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人线粒体高温需求 A2 蛋白酶对蛋白质底物加工的结构基础。

Structural basis of protein substrate processing by human mitochondrial high-temperature requirement A2 protease.

机构信息

Department of Molecular Genetics, University of Toronto, Toronto, ON M5S 1A8, Canada.

Department of Biochemistry, University of Toronto, Toronto, ON M5S 1A8, Canada.

出版信息

Proc Natl Acad Sci U S A. 2022 Apr 26;119(17):e2203172119. doi: 10.1073/pnas.2203172119. Epub 2022 Apr 22.

Abstract

The human high-temperature requirement A2 (HtrA2) protein is a trimeric protease that cleaves misfolded proteins to protect cells from stresses caused by toxic, proteinaceous aggregates, and the aberrant function of HtrA2 is closely related to the onset of neurodegenerative disorders. Our methyl-transverse relaxation optimized spectroscopy (TROSY)–based NMR studies using small-peptide ligands have previously revealed a stepwise activation mechanism involving multiple distinct conformational states. However, very little is known about how HtrA2 binds to protein substrates and if the distinct conformational states observed in previous peptide studies might be involved in the processing of protein clients. Herein, we use solution-based NMR spectroscopy to investigate the interaction between the N-terminal Src homology 3 domain from downstream of receptor kinase (drk) with an added C-terminal HtrA2-binding motif (drkN SH3-PDZbm) that exhibits marginal folding stability and serves as a mimic of a physiological protein substrate. We show that drkN SH3-PDZbm binds to HtrA2 via a two-pronged interaction, involving both its C-terminal PDZ-domain binding motif and a central hydrophobic region, with binding occurring preferentially via an unfolded ensemble of substrate molecules. Multivalent interactions between several clients and a single HtrA2 trimer significantly stimulate the catalytic activity of HtrA2, suggesting that binding avidity plays an important role in regulating substrate processing. Our results provide a thermodynamic, kinetic, and structural description of the interaction of HtrA2 with protein substrates and highlight the importance of a trimeric architecture for function as a stress-protective protease that mitigates aggregation.

摘要

人高温需求 A2(HtrA2)蛋白是一种三聚体蛋白酶,可切割错误折叠的蛋白质,以保护细胞免受毒性蛋白质聚集物引起的压力,以及 HtrA2 的异常功能与神经退行性疾病的发生密切相关。我们以前使用基于小肽配体的甲基横向弛豫优化光谱(TROSY)NMR 研究揭示了一个逐步激活机制,涉及多个不同的构象状态。然而,人们对 HtrA2 如何与蛋白质底物结合知之甚少,并且以前在肽研究中观察到的不同构象状态是否可能参与蛋白质底物的加工。在此,我们使用基于溶液的 NMR 光谱学研究下游受体激酶(drk)的 N 端Src 同源 3 结构域与添加的 C 端 HtrA2 结合基序(drkN SH3-PDZbm)之间的相互作用,该基序表现出轻微的折叠稳定性,并且作为生理蛋白底物的模拟物。我们表明,drkN SH3-PDZbm 通过涉及其 C 末端 PDZ 结构域结合基序和中心疏水区的双管齐下的相互作用与 HtrA2 结合,结合主要通过未折叠的底物分子集合体发生。几个客户和单个 HtrA2 三聚体之间的多价相互作用显著刺激了 HtrA2 的催化活性,这表明结合亲和力在调节底物加工中起着重要作用。我们的结果提供了 HtrA2 与蛋白质底物相互作用的热力学,动力学和结构描述,并强调了三聚体结构对作为减轻聚集的应激保护蛋白酶的功能的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8eb6/9170070/3850520e4cec/pnas.2203172119fig01.jpg

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