期刊论文详细信息
JOURNAL OF MOLECULAR BIOLOGY 卷:427
Roles of Intramolecular and Intermolecular Interactions in Functional Regulation of the Hsp70 J-protein Co-Chaperone Sis1
Article
Yu, Hyun Young1  Ziegelhoffer, Thomas1  Osipiuk, Jerzy2  Ciesielskil, Szymon J.1  Baranowski, Maciej3,4  Zhou, Min2  Joachimiak, Andrzej2,5  Craig, Elizabeth A.1 
[1] Univ Wisconsin, Dept Biochem, Madison, WI 53706 USA
[2] Argonne Natl Lab, Dept Biosci, Midwest Ctr Struct Genom, Argonne, IL 60439 USA
[3] Univ Gdansk, Intercollegiate Fac Biotechnol, Lab Biopolymer Struct, PL-80822 Gdansk, Poland
[4] Med Univ Gdansk, PL-80822 Gdansk, Poland
[5] Univ Chicago, Dept Biochem & Mol Biol, Chicago, IL 60637 USA
关键词: molecular chaperone;    protein folding;    Hsp40;    J domain;    EEVD motif;   
DOI  :  10.1016/j.jmb.2015.02.007
来源: Elsevier
PDF
【 摘 要 】

Unlike other Hsp70 molecular chaperones, those of the eukaryotic cytosol have four residues, EEVD, at their C-termini. EEVD(Hsp70) binds adaptor proteins of the Hsp90 chaperone system and mitochondrial membrane preprotein receptors, thereby facilitating processing of Hsp70-bound clients through protein folding and translocation pathways. Among J-protein co-chaperones functioning in these pathways, Sis1 is unique, as it also binds the EEVD(Hsp70) motif. However, little is known about the role of the Sis1:EEVD(Hsp70) interaction. We found that deletion of EEVD(Hsp70) abolished the ability of Sis1, but not the ubiquitous J-protein Ydj1, to partner with Hsp70 in in vitro protein refolding. Sis1 co-chaperone activity with Hsp70(Delta EEVD) was restored upon substitution of a glutamic acid of the J-domain. Structural analysis revealed that this key glutamic acid, which is not present in Ydj1, forms a salt bridge with an arginine of the immediately adjacent glycine-rich region. Thus, restoration of Sis1 in vitro activity suggests that intramolecular interactions between the J-domain and glycine-rich region control co-chaperone activity, which is optimal only when Sis1 interacts with the EEVD(Hsp70) motif. However, we found that disruption of the Sis1:EEVD(Hsp70) interaction enhances the ability of Sis1 to substitute for Ydj1 in vivo. Our results are consistent with the idea that interaction of Sis1 with EEVD(Hsp70) minimizes transfer of Sis1-bound clients to Hsp70s that are primed for client transfer to folding and translocation pathways by their preassociation with EEVD binding adaptor proteins. These interactions may be one means by which cells triage Ydj1- and Sis1-bound clients to productive and quality control pathways, respectively. (C) 2015 Elsevier Ltd. All rights reserved.

【 授权许可】

Free   

【 预 览 】
附件列表
Files Size Format View
10_1016_j_jmb_2015_02_007.pdf 1307KB PDF download
  文献评价指标  
  下载次数:6次 浏览次数:0次