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RNA以可逆方式将tau储存在复合凝聚物中。

RNA stores tau reversibly in complex coacervates.

作者信息

Zhang Xuemei, Lin Yanxian, Eschmann Neil A, Zhou Hongjun, Rauch Jennifer N, Hernandez Israel, Guzman Elmer, Kosik Kenneth S, Han Songi

机构信息

Molecular, Cell and Developmental Biology, University of California Santa Barbara, Santa Barbara, California, United States of America.

Neuroscience Research Institute, University of California Santa Barbara, Santa Barbara, California, United States of America.

出版信息

PLoS Biol. 2017 Jul 6;15(7):e2002183. doi: 10.1371/journal.pbio.2002183. eCollection 2017 Jul.

Abstract

Nonmembrane-bound organelles that behave like liquid droplets are widespread among eukaryotic cells. Their dysregulation appears to be a critical step in several neurodegenerative conditions. Here, we report that tau protein, the primary constituent of Alzheimer neurofibrillary tangles, can form liquid droplets and therefore has the necessary biophysical properties to undergo liquid-liquid phase separation (LLPS) in cells. Consonant with the factors that induce LLPS, tau is an intrinsically disordered protein that complexes with RNA to form droplets. Uniquely, the pool of RNAs to which tau binds in living cells are tRNAs. This phase state of tau is held in an approximately 1:1 charge balance across the protein and the nucleic acid constituents, and can thus be maximal at different RNA:tau mass ratios, depending on the biopolymer constituents involved. This feature is characteristic of complex coacervation. We furthermore show that the LLPS process is directly and sensitively tuned by salt concentration and temperature, implying it is modulated by both electrostatic interactions between the involved protein and nucleic acid constituents, as well as net changes in entropy. Despite the high protein concentration within the complex coacervate phase, tau is locally freely tumbling and capable of diffusing through the droplet interior. In fact, tau in the condensed phase state does not reveal any immediate changes in local protein packing, local conformations and local protein dynamics from that of tau in the dilute solution state. In contrast, the population of aggregation-prone tau as induced by the complexation with heparin is accompanied by large changes in local tau conformations and irreversible aggregation. However, prolonged residency within the droplet state eventually results in the emergence of detectable β-sheet structures according to thioflavin-T assay. These findings suggest that the droplet state can incubate tau and predispose the protein toward the formation of insoluble fibrils.

摘要

行为类似液滴的无膜细胞器在真核细胞中广泛存在。它们的失调似乎是几种神经退行性疾病的关键步骤。在此,我们报告,阿尔茨海默病神经原纤维缠结的主要成分tau蛋白可形成液滴,因此具有在细胞中发生液-液相分离(LLPS)所需的生物物理特性。与诱导LLPS的因素一致,tau是一种内在无序的蛋白质,与RNA结合形成液滴。独特的是,tau在活细胞中结合的RNA池是转运RNA(tRNA)。tau的这种相态在蛋白质和核酸成分之间保持约1:1的电荷平衡,因此在不同的RNA:tau质量比下可以达到最大值,这取决于所涉及的生物聚合物成分。这一特征是复合凝聚的特点。我们还表明,LLPS过程直接且敏感地受盐浓度和温度调节,这意味着它受到所涉及的蛋白质和核酸成分之间的静电相互作用以及熵的净变化的调节。尽管复合凝聚相内蛋白质浓度很高,但tau在局部自由翻滚,能够在液滴内部扩散。事实上,处于凝聚相态的tau在局部蛋白质堆积、局部构象和局部蛋白质动力学方面与稀溶液态的tau相比没有任何立即变化。相反,与肝素复合诱导的易聚集tau群体伴随着局部tau构象的巨大变化和不可逆聚集。然而,根据硫黄素-T检测,在液滴状态下长时间停留最终会导致可检测到的β-折叠结构出现。这些发现表明,液滴状态可以容纳tau并使该蛋白质易于形成不溶性纤维。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/986e/5500003/11e1735cb81b/pbio.2002183.g001.jpg

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