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液液相分离增强 TDP-43 LCD 聚集但延迟种子聚集。

Liquid-Liquid Phase Separation Enhances TDP-43 LCD Aggregation but Delays Seeded Aggregation.

机构信息

Department of Neurosciences, Experimental Neurology and Leuven Brain Institute (LBI), KU Leuven-University of Leuven, 3000 Leuven, Belgium.

VIB, Center for Brain & Disease Research, Laboratory of Neurobiology, 3000 Leuven, Belgium.

出版信息

Biomolecules. 2021 Apr 8;11(4):548. doi: 10.3390/biom11040548.

Abstract

Aggregates of TAR DNA-binding protein (TDP-43) are a hallmark of several neurodegenerative disorders, including amyotrophic lateral sclerosis (ALS). Although TDP-43 aggregates are an undisputed pathological species at the end stage of these diseases, the molecular changes underlying the initiation of aggregation are not fully understood. The aim of this study was to investigate how phase separation affects self-aggregation and aggregation seeded by pre-formed aggregates of either the low-complexity domain (LCD) or its short aggregation-promoting regions (APRs). By systematically varying the physicochemical conditions, we observed that liquid-liquid phase separation (LLPS) promotes spontaneous aggregation. However, we noticed less efficient seeded aggregation in phase separating conditions. By analyzing a broad range of conditions using the Hofmeister series of buffers, we confirmed that stabilizing hydrophobic interactions prevail over destabilizing electrostatic forces. RNA affected the cooperativity between LLPS and aggregation in a "reentrant" fashion, having the strongest positive effect at intermediate concentrations. Altogether, we conclude that conditions which favor LLPS enhance the subsequent aggregation of the TDP-43 LCD with complex dependence, but also negatively affect seeding kinetics.

摘要

TDP-43 蛋白聚集物是几种神经退行性疾病的标志,包括肌萎缩性侧索硬化症(ALS)。尽管 TDP-43 聚集物是这些疾病晚期无可争议的病理物质,但引发聚集的分子变化尚不完全清楚。本研究旨在探讨相分离如何影响由低复杂度结构域(LCD)或其短的聚集促进区(APRs)的预形成聚集物引发的自我聚集和聚集。通过系统地改变物理化学条件,我们观察到液-液相分离(LLPS)促进自发聚集。然而,我们注意到在相分离条件下,种子聚集的效率较低。通过使用 HOFMEISTER 系列缓冲液分析广泛的条件,我们证实稳定疏水力胜过破坏静电力。RNA 以“再进入”的方式影响 LLPS 和聚集之间的协同作用,在中间浓度下具有最强的正效应。总之,我们得出结论,有利于 LLPS 的条件增强了 TDP-43 LCD 的后续聚集,具有复杂的依赖性,但也对种子动力学产生负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f469/8068378/5983738a57f3/biomolecules-11-00548-g001.jpg

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