pathway and apoptosis by apoptosis inducing factor activation in colorectal carcinoma cells , 2019, Molecular Biology Reports.
[9] T. Namba,et al. BAP31 Inhibits Cell Adaptation to ER Stress Conditions, Negatively Regulating Autophagy Induction by Interaction with STX17 , 2019, Cells.
[10] T. Namba,et al. BAP31 regulates mitochondrial function via interaction with Tom40 within ER-mitochondria contact sites , 2019, Science Advances.
[11] B. Wang,et al. A BAP31 intrabody induces gastric cancer cell death by inhibiting p27kip1 proteasome degradation , 2019, International journal of cancer.
[12] Zhenfeng Chen,et al. Organometallic Gold(III) Complexes Similar to Tetrahydroisoquinoline Induce ER-Stress-Mediated Apoptosis and Pro-Death Autophagy in A549 Cancer Cells. , 2018, Journal of medicinal chemistry.
[13] Jichun Han,et al. Alteronol induces cell cycle arrest and apoptosis via increased reactive oxygen species production in human breast cancer T47D cells , 2018, The Journal of pharmacy and pharmacology.
[14] J. Prehn,et al. Apoptosis-Inducing Factor (AIF) in Physiology and Disease: The Tale of a Repented Natural Born Killer , 2018, EBioMedicine.
[15] A. Abdelhamid,et al. Induction of apoptosis by pyrazolo[3,4-d]pyridazine derivative in lung cancer cells via disruption of Bcl-2/Bax expression balance. , 2017, Bioorganic & medicinal chemistry.
[16] F. Edlich. BCL-2 proteins and apoptosis: Recent insights and unknowns. , 2017, Biochemical and biophysical research communications.
[17] B. Wang,et al. Hepatocyte-specific deletion of BAP31 promotes SREBP1C activation, promotes hepatic lipid accumulation, and worsens IR in mice[S] , 2017, Journal of Lipid Research.
[18] B. Wang,et al. BAP31 is involved in T cell activation through TCR signal pathways , 2017, Scientific Reports.
[19] A. Letai. Apoptosis and Cancer , 2017 .
[20] D. Averill-Bates,et al. Activation of apoptosis signalling pathways by reactive oxygen species. , 2016, Biochimica et biophysica acta.
[21] Ahmedin Jemal,et al. Global patterns and trends in colorectal cancer incidence and mortality , 2016, Gut.
[22] H. Steller,et al. Live to die another way: modes of programmed cell death and the signals emanating from dying cells , 2015, Nature Reviews Molecular Cell Biology.
[23] S. Tait,et al. Mitochondrial apoptosis: killing cancer using the enemy within , 2015, British Journal of Cancer.
[24] S. Kang,et al. ROS and energy metabolism in cancer cells: alliance for fast growth , 2015, Archives of pharmacal research.
[25] Zhaoming Ye,et al. Celastrol induces apoptosis and autophagy via the ROS/JNK signaling pathway in human osteosarcoma cells: an in vitro and in vivo study , 2015, Cell Death and Disease.
[26] S. Cook,et al. The role of MAPK signalling pathways in the response to endoplasmic reticulum stress. , 2014, Biochimica et biophysica acta.
[27] C. Ryu,et al. B‐Cell Receptor‐Associated Protein 31 Regulates Human Embryonic Stem Cell Adhesion, Stemness, and Survival via Control of Epithelial Cell Adhesion Molecule , 2014, Stem cells.
[28] Jie Jiang,et al. β‐elemene reverses the drug resistance of A549/DDP lung cancer cells by activating intracellular redox system, decreasing mitochondrial membrane potential and P‐glycoprotein expression, and inducing apoptosis , 2014, Thoracic cancer.
[29] G. Binefa,et al. Colorectal cancer: from prevention to personalized medicine. , 2014, World journal of gastroenterology.
[30] J. Skotheim,et al. Control of cell cycle transcription during G1 and S phases , 2013, Nature Reviews Molecular Cell Biology.
[31] J. Bass,et al. ROS‐Mediated PARP Activity Undermines Mitochondrial Function After Permeability Transition Pore Opening During Myocardial Ischemia–Reperfusion , 2013, Journal of the American Heart Association.
[32] K. Storey,et al. Pattern of cellular quiescence over the hibernation cycle in liver of thirteen-lined ground squirrels , 2012, Cell cycle.
[33] B. Wang,et al. Bcl2 at the endoplasmic reticulum protects against a Bax/Bak-independent paraptosis-like cell death pathway initiated via p20Bap31. , 2012, Biochimica et biophysica acta.
[34] P. Pinton,et al. Mitochondria-Ros Crosstalk in the Control of Cell Death and Aging , 2011, Journal of signal transduction.
[35] U. Moens,et al. Physiological roles of mitogen-activated-protein-kinase-activated p38-regulated/activated protein kinase. , 2011, World journal of biological chemistry.
[36] P. Seibel,et al. Tight control of mitochondrial membrane potential by cytochrome c oxidase. , 2011, Mitochondrion.
[37] J. Surrallés,et al. Constitutive Activation of Caspase-3 and Poly ADP Ribose Polymerase Cleavage in Fanconi Anemia Cells , 2010, Molecular Cancer Research.
[38] K. Yoon,et al. The age-dependent induction of apoptosis-inducing factor (AIF) in the human semitendinosus skeletal muscle , 2009, Cellular & Molecular Biology Letters.
[39] A. Colombatti,et al. Role of E2F1-Cyclin E1-Cyclin E2 Circuit in Human Coronary Smooth Muscle Cell Proliferation and Therapeutic Potential of Its Downregulation by siRNAs , 2009, Molecular medicine.
[40] B. Wang,et al. BAP31 Interacts with Sec61 Translocons and Promotes Retrotranslocation of CFTRΔF508 via the Derlin-1 Complex , 2008, Cell.
[41] S. Elmore. Apoptosis: A Review of Programmed Cell Death , 2007, Toxicologic pathology.
[42] Lorenzo Galluzzi,et al. Mitochondrial membrane permeabilization in cell death. , 2007, Physiological reviews.
[43] F. Abe,et al. Bap31 Enhances the Endoplasmic Reticulum Export and Quality Control of Human Class I MHC Molecules1 , 2006, The Journal of Immunology.
[44] E. Szczesna-Skorupa,et al. BAP31 Is Involved in the Retention of Cytochrome P450 2C2 in the Endoplasmic Reticulum* , 2006, Journal of Biological Chemistry.
[45] G. Shore,et al. BAP31 and Its Caspase Cleavage Product Regulate Cell Surface Expression of Tetraspanins and Integrin-mediated Cell Survival* , 2005, Journal of Biological Chemistry.
[46] K. Akashi,et al. Mouse Development and Cell Proliferation in the Absence of D-Cyclins , 2004, Cell.
[47] K. Zen,et al. Association of BAP31 with CD11b/CD18 POTENTIAL ROLE IN INTRACELLULAR TRAFFICKING OF CD11b/CD18 IN NEUTROPHILS* , 2004 .
[48] P. Clemons,et al. Uncleaved BAP31 in Association with A4 Protein at the Endoplasmic Reticulum Is an Inhibitor of Fas-initiated Release of Cytochromec from Mitochondria* , 2003, The Journal of Biological Chemistry.
[49] Jay Z. Parrish,et al. Functional genomic analysis of apoptotic DNA degradation in C. elegans. , 2003, Molecular cell.
[50] G. Shore,et al. Caspase cleavage product of BAP31 induces mitochondrial fission through endoplasmic reticulum calcium signals, enhancing cytochrome c release to the cytosol , 2003, The Journal of cell biology.
[51] M. Yamaguchi,et al. Possible contribution of apoptosis‐inducing factor (AIF) and reactive oxygen species (ROS) to UVB‐induced caspase‐independent cell death in the T cell line Jurkat , 2003, Journal of leukocyte biology.
[52] S. Lipton,et al. Dueling Activities of AIF in Cell Death versus Survival DNA Binding and Redox Activity , 2002, Cell.
[53] G. Kroemer,et al. DNA binding is required for the apoptogenic action of apoptosis inducing factor , 2002, Nature Structural Biology.
[54] Huitu Liu,et al. MAPK signal pathways in the regulation of cell proliferation in mammalian cells , 2002, Cell Research.
[55] M. Blagosklonny,et al. Exploiting cancer cell cycling for selective protection of normal cells. , 2001, Cancer research.
[56] T. Mak,et al. Essential role of the mitochondrial apoptosis-inducing factor in programmed cell death , 2001, Nature.
[57] D. Bredesen,et al. An alternative, nonapoptotic form of programmed cell death. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[58] G. Shore,et al. Caspase-Resistant BAP31 Inhibits Fas-Mediated Apoptotic Membrane Fragmentation and Release of Cytochrome cfrom Mitochondria , 2000, Molecular and Cellular Biology.
[59] Ruedi Aebersold,et al. Molecular characterization of mitochondrial apoptosis-inducing factor , 1999, Nature.
[60] W. Annaert,et al. Export of Cellubrevin from the Endoplasmic Reticulum Is Controlled by BAP31 , 1997, The Journal of cell biology.
[61] P. Branton,et al. p28 Bap31, a Bcl-2/Bcl-XL- and Procaspase-8–associated Protein in the Endoplasmic Reticulum , 1997, The Journal of cell biology.
[62] M. Reth,et al. The specificity of association of the IgD molecule with the accessory proteins BAP31/BAP29 lies in the IgD transmembrane sequence. , 1996, The EMBO journal.
[63] M. Reth,et al. Two new proteins preferentially associated with membrane immunoglobulin D. , 1994, The EMBO journal.