Surface dynamics of voltage-gated ion channels

IF 3.3 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Channels Pub Date : 2016-02-18 DOI:10.1080/19336950.2016.1153210
M. Heine, A. Ciuraszkiewicz, A. Voigt, J. Heck, A. Bikbaev
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引用次数: 14

Abstract

ABSTRACT Neurons encode information in fast changes of the membrane potential, and thus electrical membrane properties are critically important for the integration and processing of synaptic inputs by a neuron. These electrical properties are largely determined by ion channels embedded in the membrane. The distribution of most ion channels in the membrane is not spatially uniform: they undergo activity-driven changes in the range of minutes to days. Even in the range of milliseconds, the composition and topology of ion channels are not static but engage in highly dynamic processes including stochastic or activity-dependent transient association of the pore-forming and auxiliary subunits, lateral diffusion, as well as clustering of different channels. In this review we briefly discuss the potential impact of mobile sodium, calcium and potassium ion channels and the functional significance of this for individual neurons and neuronal networks.
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电压门控离子通道的表面动力学
神经元在膜电位的快速变化中编码信息,因此电膜特性对于神经元对突触输入的整合和处理至关重要。这些电性能在很大程度上是由嵌入膜中的离子通道决定的。大多数离子通道在膜中的分布不是空间均匀的:它们在几分钟到几天的范围内经历活动驱动的变化。即使在毫秒范围内,离子通道的组成和拓扑结构也不是静态的,而是参与高度动态的过程,包括孔隙形成和辅助亚基的随机或活动依赖的瞬时关联,横向扩散以及不同通道的聚类。在这篇综述中,我们简要地讨论了移动钠、钙和钾离子通道的潜在影响及其对单个神经元和神经元网络的功能意义。
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来源期刊
Channels
Channels 生物-生化与分子生物学
CiteScore
5.90
自引率
0.00%
发文量
21
审稿时长
6-12 weeks
期刊介绍: Channels is an open access journal for all aspects of ion channel research. The journal publishes high quality papers that shed new light on ion channel and ion transporter/exchanger function, structure, biophysics, pharmacology, and regulation in health and disease. Channels welcomes interdisciplinary approaches that address ion channel physiology in areas such as neuroscience, cardiovascular sciences, cancer research, endocrinology, and gastroenterology. Our aim is to foster communication among the ion channel and transporter communities and facilitate the advancement of the field.
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