神经元中电压门控 Ca2+ 通道的生命周期:神经元钙通道迁移的最新进展。

Q4 Neuroscience
Neuronal signaling Pub Date : 2021-02-23 eCollection Date: 2021-04-01 DOI:10.1042/NS20200095
Laurent Ferron, Saloni Koshti, Gerald W Zamponi
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引用次数: 0

摘要

神经元电压门控 Ca2+(CaV)通道在细胞兴奋性、突触传递、兴奋-转录耦合以及激活细胞内信号通路方面发挥着关键作用。CaV 通道是多蛋白复合物,它们在质膜上的功能表达涉及微调机制,包括从内质网(ER)向质膜的前向运输、内吞和再循环。无论是遗传还是后天获得的,神经元 CaV 通道贩运的改变和缺陷都会产生严重的生理后果。在这篇综述中,我们探讨了目前有关精确控制神经元 CaV 通道转运的调控机制的证据,并讨论了这些机制作为治疗靶点的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The life cycle of voltage-gated Ca<sup>2+</sup> channels in neurons: an update on the trafficking of neuronal calcium channels.

The life cycle of voltage-gated Ca<sup>2+</sup> channels in neurons: an update on the trafficking of neuronal calcium channels.

The life cycle of voltage-gated Ca<sup>2+</sup> channels in neurons: an update on the trafficking of neuronal calcium channels.

The life cycle of voltage-gated Ca2+ channels in neurons: an update on the trafficking of neuronal calcium channels.

Neuronal voltage-gated Ca2+ (CaV) channels play a critical role in cellular excitability, synaptic transmission, excitation-transcription coupling and activation of intracellular signaling pathways. CaV channels are multiprotein complexes and their functional expression in the plasma membrane involves finely tuned mechanisms, including forward trafficking from the endoplasmic reticulum (ER) to the plasma membrane, endocytosis and recycling. Whether genetic or acquired, alterations and defects in the trafficking of neuronal CaV channels can have severe physiological consequences. In this review, we address the current evidence concerning the regulatory mechanisms which underlie precise control of neuronal CaV channel trafficking and we discuss their potential as therapeutic targets.

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来源期刊
CiteScore
4.60
自引率
0.00%
发文量
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审稿时长
14 weeks
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