作为动态微室的神经元应激颗粒:当前概念和悬而未决的问题。

IF 2.9 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Anna-Carina Söhnel, Roland Brandt
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引用次数: 5

摘要

应激颗粒是胞质内的无膜rna -蛋白复合物,在胞质内响应各种应激源而形成。压力颗粒通过称为液-液相分离的过程形成,该过程增加颗粒内RNA和蛋白质的局部浓度,为mRNA和相关蛋白质创建动态分选站,并调节mRNA用于蛋白质翻译的可用性。我们介绍了神经元应激颗粒作为动态细胞质微室的概念,其中它们的成分不同地循环进出,监测细胞环境。我们讨论了神经元应激颗粒具有独特的特征,并包含亚结构,其中单个成分瞬时相互作用。我们描述了神经元应激颗粒在多个水平上调节蛋白质表达,并影响细胞骨架蛋白tau的蛋白质形态。我们认为,更好地了解神经元中应激颗粒动力学的调节及其物质状态的调节对于理解它们在生理和病理应激反应中的功能是必要的。最后,我们描述了确定关键应力颗粒组织者的行为和调节以及活神经元中应力颗粒的物理状态的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neuronal stress granules as dynamic microcompartments: current concepts and open questions.

Stress granules are cytosolic, membraneless RNA-protein complexes that form in the cytosol in response to various stressors. Stress granules form through a process termed liquid-liquid phase separation, which increases the local concentration of RNA and protein within the granules, creates dynamic sorting stations for mRNAs and associated proteins, and modulates the availability of mRNA for protein translation. We introduce the concept that neuronal stress granules act as dynamic cytosolic microcompartments in which their components differentially cycle in and out, monitoring the cellular environment. We discuss that neuronal stress granules have distinctive features and contain substructures in which individual components interact transiently. We describe that neuronal stress granules modulate protein expression at multiple levels and affect the proteoform profile of the cytoskeletal protein tau. We argue that a better knowledge of the regulation of stress granule dynamics in neurons and the modulation of their material state is necessary to understand their function during physiological and pathological stress responses. Finally, we delineate approaches to determine the behavior and regulation of critical stress granule organizers and the physical state of stress granules in living neurons.

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来源期刊
Biological Chemistry
Biological Chemistry 生物-生化与分子生物学
CiteScore
7.20
自引率
0.00%
发文量
63
审稿时长
4-8 weeks
期刊介绍: Biological Chemistry keeps you up-to-date with all new developments in the molecular life sciences. In addition to original research reports, authoritative reviews written by leading researchers in the field keep you informed about the latest advances in the molecular life sciences. Rapid, yet rigorous reviewing ensures fast access to recent research results of exceptional significance in the biological sciences. Papers are published in a "Just Accepted" format within approx.72 hours of acceptance.
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