Post-Translational Modifications Control Phase Transitions of Tau

IF 12.7 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Wyatt C. Powell, McKinley Nahum, Karl Pankratz, Morgane Herlory, James Greenwood, Darya Poliyenko, Patrick Holland, Ruiheng Jing, Luke Biggerstaff, Michael H. B. Stowell and Maciej A. Walczak*, 
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引用次数: 0

Abstract

The self-assembly of Tau into filaments, which mirror the structures observed in Alzheimer’s disease (AD) brains, raises questions about the role of AD-specific post-translational modifications (PTMs) in the formation of paired helical filaments (PHFs). To investigate this, we developed a synthetic approach to produce Tau(291–391) featuring N-acetyllysine, phosphoserine, phosphotyrosine, and N-glycosylation at positions commonly modified in post-mortem AD brains. Using various electron and optical microscopy techniques, we discovered that these modifications generally hinder the in vitro assembly of Tau into PHFs. Interestingly, while acetylation’s effect on Tau assembly displayed variability, either promoting or inhibiting phase transitions in cofactor-free aggregation, heparin-induced aggregation, and RNA-mediated liquid–liquid phase separation (LLPS), phosphorylation uniformly mitigated these processes. Our observations suggest that PTMs, particularly those situated outside the rigid core, are pivotal in the nucleation of PHFs. Moreover, with heparin-induced aggregation leading to the formation of heterogeneous aggregates, most AD-specific PTMs appeared to decelerate aggregation. The impact of acetylation on RNA-induced LLPS was notably site-dependent, whereas phosphorylation consistently reduced LLPS across all proteoforms examined. These insights underscore the complex interplay between site-specific PTMs and environmental factors in modulating Tau aggregation kinetics, highlighting the role of PTMs located outside the ordered filament core in driving the self-assembly.

Synthetic peptide fragments of Tau self-assemble into fibrils mirroring paired helical filaments. Post-translational modifications in the ordered core control aggregation and phase transitions.

翻译后修饰控制着 Tau 的相变
Tau自组装成的丝状结构反映了在阿尔茨海默病(AD)大脑中观察到的结构,这引发了关于AD特异性翻译后修饰(PTMs)在成对螺旋丝状结构(PHFs)形成中的作用的问题。为了探究这个问题,我们开发了一种合成方法来制备Tau(291-391),其特点是在AD死后大脑中常见的修饰位置上具有N-乙酰赖氨酸、磷酸丝氨酸、磷酸酪氨酸和N-糖基化。利用各种电子和光学显微镜技术,我们发现这些修饰通常会阻碍 Tau 在体外组装成 PHF。有趣的是,虽然乙酰化对 Tau 组装的影响具有变异性,可以促进或抑制无辅因子聚集、肝素诱导的聚集和 RNA 介导的液-液相分离(LLPS)中的相变,但磷酸化却一致地减轻了这些过程。我们的观察结果表明,PTMs,尤其是那些位于刚性核心之外的 PTMs,在 PHFs 的成核过程中起着关键作用。此外,肝素诱导的聚集会导致异质聚集体的形成,大多数 AD 特异性 PTM 似乎会减缓聚集。乙酰化对 RNA 诱导的 LLPS 的影响具有明显的位点依赖性,而磷酸化则会持续降低所有受检蛋白形式的 LLPS。这些发现强调了位点特异性 PTM 与环境因素在调节 Tau 聚集动力学中复杂的相互作用,突出了位于有序丝核之外的 PTM 在驱动自组装中的作用。有序核心中的翻译后修饰控制着聚集和相变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Central Science
ACS Central Science Chemical Engineering-General Chemical Engineering
CiteScore
25.50
自引率
0.50%
发文量
194
审稿时长
10 weeks
期刊介绍: ACS Central Science publishes significant primary reports on research in chemistry and allied fields where chemical approaches are pivotal. As the first fully open-access journal by the American Chemical Society, it covers compelling and important contributions to the broad chemistry and scientific community. "Central science," a term popularized nearly 40 years ago, emphasizes chemistry's central role in connecting physical and life sciences, and fundamental sciences with applied disciplines like medicine and engineering. The journal focuses on exceptional quality articles, addressing advances in fundamental chemistry and interdisciplinary research.
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