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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Chaperoning the Chaperone: A Role for the Co-chaperone Cpr7 in Modulating Hsp90 Function in Saccharomyces cerevisiae
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Chaperoning the Chaperone: A Role for the Co-chaperone Cpr7 in Modulating Hsp90 Function in Saccharomyces cerevisiae

机译:陪伴伴侣:陪伴伴侣Cpr7在酿酒酵母中调节Hsp90功能的作用。

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摘要

Heat-shock protein 90 (Hsp90) of Saccharomyces cerevisiae is an abundant essential eukaryotic molecular chaperone involved in the activation and stabilization of client proteins, including several transcription factors and oncogenic kinases. Hsp90 undergoes a complex series of conformational changes and interacts with partner co-chaperones such as Sba1, Cpr6, Cpr7, and Cns1 as it binds and hydrolyzes ATP. In the absence of nucleotide, Hsp90 is dimerized only at the carboxy-terminus. In the presence of ATP, Hsp90 also dimerizes at the amino-terminus, creating a binding site for Sba1. Truncation of a charged linker region of yeast Hsp90 (Hsp82 Delta linker) was known to disrupt the ability of Hsp82 to undergo amino-terminal dimerization and bind Sba1. We found that yeast expressing Hsp82Dlinker constructs exhibited a specific synthetic lethal phenotype in cells lacking CPR7. The isolated tetratricopeptide repeat domain of Cpr7 was both necessary and sufficient for growth in those strains. Cpr6 and Cpr7 stably bound the carboxy-terminus of wild-type Hsp82 only in the presence of nonhydrolyzable ATP and formed an Hsp82-Cpr6-Cpr7 ternary complex. However, in cells expressing Hsp82 Delta linker or lacking CPR7, Cpr6 was able to bind Hsp82 in the presence or absence of nucleotide. Overexpression of CNS1, but not of other co-chaperones, in cpr7 cells restored nucleotide-dependent Hsp82-Cpr6 interaction. Together, our results suggest that the in vivo functions of Cpr7 include modulating Hsp90 conformational changes, mediating proper signaling of the nucleotide-bound state to the carboxy-terminus of Hsp82, or regulating Hsp82-Cpr6 interaction.
机译:酿酒酵母的热休克蛋白90(Hsp90)是一种丰富的必不可少的真核分子伴侣,参与客户蛋白的激活和稳定化,包括几种转录因子和致癌激酶。 Hsp90经历了一系列复杂的构象变化,并在结合并水解ATP时与Sba1,Cpr6,Cpr7和Cns1等伴侣伴侣分子相互作用。在没有核苷酸的情况下,Hsp90仅在羧基末端二聚。在ATP的存在下,Hsp90在氨基末端也会二聚,从而形成Sba1的结合位点。已知酵母Hsp90的带电接头区域(Hsp82 Delta接头)的截短会破坏Hsp82进行氨基末端二聚化并结合Sba1的能力。我们发现,表达Hsp82Dlinker构建体的酵母在缺乏CPR7的细胞中表现出特定的合成致死表型。分离的Cpr7四肽重复结构域对于在这些菌株中生长既是必需的又是足够的。 Cpr6和Cpr7仅在不可水解的ATP存在下才能稳定地结合野生型Hsp82的羧基末端,并形成Hsp82-Cpr6-Cpr7三元复合物。但是,在表达Hsp82 Delta接头或缺少CPR7的细胞中,Cpr6能够在存在或不存在核苷酸的情况下结合Hsp82。在cpr7细胞中CNS1的过表达,而不是其他伴侣分子的过表达,恢复了核苷酸依赖性Hsp82-Cpr6相互作用。在一起,我们的结果表明,Cpr7的体内功能包括调节Hsp90构象变化,介导核苷酸结合状态到Hsp82羧基末端的正确信号传导或调节Hsp82-Cpr6相互作用。

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