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1
Mutation of essential Hsp90 co-chaperones SGT1 or CNS1 renders yeast hypersensitive to overexpression of other co-chaperones.必需的热休克蛋白90(Hsp90)共伴侣蛋白SGT1或CNS1发生突变会使酵母对其他共伴侣蛋白的过表达高度敏感。
Curr Genet. 2014 Nov;60(4):265-76. doi: 10.1007/s00294-014-0432-3. Epub 2014 Jun 13.
2
Structural basis for protein antiaggregation activity of the trigger factor chaperone.结构基础的触发因素伴侣蛋白的蛋白质抗聚集活性。
Science. 2014 May 9;344(6184):1250494. doi: 10.1126/science.1250494.
3
The ribosomal biogenesis protein Utp21 interacts with Hsp90 and has differing requirements for Hsp90-associated proteins.核糖体生物发生蛋白 Utp21 与 Hsp90 相互作用,并对 Hsp90 相关蛋白有不同的需求。
PLoS One. 2014 Mar 19;9(3):e92569. doi: 10.1371/journal.pone.0092569. eCollection 2014.
4
Interaction of heat shock protein 90 and the co-chaperone Cpr6 with Ura2, a bifunctional enzyme required for pyrimidine biosynthesis.热休克蛋白 90 与共伴侣 Cpr6 与 Ura2 的相互作用,Ura2 是嘧啶生物合成所必需的双功能酶。
J Biol Chem. 2013 Sep 20;288(38):27406-27414. doi: 10.1074/jbc.M113.504142. Epub 2013 Aug 7.
5
Contributions of co-chaperones and post-translational modifications towards Hsp90 drug sensitivity.共伴侣和翻译后修饰对 Hsp90 药物敏感性的贡献。
Future Med Chem. 2013 Jun;5(9):1059-71. doi: 10.4155/fmc.13.88.
6
Integration of the accelerator Aha1 in the Hsp90 co-chaperone cycle.加速器 Aha1 在 Hsp90 共伴侣循环中的整合。
Nat Struct Mol Biol. 2013 Mar;20(3):326-31. doi: 10.1038/nsmb.2502. Epub 2013 Feb 10.
7
Structure of the TPR domain of AIP: lack of client protein interaction with the C-terminal α-7 helix of the TPR domain of AIP is sufficient for pituitary adenoma predisposition.AIP TPR 结构域的结构:AIP TPR 结构域 C 末端α-7 螺旋与客户蛋白缺乏相互作用足以导致垂体腺瘤易感性。
PLoS One. 2012;7(12):e53339. doi: 10.1371/journal.pone.0053339. Epub 2012 Dec 31.
8
Cotranslational response to proteotoxic stress by elongation pausing of ribosomes.核糖体延伸暂停对蛋白质毒性应激的共翻译反应。
Mol Cell. 2013 Feb 7;49(3):453-63. doi: 10.1016/j.molcel.2012.12.001. Epub 2013 Jan 3.
9
Widespread regulation of translation by elongation pausing in heat shock.热休克中通过延伸暂停广泛调节翻译。
Mol Cell. 2013 Feb 7;49(3):439-52. doi: 10.1016/j.molcel.2012.11.028. Epub 2013 Jan 3.
10
Uncovering a region of heat shock protein 90 important for client binding in E. coli and chaperone function in yeast.揭示热休克蛋白 90 中一个对大肠杆菌中客户蛋白结合和酵母中伴侣蛋白功能重要的区域。
Mol Cell. 2013 Feb 7;49(3):464-73. doi: 10.1016/j.molcel.2012.11.017. Epub 2012 Dec 20.

热休克蛋白90(Hsp90)辅助伴侣蛋白Cpr6、Cpr7和Cns1与完整核糖体相互作用。

The Hsp90 cochaperones Cpr6, Cpr7, and Cns1 interact with the intact ribosome.

作者信息

Tenge Victoria R, Zuehlke Abbey D, Shrestha Neelima, Johnson Jill L

机构信息

Department of Biological Sciences, University of Idaho, Moscow, Idaho, USA.

Department of Biological Sciences, University of Idaho, Moscow, Idaho, USA

出版信息

Eukaryot Cell. 2015 Jan;14(1):55-63. doi: 10.1128/EC.00170-14. Epub 2014 Nov 7.

DOI:10.1128/EC.00170-14
PMID:25380751
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4279014/
Abstract

The abundant molecular chaperone Hsp90 is essential for the folding and stabilization of hundreds of distinct client proteins. Hsp90 is assisted by multiple cochaperones that modulate Hsp90's ATPase activity and/or promote client interaction, but the in vivo functions of many of these cochaperones are largely unknown. We found that Cpr6, Cpr7, and Cns1 interact with the intact ribosome and that Saccharomyces cerevisiae lacking CPR7 or containing mutations in CNS1 exhibited sensitivity to the translation inhibitor hygromycin. Cpr6 contains a peptidyl-prolyl isomerase (PPIase) domain and a tetratricopeptide repeat (TPR) domain flanked by charged regions. Truncation or alteration of basic residues near the carboxy terminus of Cpr6 disrupted ribosome interaction. Cns1 contains an amino-terminal TPR domain and a poorly characterized carboxy-terminal domain. The isolated carboxy-terminal domain was able to interact with the ribosome. Although loss of CPR6 does not cause noticeable growth defects, overexpression of CPR6 results in enhanced growth defects in cells expressing the temperature-sensitive cns1-G90D mutation (the G-to-D change at position 90 encoded by cns1). Cpr6 mutants that exhibit reduced ribosome interaction failed to cause growth defects, indicating that ribosome interaction is required for in vivo functions of Cpr6. Together, these results represent a novel link between the Hsp90 molecular-chaperone machine and protein synthesis.

摘要

丰富的分子伴侣Hsp90对于数百种不同的客户蛋白的折叠和稳定至关重要。Hsp90由多种辅助伴侣协助,这些辅助伴侣调节Hsp90的ATP酶活性和/或促进与客户蛋白的相互作用,但其中许多辅助伴侣在体内的功能很大程度上尚不清楚。我们发现Cpr6、Cpr7和Cns1与完整核糖体相互作用,并且缺乏CPR7或CNS1含有突变的酿酒酵母对翻译抑制剂潮霉素敏感。Cpr6包含一个肽基脯氨酰异构酶(PPIase)结构域和一个两侧带有带电区域的四肽重复(TPR)结构域。Cpr6羧基末端附近碱性残基的截断或改变破坏了核糖体相互作用。Cns1包含一个氨基末端TPR结构域和一个特征不明确的羧基末端结构域。分离的羧基末端结构域能够与核糖体相互作用。虽然缺失CPR6不会导致明显的生长缺陷,但CPR6的过表达会导致在表达温度敏感型cns1-G90D突变(由cns1编码的第90位G到D的变化)的细胞中生长缺陷增强。表现出核糖体相互作用减少的Cpr6突变体未能导致生长缺陷,这表明核糖体相互作用是Cpr6体内功能所必需的。总之,这些结果代表了Hsp90分子伴侣机器与蛋白质合成之间的一种新联系。