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关于生化扰动对单体α-突触核蛋白构象中间体影响的单分子研究

single-molecule investigations of the impacts of biochemical perturbations on conformational intermediates of monomeric α-synuclein.

作者信息

Huang Wenmao, Liu Jingzhun, Le Shimin, Yao Mingxi, Shi Yi, Yan Jie

机构信息

Mechanobiology Institute, National University of Singapore, Singapore 117411.

School of Chemistry and Molecular Engineering, East China Normal University, Shanghai 200241, China.

出版信息

APL Bioeng. 2024 Mar 1;8(1):016114. doi: 10.1063/5.0188714. eCollection 2024 Mar.

Abstract

α-Synuclein aggregation is a common trait in synucleinopathies, including Parkinson's disease. Being an unstructured protein, α-synuclein exists in several distinct conformational intermediates, contributing to both its function and pathogenesis. However, the regulation of these monomer conformations by biochemical factors and potential drugs has remained elusive. In this study, we devised an single-molecule manipulation approach to pinpoint kinetically stable conformational intermediates of monomeric α-synuclein and explore the effects of various biochemical factors and drugs. We uncovered a partially folded conformation located in the non-amyloid-β component (NAC) region of monomeric α-synuclein, which is regulated by a preNAC region. This conformational intermediate is sensitive to biochemical perturbations and small-molecule drugs that influencing α-synuclein's aggregation tendency. Our findings reveal that this partially folded intermediate may play a role in α-synuclein aggregation, offering fresh perspectives for potential treatments aimed at the initial stage of higher-order α-synuclein aggregation. The single-molecule approach developed here can be broadly applied to the study of disease-related intrinsically disordered proteins.

摘要

α-突触核蛋白聚集是突触核蛋白病(包括帕金森病)的一个共同特征。作为一种无结构的蛋白质,α-突触核蛋白以几种不同的构象中间体形式存在,这对其功能和发病机制都有影响。然而,生化因素和潜在药物对这些单体构象的调节作用仍不清楚。在本研究中,我们设计了一种单分子操作方法,以确定单体α-突触核蛋白的动力学稳定构象中间体,并探索各种生化因素和药物的影响。我们发现了一种位于单体α-突触核蛋白非淀粉样β成分(NAC)区域的部分折叠构象,它受前NAC区域的调节。这种构象中间体对影响α-突触核蛋白聚集倾向的生化扰动和小分子药物敏感。我们的研究结果表明,这种部分折叠中间体可能在α-突触核蛋白聚集中起作用,为针对高阶α-突触核蛋白聚集初始阶段的潜在治疗提供了新的视角。这里开发的单分子方法可广泛应用于与疾病相关的内在无序蛋白质的研究。

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