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基于巯基的应激感应伴侣蛋白的开关机制。

Thiol-based switching mechanisms of stress-sensing chaperones.

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Michigan, 1105 N. University Ave., Ann Arbor, MI48109, USA.

Department of Molecular Biology, Universitätsmedizin Göttingen, Humboldtallee 23, 37073 Göttingen, Germany.

出版信息

Biol Chem. 2020 Oct 5;402(3):239-252. doi: 10.1515/hsz-2020-0262. Print 2021 Feb 23.

Abstract

Thiol-based redox switches evolved as efficient post-translational regulatory mechanisms that enable individual proteins to rapidly respond to sudden environmental changes. While some protein functions need to be switched off to save resources and avoid potentially error-prone processes, protective functions become essential and need to be switched on. In this review, we focus on thiol-based activation mechanisms of stress-sensing chaperones. Upon stress exposure, these chaperones convert into high affinity binding platforms for unfolding proteins and protect cells against the accumulation of potentially toxic protein aggregates. Their chaperone activity is independent of ATP, a feature that becomes especially important under oxidative stress conditions, where cellular ATP levels drop and canonical ATP-dependent chaperones no longer operate. , reductive inactivation and substrate release require the restoration of ATP levels, which ensures refolding of client proteins by ATP-dependent foldases. We will give an overview over the different strategies that cells evolved to rapidly increase the pool of ATP-independent chaperones upon oxidative stress and provide mechanistic insights into how stress conditions are used to convert abundant cellular proteins into ATP-independent holding chaperones.

摘要

基于巯基的氧化还原开关作为有效的翻译后调控机制而进化,使单个蛋白质能够快速响应突然的环境变化。虽然一些蛋白质功能需要关闭以节省资源并避免潜在易错的过程,但保护功能变得至关重要,需要开启。在这篇综述中,我们重点介绍应激感应伴侣蛋白的基于巯基的激活机制。在应激暴露时,这些伴侣蛋白转化为高亲和力的展开蛋白结合平台,保护细胞免受潜在毒性蛋白聚集体的积累。它们的伴侣蛋白活性不依赖于 ATP,这一特性在氧化应激条件下尤为重要,在这种条件下,细胞内的 ATP 水平下降,经典的 ATP 依赖性伴侣蛋白不再发挥作用。 ,还原失活和底物释放需要恢复 ATP 水平,这确保了 ATP 依赖性折叠酶对客户蛋白的重折叠。我们将概述细胞在氧化应激时快速增加无 ATP 依赖性伴侣蛋白库的不同策略,并提供关于应激条件如何用于将丰富的细胞蛋白转化为无 ATP 依赖性结合伴侣蛋白的机制见解。

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