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首页> 外文期刊>Nature Communications >An Hsp90 co-chaperone protein in yeast is functionally replaced by site-specific posttranslational modification in humans
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An Hsp90 co-chaperone protein in yeast is functionally replaced by site-specific posttranslational modification in humans

机译:酵母中的Hsp90伴侣蛋白在人类中被位点特异性翻译后修饰功能取代

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摘要

Heat shock protein 90 (Hsp90) is an essential eukaryotic molecular chaperone. To properly chaperone its clientele, Hsp90 proceeds through an ATP-dependent conformational cycle influenced by posttranslational modifications (PTMs) and assisted by a number of co-chaperone proteins. Although Hsp90 conformational changes in solution have been well-studied, regulation of these complex dynamics in cells remains unclear. Phosphorylation of human Hsp90α at the highly conserved tyrosine 627 has previously been reported to reduce client interaction and Aha1 binding. Here we report that these effects are due to a long-range conformational impact inhibiting Hsp90α N-domain dimerization and involving a region of the middle domain/carboxy-terminal domain interface previously suggested to be a substrate binding site. Although Y627 is not phosphorylated in yeast, we demonstrate that the non-conserved yeast co-chaperone, Hch1, similarly affects yeast Hsp90 (Hsp82) conformation and function, raising the possibility that appearance of this PTM in higher eukaryotes represents an evolutionary substitution for HCH1 .
机译:热休克蛋白90(Hsp90)是必不可少的真核分子伴侣。为了正确地陪伴其客户群,Hsp90经历了ATP依赖的构象循环,该循环受翻译后修饰(PTM)的影响,并辅以多种陪伴蛋白。尽管已经研究了溶液中Hsp90构象的变化,但是对细胞中这些复杂动力学的调控仍不清楚。先前已报道在高度保守的酪氨酸627上人Hsp90α的磷酸化可减少客户相互作用和Aha1结合。在这里我们报告这些影响是由于抑制Hsp90αN域二聚体的远程构象影响,并且涉及先前建议是底物结合位点的中间结构域/羧基末端结构域界面区域。尽管Y627在酵母中没有被磷酸化,但我们证明了非保守的酵母伴侣伴侣Hch1同样会影响酵母Hsp90(Hsp82)的构象和功能,从而提高了该PTM在高等真核生物中的出现代表了HCH1进化替代的可能性。 。

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