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Hsp70 伴侣蛋白在其 ATP 酶循环关键步骤中的构象动力学。

Conformational dynamics of the Hsp70 chaperone throughout key steps of its ATPase cycle.

机构信息

Center for Molecular Biology of Heidelberg University (ZMBH), DKFZ-ZMBH-Alliance, D-69120 Heidelberg, Germany.

出版信息

Proc Natl Acad Sci U S A. 2022 Nov 29;119(48):e2123238119. doi: 10.1073/pnas.2123238119. Epub 2022 Nov 21.

Abstract

The 70 kDa heat shock proteins (Hsp70s) are highly versatile molecular chaperones that assist in a wide variety of protein-folding processes. They exert their functions by continuously cycling between states of low and high affinity for client polypeptides, driven by ATP-binding and hydrolysis. This cycling is tuned by cochaperones and clients. Although structures for the high and low client affinity conformations of Hsp70 and Hsp70 domains in complex with various cochaperones and peptide clients are available, it is unclear how structural rearrangements in the presence of cochaperones and clients are orchestrated in space and time. Here, we report insights into the conformational dynamics of the prokaryotic model Hsp70 DnaK throughout its adenosine-5'-triphosphate hydrolysis (ATPase) cycle using proximity-induced fluorescence quenching. Our data suggest that ATP and cochaperone-induced structural rearrangements in DnaK occur in a sequential manner and resolve hitherto unpredicted cochaperone and client-induced structural rearrangements. Peptides induce large conformational changes in DnaK·ATP prior to ATP hydrolysis, whereas a protein client induces significantly smaller changes but is much more effective in stimulating ATP hydrolysis. Analysis of the enthalpies of activation for the ATP-induced opening of the DnaK lid in the presence of clients indicates that the lid does not exert an enthalpic pulling force onto bound clients, suggesting entropic pulling as a major mechanism for client unfolding. Our data reveal important insights into the mechanics, allostery, and dynamics of Hsp70 chaperones. We established a methodology for understanding the link between dynamics and function, Hsp70 diversity, and activity modulation.

摘要

70 kDa 热休克蛋白 (Hsp70s) 是高度多功能的分子伴侣,可协助多种蛋白质折叠过程。它们通过结合和水解 ATP 不断在低亲和度和高亲和度状态之间循环,从而发挥作用。这种循环受到共伴侣和客户的调节。虽然已经获得了 Hsp70 和 Hsp70 结构域与各种共伴侣和肽客户结合的高亲和度和低亲和度构象的结构,但尚不清楚在共伴侣和客户存在的情况下,结构重排如何在空间和时间上协调。在这里,我们使用邻近诱导荧光猝灭法报告了在整个腺苷-5'-三磷酸水解 (ATPase) 循环中,原核模型 Hsp70 DnaK 的构象动力学的见解。我们的数据表明,ATP 和共伴侣诱导的 DnaK 结构重排以顺序方式发生,并解决了迄今为止未预测的共伴侣和客户诱导的结构重排。肽在 ATP 水解之前诱导 DnaK·ATP 发生大的构象变化,而蛋白质客户仅引起较小的变化,但在刺激 ATP 水解方面更有效。在存在客户的情况下,分析 ATP 诱导的 DnaK 盖打开的焓变表明盖不会对结合的客户施加焓拉力,这表明熵拉力是客户展开的主要机制。我们的数据揭示了 HSP70 伴侣的机械、变构和动力学的重要见解。我们建立了一种理解动态与功能、HSP70 多样性和活性调节之间联系的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68f3/9889847/cd1ae20d3067/pnas.2123238119fig01.jpg

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