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Hsp104 N 端结构域与底物的相互作用在蛋白质解聚中起调节作用。

Hsp104 N-terminal domain interaction with substrates plays a regulatory role in protein disaggregation.

机构信息

Department of Chemical and Structural Biology, Weizmann Institute of Science, Rehovot, Israel.

出版信息

FEBS J. 2022 Sep;289(17):5359-5377. doi: 10.1111/febs.16441. Epub 2022 Mar 30.

Abstract

Heat shock protein 104 (Hsp104) protein disaggregases are powerful molecular machines that harness the energy derived from ATP binding and hydrolysis to disaggregate a wide range of protein aggregates and amyloids, as well as to assist in yeast prion propagation. Little is known, however, about how Hsp104 chaperones recognize such a diversity of substrates, or indeed the contribution of the substrate-binding N-terminal domain (NTD) to Hsp104 function. Herein, we present a NMR spectroscopy study, which structurally characterizes the Hsp104 NTD-substrate interaction. We show that the NTD includes a substrate-binding groove that specifically recognizes exposed hydrophobic stretches in unfolded, misfolded, amyloid and prion substrates of Hsp104. In addition, we find that the NTD itself has chaperoning activities which help to protect the exposed hydrophobic regions of its substrates from further misfolding and aggregation, thereby priming them for threading through the Hsp104 central channel. We further demonstrate that mutations to this substrate-binding groove abolish Hsp104 activation by client proteins and keep the chaperone in a partially inhibited state. The Hsp104 variant with these mutations also exhibited significantly reduced disaggregation activity and cell survival at extreme temperatures. Together, our findings provide both a detailed characterization of the NTD-substrate complex and insight into the functional regulatory role of the NTD in protein disaggregation and yeast thermotolerance.

摘要

热休克蛋白 104(Hsp104)蛋白解聚酶是强大的分子机器,它利用 ATP 结合和解水解所产生的能量来解聚广泛的蛋白质聚集体和淀粉样蛋白,以及协助酵母朊病毒的传播。然而,人们对 Hsp104 伴侣如何识别如此多样化的底物,或者事实上,底物结合的 N 端结构域(NTD)对 Hsp104 功能的贡献知之甚少。在此,我们进行了一项 NMR 光谱学研究,该研究对 Hsp104 NTD-底物相互作用进行了结构特征描述。我们表明,NTD 包含一个底物结合凹槽,该凹槽特异性识别 Hsp104 未折叠、错误折叠、淀粉样和朊病毒底物中暴露的疏水性延伸。此外,我们发现 NTD 本身具有伴侣活性,有助于保护其底物中暴露的疏水区免受进一步的错误折叠和聚集,从而为它们穿过 Hsp104 中心通道做好准备。我们进一步证明,该底物结合凹槽的突变会使客户端蛋白失去对 Hsp104 的激活作用,并使伴侣蛋白保持部分抑制状态。具有这些突变的 Hsp104 变体在极端温度下的解聚活性和细胞存活率也显著降低。总之,我们的研究结果不仅提供了 NTD-底物复合物的详细特征,还深入了解了 NTD 在蛋白质解聚和酵母耐热性中的功能调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9faf/9541529/1b2626668379/FEBS-289-5359-g003.jpg

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