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域间通讯抑制 Sse1 的高内在 ATP 酶活性对于其与 Ssa1 的共解聚酶活性至关重要。

Interdomain communication suppressing high intrinsic ATPase activity of Sse1 is essential for its co-disaggregase activity with Ssa1.

机构信息

Proteomics and Structural Biology Unit, CSIR-Institute of Genomics and Integrative Biology, New Delhi, India.

Academy of Scientific and Innovative Research (AcSir), CSIR-HRDC, Ghaziabad, India.

出版信息

FEBS J. 2020 Feb;287(4):671-694. doi: 10.1111/febs.15045. Epub 2019 Sep 11.

DOI:10.1111/febs.15045
PMID:31423733
Abstract

In eukaryotes, Hsp110s are unambiguous cognates of the Hsp70 chaperones, in primary sequence, domain organization, and structure. Hsp110s function as nucleotide exchange factors (NEFs) for the Hsp70s although their apparent loss of Hsp70-like chaperone activity, nature of interdomain communication, and breadth of domain functions are still puzzling. Here, by combining single-molecule FRET, small angle X-ray scattering measurements (SAXS), and MD simulation, we show that yeast Hsp110, Sse1 lacks canonical Hsp70-like interdomain allostery. However, the protein exhibits unique noncanonical conformational changes within its domains. Sse1 maintains an open-lid substrate-binding domain (SBD) in close contact with its nucleotide-binding domain (NBD), irrespective of its ATP hydrolysis status. To further appreciate such ATP-hydrolysis-independent exhaustive interaction between two domains of Hsp110s, NBD-SBD chimera was constructed between Hsp110 (Sse1) and Hsp70 (Ssa1). In Sse1/Ssa1 chimera, we observed undocking of two domains leading to complete loss of NEF activity of Sse1. Interestingly, chimeric proteins exhibited significantly enhanced ATPase rate of Sse1-NBD compared to wild-type protein, implying that intrinsic ATPase activity of the protein remains mostly repressed. Apart from repressing the high ATPase activity of its NBD, interactions between two domains confer thermal stability to Sse1 and play critical role in the (co)chaperoning function of Sse1 in Ssa1-mediated disaggregation activity. Altogether, Sse1 exhibits a unique interdomain interaction, which is essential for its NEF activity, suppression of high intrinsic ATPase activity, co-chaperoning activity in disaggregase machinery, and stability of the protein.

摘要

在真核生物中,Hsp110s 在初级序列、结构域组织和结构上与 Hsp70 伴侣蛋白是明确的同源物。尽管 Hsp110s 的功能是作为 Hsp70 的核苷酸交换因子 (NEF),但其明显缺乏 Hsp70 样伴侣活性、结构域间通讯的性质以及结构域功能的广泛性质仍然令人费解。在这里,通过结合单分子 FRET、小角 X 射线散射测量 (SAXS) 和 MD 模拟,我们表明酵母 Hsp110 Sse1 缺乏典型的 Hsp70 样结构域变构。然而,该蛋白在其结构域内表现出独特的非典型构象变化。无论其 ATP 水解状态如何,Sse1 都保持与核苷酸结合结构域 (NBD) 紧密接触的开放盖底物结合结构域 (SBD)。为了进一步了解 Hsp110s 两个结构域之间这种与 ATP 水解无关的彻底相互作用,我们在 Hsp110 (Sse1) 和 Hsp70 (Ssa1) 之间构建了 NBD-SBD 嵌合体。在 Sse1/Ssa1 嵌合体中,我们观察到两个结构域的分离导致 Sse1 的 NEF 活性完全丧失。有趣的是,与野生型蛋白相比,嵌合蛋白表现出 Sse1-NBD 的 ATP 酶速率显著提高,这表明该蛋白的内在 ATP 酶活性仍然大部分受到抑制。除了抑制其 NBD 的高 ATP 酶活性外,两个结构域之间的相互作用赋予 Sse1 热稳定性,并在 Ssa1 介导的解聚活性中的 Sse1 的 (共)伴侣功能中发挥关键作用。总之,Sse1 表现出独特的结构域间相互作用,这对于其 NEF 活性、抑制高内在 ATP 酶活性、在解聚酶机制中的共伴侣活性以及蛋白质的稳定性至关重要。

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