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The charged linker of the molecular chaperone Hsp90 modulates domain contacts and biological function

机译:分子伴侣Hsp90的带电接头调节域接触和生物学功能

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摘要

The heat shock protein 90 (Hsp90) is a dimeric molecular chaperone essential in numerous cellular processes. Its three domains (N, M, and C) are connected via linkers that allow the rearrangement of domains during Hsp90’s chaperone cycle. A unique linker, called charged linker (CL), connects the N- and M-domain of Hsp90. We used an integrated approach, combining single-molecule techniques and biochemical and in vivo methods, to study the unresolved structure and function of this region. Here we show that the CL facilitates intramolecular rearrangements on the milliseconds timescale between a state in which the N-domain is docked to the M-domain and a state in which the N-domain is more flexible. The docked conformation is stabilized by 1.1 kBT (2.7 kJ/mol) through binding of the CL to the N-domain of Hsp90. Docking and undocking of the CL affects the much slower intermolecular domain movement and Hsp90’s chaperone cycle governing client activation, cell viability, and stress tolerance.
机译:热激蛋白90(Hsp90)是在许多细胞过程中必不可少的二聚体分子伴侣。它的三个域(N,M和C)通过链接器连接,该链接器允许在Hsp90的分子伴侣周期内重新排列域。唯一的链接器称为带电链接器(CL),它连接Hsp90的N和M域。我们使用整合的方法,将单分子技术与生化和体内方法相结合,研究了该区域的未解析结构和功能。在这里,我们表明,CL有助于在N域对接至M域的状态与N域更灵活的状态之间的毫秒时间内进行分子内重排。通过CL与Hsp90的N结构域结合,对接构象通过1.1 kBT(2.7 kJ / mol)稳定。 CL的对接和取消对接会影响慢得多的分子间域移动和Hsp90的分子伴侣周期,后者控制着客户的激活,细胞活力和压力耐受性。

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