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分子拥挤与 RNA 协同促进相分离、微管相互作用以及 Tau 凝聚物的成核。

Molecular crowding and RNA synergize to promote phase separation, microtubule interaction, and seeding of Tau condensates.

机构信息

German Center for Neurodegenerative Diseases (DZNE), Berlin, Germany.

Institute for Biochemistry and Molecular Biology, Laboratory for Structural Biology of Infection and Inflammation, University of Hamburg, Hamburg, Germany.

出版信息

EMBO J. 2022 Jun 1;41(11):e108882. doi: 10.15252/embj.2021108882. Epub 2022 Mar 17.

DOI:10.15252/embj.2021108882
PMID:35298090
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9156969/
Abstract

Biomolecular condensation of the neuronal microtubule-associated protein Tau (MAPT) can be induced by coacervation with polyanions like RNA, or by molecular crowding. Tau condensates have been linked to both functional microtubule binding and pathological aggregation in neurodegenerative diseases. We find that molecular crowding and coacervation with RNA, two conditions likely coexisting in the cytosol, synergize to enable Tau condensation at physiological buffer conditions and to produce condensates with a strong affinity to charged surfaces. During condensate-mediated microtubule polymerization, their synergy enhances bundling and spatial arrangement of microtubules. We further show that different Tau condensates efficiently induce pathological Tau aggregates in cells, including accumulations at the nuclear envelope that correlate with nucleocytoplasmic transport deficits. Fluorescent lifetime imaging reveals different molecular packing densities of Tau in cellular accumulations and a condensate-like density for nuclear-envelope Tau. These findings suggest that a complex interplay between interaction partners, post-translational modifications, and molecular crowding regulates the formation and function of Tau condensates. Conditions leading to prolonged existence of Tau condensates may induce the formation of seeding-competent Tau and lead to distinct cellular Tau accumulations.

摘要

神经元微管相关蛋白 Tau(MAPT)的生物分子凝聚可以通过与多阴离子(如 RNA)共凝聚或分子拥挤诱导。Tau 凝聚物与神经退行性疾病中的功能性微管结合和病理性聚集有关。我们发现,分子拥挤和与 RNA 的共凝聚,这两种在细胞质中可能共存的条件,协同作用使 Tau 在生理缓冲条件下发生凝聚,并产生对带电表面具有强亲和力的凝聚物。在凝聚物介导的微管聚合过程中,它们的协同作用增强了微管的捆绑和空间排列。我们进一步表明,不同的 Tau 凝聚物在细胞中有效地诱导病理性 Tau 聚集,包括在核膜处的聚集,这与核质转运缺陷相关。荧光寿命成像揭示了细胞聚集中 Tau 的不同分子堆积密度和核膜 Tau 的凝聚物样密度。这些发现表明,相互作用伙伴、翻译后修饰和分子拥挤之间的复杂相互作用调节 Tau 凝聚物的形成和功能。导致 Tau 凝聚物长时间存在的条件可能会诱导形成有能力成核的 Tau,并导致细胞中 Tau 的不同聚集。

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