突触前活动区电压门控钙通道的多种组织。

IF 2.8 4区 医学 Q2 NEUROSCIENCES Frontiers in Synaptic Neuroscience Pub Date : 2022-01-01 DOI:10.3389/fnsyn.2022.1023256
Weijia Zhang, He-Hai Jiang, Fujun Luo
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摘要

突触是高度组织化的,但它们的组织和性质也高度多样化,以优化大脑回路的计算能力。沿着这些思路,突触前活动区的电压门控钙(CaV)通道是异质组织的,这创造了各种钙动力学特征,可以塑造单个突触的神经递质释放特性。广泛的研究揭示了CaV通道的亚型、数量和分布的惊人多样性,以及与对接突触囊泡的纳米级地形关系。此外,包括rim、rim结合蛋白、CAST/ELKS和神经素在内的多蛋白复合物是协调CaV通道在突触前活性区的多样化组织所必需的。本文综述了突触前CaV通道功能组织研究的主要进展,并讨论了其对突触传递和短期可塑性的生理意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Diverse organization of voltage-gated calcium channels at presynaptic active zones.

Synapses are highly organized but are also highly diverse in their organization and properties to allow for optimizing the computing power of brain circuits. Along these lines, voltage-gated calcium (CaV) channels at the presynaptic active zone are heterogeneously organized, which creates a variety of calcium dynamics profiles that can shape neurotransmitter release properties of individual synapses. Extensive studies have revealed striking diversity in the subtype, number, and distribution of CaV channels, as well as the nanoscale topographic relationships to docked synaptic vesicles. Further, multi-protein complexes including RIMs, RIM-binding proteins, CAST/ELKS, and neurexins are required for coordinating the diverse organization of CaV channels at the presynaptic active zone. In this review, we highlight major advances in the studies of the functional organization of presynaptic CaV channels and discuss their physiological implications for synaptic transmission and short-term plasticity.

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来源期刊
CiteScore
7.10
自引率
2.70%
发文量
74
审稿时长
14 weeks
期刊最新文献
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