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本文引用的文献

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Mechanics of Hsp70 chaperones enables differential interaction with client proteins.热休克蛋白 70 伴侣的力学特性使其能够与客户蛋白进行差异化相互作用。
Nat Struct Mol Biol. 2011 Mar;18(3):345-51. doi: 10.1038/nsmb.2006. Epub 2011 Jan 30.
2
Substrate discrimination of the chaperone BiP by autonomous and cochaperone-regulated conformational transitions.伴侣蛋白 BiP 通过自主和共伴侣调节的构象转变对底物的识别。
Nat Struct Mol Biol. 2011 Feb;18(2):150-8. doi: 10.1038/nsmb.1970. Epub 2011 Jan 9.
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An interdomain sector mediating allostery in Hsp70 molecular chaperones.一个介域域间结构域介导热休克蛋白 70 分子伴侣的变构。
Mol Syst Biol. 2010 Sep 21;6:414. doi: 10.1038/msb.2010.65.
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The HSP70 chaperone machinery: J proteins as drivers of functional specificity.HSP70 伴侣机制:J 蛋白作为功能特异性的驱动因素。
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Binding of a small molecule at a protein-protein interface regulates the chaperone activity of hsp70-hsp40.小分子在蛋白质-蛋白质界面的结合调节 hsp70-hsp40 的伴侣活性。
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Mechanisms of the Hsp70 chaperone system.热休克蛋白 70 伴侣系统的作用机制。
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7
The conformational dynamics of the mitochondrial Hsp70 chaperone.线粒体 Hsp70 伴侣的构象动态。
Mol Cell. 2010 Apr 9;38(1):89-100. doi: 10.1016/j.molcel.2010.03.010.
8
Heat shock protein 70 (hsp70) as an emerging drug target.热休克蛋白70(hsp70)作为一种新兴的药物靶点。
J Med Chem. 2010 Jun 24;53(12):4585-602. doi: 10.1021/jm100054f.
9
ATPase domain and interdomain linker play a key role in aggregation of mitochondrial Hsp70 chaperone Ssc1.ATP 酶结构域和结构域间连接区在介导线粒体 Hsp70 伴侣 Ssc1 聚集过程中发挥关键作用。
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Heat shock protein 40: structural studies and their functional implications.热休克蛋白40:结构研究及其功能意义
Protein Pept Lett. 2009;16(6):606-12. doi: 10.2174/092986609788490159.

Hsp70 分子间结构域连接区的四个疏水性残基具有两个不同的作用。

The four hydrophobic residues on the Hsp70 inter-domain linker have two distinct roles.

机构信息

Department of Physiology and Biophysics, School of Medicine, Virginia Commonwealth University, Richmond, VA 23298, USA.

出版信息

J Mol Biol. 2011 Sep 2;411(5):1099-113. doi: 10.1016/j.jmb.2011.07.001. Epub 2011 Jul 7.

DOI:10.1016/j.jmb.2011.07.001
PMID:21762702
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5737734/
Abstract

The ubiquitous molecular chaperone 70-kDa heat shock proteins (Hsp70) play key roles in maintaining protein homeostasis. Hsp70s contain two functional domains: a nucleotide binding domain and a substrate binding domain. The two domains are connected by a highly conserved inter-domain linker, and allosteric coupling between the two domains is critical for chaperone function. The auxiliary chaperone 40-kDa heat shock proteins (Hsp40) facilitate all the biological processes associated with Hsp70s by stimulating the ATPase activity of Hsp70s. Although an overall essential role of the inter-domain linker in both allosteric coupling and Hsp40 interaction has been suggested, the molecular mechanisms remain largely unknown. Previously, we reported a crystal structure of a full-length Hsp70 homolog, in which the inter-domain linker forms a well-ordered β strand. Four highly conserved hydrophobic residues reside on the inter-domain linker. In DnaK, a well-studied Hsp70, these residues are V389, L390, L391, and L392. In this study, we biochemically dissected their roles. The inward-facing side chains of V389 and L391 form extensive hydrophobic contacts with the nucleotide binding domain, suggesting their essential roles in coupling the two functional domains, a hypothesis confirmed by mutational analysis. On the other hand, L390 and L392 face outward on the surface. Mutation of either abolishes DnaK's in vivo function, yet intrinsic biochemical properties remain largely intact. In contrast, Hsp40 interaction is severely compromised. Thus, for the first time, we separated the two essential roles of the highly conserved Hsp70 inter-domain linker: coupling the two functional domains through V389 and L391 and mediating the interaction with Hsp40 through L390 and L392.

摘要

普遍存在的分子伴侣 70kDa 热休克蛋白 (Hsp70) 在维持蛋白质平衡中发挥关键作用。Hsp70 包含两个功能域:核苷酸结合域和底物结合域。两个结构域由高度保守的结构域间连接区连接,两个结构域之间的变构偶联对于伴侣功能至关重要。辅助伴侣 40kDa 热休克蛋白 (Hsp40) 通过刺激 Hsp70 的 ATP 酶活性,促进与 Hsp70 相关的所有生物学过程。尽管已经提出结构域间连接区在变构偶联和 Hsp40 相互作用中的整体必需作用,但分子机制在很大程度上仍然未知。以前,我们报道了全长 Hsp70 同源物的晶体结构,其中结构域间连接区形成了有序的β链。四个高度保守的疏水性残基位于结构域间连接区。在 DnaK 中,这些残基是 V389、L390、L391 和 L392。在这项研究中,我们从生物化学角度剖析了它们的作用。V389 和 L391 的内向侧链与核苷酸结合域形成广泛的疏水接触,这表明它们在连接两个功能域中起关键作用,这一假设通过突变分析得到了证实。另一方面,L390 和 L392 位于表面的外侧。突变任一个都会使 DnaK 的体内功能丧失,但内在的生化特性基本保持完整。相反,Hsp40 的相互作用严重受损。因此,我们首次将高度保守的 Hsp70 结构域间连接区的两个重要作用分开:通过 V389 和 L391 连接两个功能域,通过 L390 和 L392 介导与 Hsp40 的相互作用。