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热休克蛋白90(Hsp90)的促溶解功能有助于客户蛋白成熟和细胞强劲生长。

Solubility-promoting function of Hsp90 contributes to client maturation and robust cell growth.

作者信息

Pursell Natalie W, Mishra Parul, Bolon Daniel N A

机构信息

Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, Massachusetts, USA.

出版信息

Eukaryot Cell. 2012 Aug;11(8):1033-41. doi: 10.1128/EC.00099-12. Epub 2012 Jun 1.

Abstract

The Hsp90 chaperone is required for the maturation of signal transduction clients, including many kinases and nuclear steroid hormone receptors. The binding and hydrolysis of ATP by Hsp90 drive conformational rearrangements in three structure domains. Two intrinsically disordered regions of Hsp90 located between these domains and at the C terminus have traditionally been considered to impart flexibility. We discovered that the charged nature of these acid-rich disordered regions imparts a solubility-promoting function to Hsp90 that is important for its cellular activity in yeast. Both the solubility-promoting function and ATPase activity must occur in the same Hsp90 molecule in order to support robust growth, suggesting that the solubility-promoting function is required during the ATP-driven client maturation process. Expression of model clients together with Hsp90 variants indicated interdependent solubilities mediated by the aggregation propensities of both the client and Hsp90. We propose a model whereby the charge-rich disordered regions of Hsp90 serve a solubility-promoting function important for complexes with aggregation-prone clients. These findings demonstrate a novel biological function of the intrinsically disordered regions in Hsp90 and provide a compelling rationale for why their charged properties are conserved throughout eukaryotic evolution.

摘要

热休克蛋白90(Hsp90)伴侣蛋白是信号转导相关蛋白成熟所必需的,这些蛋白包括许多激酶和核类固醇激素受体。Hsp90对ATP的结合和水解驱动了三个结构域的构象重排。传统上认为,位于这些结构域之间以及C末端的Hsp90的两个内在无序区域赋予了其灵活性。我们发现,这些富含酸性的无序区域的带电性质赋予了Hsp90促进溶解性的功能,这对其在酵母中的细胞活性很重要。促进溶解性的功能和ATP酶活性必须在同一个Hsp90分子中发生,以支持强劲的生长,这表明在ATP驱动的底物成熟过程中需要促进溶解性的功能。模型底物与Hsp90变体一起表达表明,底物和Hsp90的聚集倾向介导了相互依赖的溶解性。我们提出了一个模型,即Hsp90富含电荷的无序区域具有促进溶解性的功能,这对于与易于聚集的底物形成的复合物很重要。这些发现证明了Hsp90中内在无序区域的一种新的生物学功能,并为其带电特性在整个真核生物进化过程中得以保留提供了令人信服的理由。

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本文引用的文献

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