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Biochemistry|May 23, 2002
Evidence that protein phosphatase 5 functions to negatively modulate the maturation of the Hsp90-dependent heme-regulated eIF2alpha kinaseJieya Shao, Steven D Hartson, Robert L MattsBiochemical and Biophysical Research Communications|May 11, 2005
Evidence for chaperone heterocomplexes containing both Hsp90 and VCPThomas Prince, Jieya Shao, Robert L Matts, et al.Plos One|March 11, 2014
Hsp90-dependent assembly of the DBC2/RhoBTB2-Cullin3 E3-ligase complexJacob R Manjarrez, Liang Sun, Thomas Prince, et al.The Journal of Biological Chemistry|August 22, 2003
Phosphorylation of serine 13 is required for the proper function of the Hsp90 co-chaperone, Cdc37Jieya Shao, Thomas Prince, Steven D Hartson, et al.Biochemistry|October 29, 2003
Functional dissection of cdc37: characterization of domain structure and amino acid residues critical for protein kinase bindingJieya Shao, Angela Irwin, Steven D Hartson, et al.Biochimica Et Biophysica Acta|August 20, 2005
Interdomain interactions regulate the activation of the heme-regulated eIF 2 alpha kinaseBo-Geon Yun, Jessica A B Matts, Robert L MattsActa Crystallographica. Section D, Structural Biology|May 3, 2022
Crystal structure of the middle and C-terminal domains of Hsp90α labeled with a coumarin derivative reveals a potential allosteric binding site as a drug targetShuxia Peng, Jeff Woodruff, Prabhat Kumar Pathak, et al.Biochemistry|June 24, 2004
Novobiocin induces a distinct conformation of Hsp90 and alters Hsp90-cochaperone-client interactionsBo-Geon Yun, Wenjun Huang, Natalie Leach, et al.Biochimica Et Biophysica Acta|April 17, 2012
Characterization of the interaction of Aha1 with components of the Hsp90 chaperone machine and client proteinsLiang Sun, Thomas Prince, Jacob R Manjarrez, et al.Bioorganic & Medicinal Chemistry Letters|January 29, 2011
Identification and initial SAR of silybin: an Hsp90 inhibitorHuiping Zhao, Gary E Brandt, Lakshmi Galam, et al.Pageof 4