乙酰化对 Tau 微管结合重复序列聚集的不同影响的分子见解

IF 5.3 2区 化学 Q1 CHEMISTRY, MEDICINAL
Yu Zou*, Lulu Guan, Jingwang Tan, Bote Qi, Yunxiang Sun, Fengjuan Huang and Qingwen Zhang*, 
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引用次数: 0

摘要

tau蛋白聚集成细胞内纤维包涵体是包括阿尔茨海默病和慢性创伤性脑病在内的tau病的特征。tau 蛋白的微管结合(MTB)结构域含有三个或四个序列相似的重复序列,在决定 tau 蛋白的聚集方面起着重要作用。先前的研究报告表明,赖氨酸残基的异常乙酰化对病理 tau 聚集体的形成有明显的影响。然而,其潜在的分子机制仍然难以捉摸。在这项研究中,我们进行了总共 144 μs 的大量复制交换分子动力学(REMD)模拟,系统地研究了四个 tau MTB 重复序列的二聚化,并探索了 Lys280(K280)或 Lys321(K321)乙酰化对 R2 或 R3 二聚体构象组合的影响。我们的结果表明,在四个重复序列中,R3 最容易发生聚集,其次是 R2 和 R4,而 R1 的聚集倾向最弱,结构紊乱。K280 的乙酰化可增加 β 片层结构的形成并加强链间的相互作用,从而促进 R2 肽的聚集。然而,K321 的乙酰化会降低 R3 二聚体的 β 片层含量,降低 R3 肽形成长 β 链的能力,促进稳定螺旋结构的形成。K321 乙酰化会大大削弱 R3 二聚体的盐桥和 Y310-Y310 π-π 堆积相互作用,从而抑制二聚化。这项研究揭示了tau MTB重复序列的结构组合,并从机理上揭示了乙酰化对tau聚集的影响,这可能会加深对tau病发病机制的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Molecular Insights into the Differential Effects of Acetylation on the Aggregation of Tau Microtubule-Binding Repeats

Molecular Insights into the Differential Effects of Acetylation on the Aggregation of Tau Microtubule-Binding Repeats

Molecular Insights into the Differential Effects of Acetylation on the Aggregation of Tau Microtubule-Binding Repeats

Aggregation of tau protein into intracellular fibrillary inclusions is characterized as the hallmark of tauopathies, including Alzheimer’s disease and chronic traumatic encephalopathy. The microtubule-binding (MTB) domain of tau, containing either three or four repeats with sequence similarities, plays an important role in determining tau’s aggregation. Previous studies have reported that abnormal acetylation of lysine residues displays a distinct effect on the formation of pathological tau aggregates. However, the underlying molecular mechanism remains mostly elusive. In this study, we performed extensive replica exchange molecular dynamics (REMD) simulations of 144 μs in total to systematically investigate the dimerization of four tau MTB repeats and explore the impacts of Lys280 (K280) or Lys321 (K321) acetylation on the conformational ensembles of the R2 or R3 dimer. Our results show that R3 is the most prone to aggregation among the four repeats, followed by R2 and R4, while R1 displays the weakest aggregation propensity with a disordered structure. Acetylation of K280 could promote the aggregation of R2 peptides by increasing the formation of β-sheet structures and strengthening the interchain interaction. However, K321 acetylation decreases the β-sheet content of the R3 dimer, reduces the ability of R3 peptides to form long β-strands, and promotes the stable helix structure formation. The salt bridge and Y310–Y310 π–π stacking interactions of the R3 dimer are greatly weakened by K321 acetylation, resulting in the inhibition of dimerization. This study uncovers the structural ensembles of tau MTB repeats and provides mechanistic insights into the influences of acetylation on tau aggregation, which may deepen the understanding of the pathogenesis of tauopathies.

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来源期刊
CiteScore
9.80
自引率
10.70%
发文量
529
审稿时长
1.4 months
期刊介绍: The Journal of Chemical Information and Modeling publishes papers reporting new methodology and/or important applications in the fields of chemical informatics and molecular modeling. Specific topics include the representation and computer-based searching of chemical databases, molecular modeling, computer-aided molecular design of new materials, catalysts, or ligands, development of new computational methods or efficient algorithms for chemical software, and biopharmaceutical chemistry including analyses of biological activity and other issues related to drug discovery. Astute chemists, computer scientists, and information specialists look to this monthly’s insightful research studies, programming innovations, and software reviews to keep current with advances in this integral, multidisciplinary field. As a subscriber you’ll stay abreast of database search systems, use of graph theory in chemical problems, substructure search systems, pattern recognition and clustering, analysis of chemical and physical data, molecular modeling, graphics and natural language interfaces, bibliometric and citation analysis, and synthesis design and reactions databases.
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