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Biochimica Et Biophysica Acta|May 17, 2012
HSF4 is involved in DNA damage repair through regulation of Rad51Xiukun Cui, Jing Zhang, Rong Du, et al.Current Molecular Medicine|January 15, 2019
Analysis of the Differential Expression Patterns of Sumoylation Enzymes E1, E2 and E3 in Ocular Cell LinesQian Nie, Jie Xie, Xiaodong Gong, et al.The International Journal of Biochemistry & Cell Biology|August 31, 2015
BCAS2 interacts with HSF4 and negatively regulates its protein stability via ubiquitinationShengjie Liao, Rong Du, Lei Wang, et al.Aging|June 20, 2020
The transcription factor CREB acts as an important regulator mediating oxidative stress-induced apoptosis by suppressing αB-crystallin expressionLing Wang, Qian Nie, Meng Gao, et al.Current Molecular Medicine|January 15, 2019
Localization Patterns of Sumoylation Enzymes E1, E2 and E3 in Ocular Cell Lines Predict Their Functional ImportanceXiaodong Gong, Qian Nie, Yuan Xiao, et al.Proceedings of the National Academy of Sciences of the United States of America|November 19, 2010
Sumoylation activates the transcriptional activity of Pax-6, an important transcription factor for eye and brain developmentQin Yan, Lili Gong, Mi Deng, et al.Journal of Gastroenterology and Hepatology|April 22, 2023
Idiopathic myointimal hyperplasia of the mesenteric veins: A systematic review and individual patient data regression analysisRaquel Rozner, Savanah Gisriel, John Damianos, et al.Aging|July 6, 2021
Aging-dependent loss of GAP junction proteins Cx46 and Cx50 in the fiber cells of human and mouse lenses accounts for the diminished coupling conductanceXiao-Dong Gong, Yan Wang, Xue-Bin Hu, et al.Cell Death & Disease|October 6, 2017
HSF4 regulates lens fiber cell differentiation by activating p53 and its downstream regulatorsMeng Gao, Yuwen Huang, Ling Wang, et al.Proceedings of the National Academy of Sciences of the United States of America|April 8, 2014
Sumoylation differentially regulates Sp1 to control cell differentiationLili Gong, Wei-Ke Ji, Xiao-Hui Hu, et al.Pageof 8