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The Journal of Biological Chemistry|June 5, 2007
Chaperone functions of the E3 ubiquitin ligase CHIPMeredith F N Rosser, Erin Washburn, Paul J Muchowski, et al.
Archives of Biochemistry and Biophysics|December 24, 2008
CYP3A4 ubiquitination by gp78 (the tumor autocrine motility factor receptor, AMFR) and CHIP E3 ligasesMichael K Pabarcus, Nicholas Hoe, Sheila Sadeghi, et al.
The Journal of Clinical Investigation|July 19, 2013
CHIP protects against cardiac pressure overload through regulation of AMPKJonathan C Schisler, Carrie E Rubel, Chunlian Zhang, et al.
Nature Communications|April 11, 2017
Endothelial LRP1 regulates metabolic responses by acting as a co-activator of PPARγHua Mao, Pamela Lockyer, Luge Li, et al.
The American Journal of Pathology|January 13, 2011
Regulation of AMPK by the ubiquitin proteasome systemMakhosazane Zungu, Jonathan C Schisler, M Faadiel Essop, et al.
The Journal of Biological Chemistry|August 4, 2009
Engineering a ubiquitin ligase reveals conformational flexibility required for ubiquitin transferShu-Bing Qian, Lauren Waldron, Neelima Choudhary, et al.
Molecular and Cellular Biology|July 20, 2007
ASB4 is a hydroxylation substrate of FIH and promotes vascular differentiation via an oxygen-dependent mechanismJames E Ferguson, Yaxu Wu, Kevin Smith, et al.
Arteriosclerosis, Thrombosis, and Vascular Biology|July 4, 2014
NADPH oxidase-generated reactive oxygen species are required for stromal cell-derived factor-1α-stimulated angiogenesisXinchun Pi, Liang Xie, Andrea L Portbury, et al.
The Journal of Biological Chemistry|July 8, 2010
mTORC1 links protein quality and quantity control by sensing chaperone availabilityShu-Bing Qian, Xingqian Zhang, Jun Sun, et al.
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