受体-核糖体耦合:神经元室中外部信号和mRNA翻译之间的联系。

IF 12.1 1区 医学 Q1 NEUROSCIENCES
Annual review of neuroscience Pub Date : 2022-07-08 Epub Date: 2022-01-05 DOI:10.1146/annurev-neuro-083021-110015
Max Koppers, Christine E Holt
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引用次数: 5

摘要

轴突接受细胞外信号,在发育过程中帮助指导生长和突触形成,并在成熟过程中维持神经元的功能和存活。这些信号通过细胞表面受体传递信息,这些受体可以在结合位点启动局部细胞内信号传导,包括局部信使RNA (mRNA)翻译。翻译机制与受体的直接耦合提供了一种有吸引力的方式来激活这种局部mRNA翻译,并以高时空分辨率改变局部蛋白质组。在这里,我们首先讨论越来越多的证据表明,不同的外部刺激通过受体触发轴突中特定mrna亚群的翻译,从而在发育和成熟神经元的各种过程中发挥突出作用。然后,我们讨论了受体介导的调节局部mRNA翻译的分子机制,重点是受体-核糖体的直接偶联。我们提出受体-核糖体偶联比其他翻译调节机制提供了几个优势,并且是细胞通信的常见机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Receptor-Ribosome Coupling: A Link Between Extrinsic Signals and mRNA Translation in Neuronal Compartments.

Axons receive extracellular signals that help to guide growth and synapse formation during development and to maintain neuronal function and survival during maturity. These signals relay information via cell surface receptors that can initiate local intracellular signaling at the site of binding, including local messenger RNA (mRNA) translation. Direct coupling of translational machinery to receptors provides an attractive way to activate this local mRNA translation and change the local proteome with high spatiotemporal resolution. Here, we first discuss the increasing evidence that different external stimuli trigger translation of specific subsets of mRNAs in axons via receptors and thus play a prominent role in various processes in both developing and mature neurons. We then discuss the receptor-mediated molecular mechanisms that regulate local mRNA translation with a focus on direct receptor-ribosome coupling. We advance the idea that receptor-ribosome coupling provides several advantages over other translational regulation mechanisms and is a common mechanism in cell communication.

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来源期刊
Annual review of neuroscience
Annual review of neuroscience 医学-神经科学
CiteScore
25.30
自引率
0.70%
发文量
29
期刊介绍: The Annual Review of Neuroscience is a well-established and comprehensive journal in the field of neuroscience, with a rich history and a commitment to open access and scholarly communication. The journal has been in publication since 1978, providing a long-standing source of authoritative reviews in neuroscience. The Annual Review of Neuroscience encompasses a wide range of topics within neuroscience, including but not limited to: Molecular and cellular neuroscience, Neurogenetics, Developmental neuroscience, Neural plasticity and repair, Systems neuroscience, Cognitive neuroscience, Behavioral neuroscience, Neurobiology of disease. Occasionally, the journal also features reviews on the history of neuroscience and ethical considerations within the field.
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