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哺乳动物神经元中电压门控钾通道表面表达和定位的决定因素。

Determinants of voltage-gated potassium channel surface expression and localization in Mammalian neurons.

作者信息

Misonou Hiroaki, Trimmer James S

机构信息

Department of Pharmacology, School of Medicine, University of California, Davis, CA 95616, USA.

出版信息

Crit Rev Biochem Mol Biol. 2004 May-Jun;39(3):125-45. doi: 10.1080/10409230490475417.

Abstract

Neurons strictly regulate expression of a wide variety of voltage-dependent ion channels in their surface membranes to achieve precise yet dynamic control of intrinsic membrane excitability. Neurons also exhibit extreme morphological complexity that underlies diverse aspects of their function. Most ion channels are preferentially targeted to either the axonal or somatodendritic compartments, where they become further localized to discrete membrane subdomains. This restricted accumulation of ion channels enables local control of membrane signaling events in specific microdomains of a given compartment. Voltage-dependent K+ (Kv) channels act as potent modulators of diverse excitatory events such as action potentials, excitatory synaptic potentials, and Ca2+ influx. Kv channels exhibit diverse patterns of cellular expression, and distinct subtype-specific localization, in mammalian central neurons. Here we review the mechanisms regulating the abundance and distribution of Kv channels in mammalian neurons and discuss how dynamic regulation of these events impacts neuronal signaling.

摘要

神经元严格调控其表面膜中多种电压依赖性离子通道的表达,以实现对内在膜兴奋性的精确而动态的控制。神经元还表现出极端的形态复杂性,这是其功能各个方面的基础。大多数离子通道优先靶向轴突或树突 - 胞体区室,在那里它们进一步定位于离散的膜亚结构域。离子通道的这种受限积累能够在给定区室的特定微结构域中对膜信号事件进行局部控制。电压依赖性钾离子(Kv)通道作为多种兴奋性事件的有效调节剂,如动作电位、兴奋性突触电位和钙离子内流。在哺乳动物中枢神经元中,Kv通道表现出不同的细胞表达模式和独特的亚型特异性定位。在这里,我们综述调节哺乳动物神经元中Kv通道丰度和分布的机制,并讨论这些事件的动态调节如何影响神经元信号传导。

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