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伴侣蛋白介导的蛋白质折叠的分子机制:来自原子模拟的见解

Molecular mechanisms of chaperone-directed protein folding: Insights from atomistic simulations.

作者信息

Castelli Matteo, Magni Andrea, Bonollo Giorgio, Pavoni Silvia, Frigerio Francesco, Oliveira A Sofia F, Cinquini Fabrizio, Serapian Stefano A, Colombo Giorgio

机构信息

Dipartimento di Chimica, Università di Pavia, Pavia, Italy.

Department of Physical Chemistry, R&D Eni SpA, San Donato Milanese, Italy.

出版信息

Protein Sci. 2023 Dec 25;33(3):e4880. doi: 10.1002/pro.4880.

Abstract

Molecular chaperones, a family of proteins of which Hsp90 and Hsp70 are integral members, form an essential machinery to maintain healthy proteomes by controlling the folding and activation of a plethora of substrate client proteins. This is achieved through cycles in which Hsp90 and Hsp70, regulated by task-specific co-chaperones, process ATP and become part of a complex network that undergoes extensive compositional and conformational variations. Despite impressive advances in structural knowledge, the mechanisms that regulate the dynamics of functional assemblies, their response to nucleotides, and their relevance for client remodeling are still elusive. Here, we focus on the glucocorticoid receptor (GR):Hsp90:Hsp70:co-chaperone Hop client-loading and the GR:Hsp90:co-chaperone p23 client-maturation complexes, key assemblies in the folding cycle of glucocorticoid receptor (GR), a client strictly dependent upon Hsp90/Hsp70 for activity. Using a combination of molecular dynamics simulation approaches, we unveil with unprecedented detail the mechanisms that underpin function in these chaperone machineries. Specifically, we dissect the processes by which the nucleotide-encoded message is relayed to the client and how the distinct partners of the assemblies cooperate to (pre)organize partially folded GR during Loading and Maturation. We show how different ligand states determine distinct dynamic profiles for the functional interfaces defining the interactions in the complexes and modulate their overall flexibility to facilitate progress along the chaperone cycle. Finally, we also show that the GR regions engaged by the chaperone machinery display peculiar energetic signatures in the folded state, which enhance the probability of partial unfolding fluctuations. From these results, we propose a model where a dynamic cross-talk emerges between the chaperone dynamics states and remodeling of client-interacting regions. This factor, coupled to the highly dynamic nature of the assemblies and the conformational heterogeneity of their interactions, provides the basis for regulating the functions of distinct assemblies during the chaperoning cycle.

摘要

分子伴侣是一类蛋白质家族,其中热休克蛋白90(Hsp90)和热休克蛋白70(Hsp70)是其主要成员,它们通过控制大量底物客户蛋白的折叠和激活,形成了维持健康蛋白质组的重要机制。这一过程通过一系列循环实现,在这些循环中,Hsp90和Hsp70在特定任务的共伴侣蛋白的调节下,处理ATP,并成为一个复杂网络的一部分,该网络经历广泛的组成和构象变化。尽管在结构知识方面取得了令人瞩目的进展,但调节功能组件动力学的机制、它们对核苷酸的反应以及它们与客户蛋白重塑的相关性仍然难以捉摸。在这里,我们聚焦于糖皮质激素受体(GR):Hsp90:Hsp70:共伴侣蛋白Hop客户蛋白加载复合物以及GR:Hsp90:共伴侣蛋白p23客户蛋白成熟复合物,它们是糖皮质激素受体(GR)折叠循环中的关键组件,GR是一种严格依赖Hsp90/Hsp70发挥活性的客户蛋白。通过结合分子动力学模拟方法,我们以前所未有的细节揭示了这些伴侣蛋白机制中支撑功能的机制。具体而言,我们剖析了核苷酸编码信息传递给客户蛋白的过程,以及组件中不同伙伴如何在加载和成熟过程中协作以(预)组织部分折叠的GR。我们展示了不同的配体状态如何为定义复合物中相互作用的功能界面确定不同的动态特征,并调节其整体灵活性以促进伴侣蛋白循环的进展。最后,我们还表明,伴侣蛋白机制所作用的GR区域在折叠状态下呈现出特殊的能量特征,这增加了部分解折叠波动的可能性。基于这些结果,我们提出了一个模型,其中伴侣蛋白动力学状态与客户蛋白相互作用区域的重塑之间出现了动态串扰。这一因素,再加上组件的高度动态性质及其相互作用的构象异质性,为在伴侣蛋白循环中调节不同组件的功能提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ab8/10895457/7a25515613f1/PRO-33-e4880-g003.jpg

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