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热休克蛋白70(Hsp70)从聚集体中取代小分子热休克蛋白,以启动蛋白质重折叠。

Hsp70 displaces small heat shock proteins from aggregates to initiate protein refolding.

作者信息

Żwirowski Szymon, Kłosowska Agnieszka, Obuchowski Igor, Nillegoda Nadinath B, Piróg Artur, Ziętkiewicz Szymon, Bukau Bernd, Mogk Axel, Liberek Krzysztof

机构信息

Department of Molecular and Cellular Biology, Intercollegiate Faculty of Biotechnology UG-MUG, University of Gdansk, Gdansk, Poland.

Center for Molecular Biology, University of Heidelberg (ZMBH), Heidelberg, Germany.

出版信息

EMBO J. 2017 Mar 15;36(6):783-796. doi: 10.15252/embj.201593378. Epub 2017 Feb 20.

Abstract

Small heat shock proteins (sHsps) are an evolutionary conserved class of ATP-independent chaperones that protect cells against proteotoxic stress. sHsps form assemblies with aggregation-prone misfolded proteins, which facilitates subsequent substrate solubilization and refolding by ATP-dependent Hsp70 and Hsp100 chaperones. Substrate solubilization requires disruption of sHsp association with trapped misfolded proteins. Here, we unravel a specific interplay between Hsp70 and sHsps at the initial step of the solubilization process. We show that Hsp70 displaces surface-bound sHsps from sHsp-substrate assemblies. This Hsp70 activity is unique among chaperones and highly sensitive to alterations in Hsp70 concentrations. The Hsp70 activity is reflected in the organization of sHsp-substrate assemblies, including an outer dynamic sHsp shell that is removed by Hsp70 and a stable core comprised mainly of aggregated substrates. Binding of Hsp70 to the sHsp/substrate core protects the core from aggregation and directs sequestered substrates towards refolding pathway. The sHsp/Hsp70 interplay has major impact on protein homeostasis as it sensitizes substrate release towards cellular Hsp70 availability ensuring efficient refolding of damaged proteins under favourable folding conditions.

摘要

小热休克蛋白(sHsps)是一类进化保守的不依赖ATP的分子伴侣,可保护细胞免受蛋白毒性应激。sHsps与易于聚集的错误折叠蛋白形成聚集体,这有助于随后依赖ATP的Hsp70和Hsp100分子伴侣使底物溶解并重新折叠。底物溶解需要破坏sHsp与被困错误折叠蛋白的结合。在此,我们揭示了在溶解过程的初始步骤中Hsp70和sHsps之间的一种特定相互作用。我们表明,Hsp70从sHsp-底物聚集体中取代表面结合的sHsps。这种Hsp70活性在分子伴侣中是独特的,并且对Hsp70浓度的变化高度敏感。Hsp70活性反映在sHsp-底物聚集体的组织中,包括一个被Hsp70去除的外部动态sHsp壳和一个主要由聚集底物组成的稳定核心。Hsp70与sHsp/底物核心的结合保护核心不发生聚集,并引导被隔离的底物走向重新折叠途径。sHsp/Hsp70的相互作用对蛋白质稳态有重大影响,因为它使底物释放对细胞Hsp70的可用性敏感,从而确保在有利的折叠条件下受损蛋白质的有效重新折叠。

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