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本文引用的文献

1
The diverse members of the mammalian HSP70 machine show distinct chaperone-like activities.哺乳动物 HSP70 机器的多样化成员表现出不同的伴侣样活性。
Biochem J. 2011 Apr 1;435(1):127-42. doi: 10.1042/BJ20101247.
2
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。
Nat Rev Mol Cell Biol. 2010 Aug;11(8):579-92. doi: 10.1038/nrm2941.
3
Peripheral protein quality control removes unfolded CFTR from the plasma membrane.外周蛋白质量控制系统将未折叠的 CFTR 从质膜中移除。
Science. 2010 Aug 13;329(5993):805-10. doi: 10.1126/science.1191542. Epub 2010 Jul 1.
4
Mechanisms of the Hsp70 chaperone system.热休克蛋白 70 伴侣系统的作用机制。
Biochem Cell Biol. 2010 Apr;88(2):291-300. doi: 10.1139/o09-175.
5
Multiple molecules of Hsc70 and a dimer of DjA1 independently bind to an unfolded protein.多个 Hsc70 分子和一个 DjA1 二聚体独立结合到一个未折叠的蛋白质上。
J Biol Chem. 2010 May 28;285(22):16789-97. doi: 10.1074/jbc.M110.101501. Epub 2010 Apr 2.
6
Hsp40 chaperones promote degradation of the HERG potassium channel.Hsp40 伴侣蛋白促进 HERG 钾通道的降解。
J Biol Chem. 2010 Jan 29;285(5):3319-29. doi: 10.1074/jbc.M109.024000. Epub 2009 Nov 25.
7
Identification of a consensus motif in substrates bound by a Type I Hsp40.鉴定I型热休克蛋白40(Hsp40)所结合底物中的共有基序。
Proc Natl Acad Sci U S A. 2009 Jul 7;106(27):11073-8. doi: 10.1073/pnas.0900746106. Epub 2009 Jun 22.
8
Converging concepts of protein folding in vitro and in vivo.体外和体内蛋白质折叠的趋同概念。
Nat Struct Mol Biol. 2009 Jun;16(6):574-81. doi: 10.1038/nsmb.1591.
9
Solution conformation of wild-type E. coli Hsp70 (DnaK) chaperone complexed with ADP and substrate.与二磷酸腺苷(ADP)和底物复合的野生型大肠杆菌热休克蛋白70(DnaK)伴侣蛋白的溶液构象
Proc Natl Acad Sci U S A. 2009 May 26;106(21):8471-6. doi: 10.1073/pnas.0903503106. Epub 2009 May 13.
10
The type I Hsp40 Ydj1 utilizes a farnesyl moiety and zinc finger-like region to suppress prion toxicity.I型热休克蛋白40(Hsp40)Ydj1利用法尼基部分和锌指样区域来抑制朊病毒毒性。
J Biol Chem. 2009 Feb 6;284(6):3628-39. doi: 10.1074/jbc.M807369200. Epub 2008 Dec 4.

DNAJA2 的底物释放机制对于伴侣分子介导的折叠是必不可少的。

The DNAJA2 substrate release mechanism is essential for chaperone-mediated folding.

机构信息

Department of Biochemistry, McGill University and Groupe de Recherche Axé sur la Structure des Protéines, Montreal, Quebec H3G 0B1, Canada.

出版信息

J Biol Chem. 2012 Dec 7;287(50):41939-54. doi: 10.1074/jbc.M112.413278. Epub 2012 Oct 22.

DOI:10.1074/jbc.M112.413278
PMID:23091061
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3516741/
Abstract

DNAJA1 (DJA1/Hdj2) and DNAJA2 (DJA2) are the major J domain partners of human Hsp70/Hsc70 chaperones. Although they have overall similarity with the well characterized type I co-chaperones from yeast and bacteria, they are biologically distinct, and their functional mechanisms are poorly characterized. We identified DJA2-specific activities in luciferase folding and repression of human ether-a-go-go-related gene (HERG) trafficking that depended on its expression levels in cells. Mutations in different internal domains of DJA2 abolished these effects. Using purified proteins, we addressed the mechanistic defects. A mutant lacking the region between the zinc finger motifs (DJA2-Δm2) was able to bind substrate similar to wild type but was incapable of releasing substrate during its transfer to Hsc70. The equivalent mutation in DJA1 also abolished its substrate release. A DJA2 mutant (DJA-221), which had its C-terminal dimerization region replaced by that of DJA1, was inactive but retained its ability to release substrate. The release mechanism required the J domain and ATP hydrolysis by Hsc70, although the nucleotide dependence diverged between DJA2 and DJA1. Limited proteolysis suggested further conformational differences between the two wild-type co-chaperones and the mutants. Our results demonstrate an essential role of specific DJA domains in the folding mechanism of Hsc70.

摘要

DNAJA1 (DJA1/Hdj2) 和 DNAJA2 (DJA2) 是人类 Hsp70/Hsc70 伴侣蛋白的主要 J 结构域伴侣。尽管它们与酵母和细菌中特征明确的 I 型共伴侣蛋白具有总体相似性,但它们在生物学上是不同的,其功能机制也尚未得到充分表征。我们在荧光素酶折叠和人 ether-a-go-go 相关基因 (HERG) 转运的抑制中发现了依赖于细胞中表达水平的 DJA2 特异性活性。DJA2 不同内部结构域的突变消除了这些效应。使用纯化的蛋白质,我们解决了机制缺陷。缺乏锌指模体之间区域的突变体 (DJA2-Δm2) 能够与野生型类似地结合底物,但在将其转移到 Hsc70 时无法释放底物。DJA1 中的等效突变也消除了其底物释放。其 C 末端二聚化区域被 DJA1 取代的 DJA2 突变体 (DJA-221) 没有活性,但保留了释放底物的能力。释放机制需要 J 结构域和 Hsc70 的 ATP 水解,尽管 DJA2 和 DJA1 之间的核苷酸依赖性存在差异。有限的蛋白水解表明两种野生型共伴侣和突变体之间存在进一步的构象差异。我们的结果表明,特定的 DJA 结构域在 Hsc70 折叠机制中具有重要作用。