离子通道渗透和选择性

J. Nogueira, B. Corry
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引用次数: 8

摘要

许多生命必需的生物过程依赖于特定时间特定离子穿过细胞膜的运输。这种对离子电流的精确控制,是由蛋白质离子通道调节的,是细胞正常运作的基础。因此,通过实验和理论方法对离子通道中离子渗透和选择性的机制进行了广泛的研究,这并不奇怪。这些研究提供了很好的机械洞察力,但也提出了尚未解决的新问题。本章首先总结了提供离子渗透和选择性重要知识的主要技术。然后讨论了导致离子渗透的物理机制,以及对电压门控钾、钠和钙通道中离子选择性的解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ion Channel Permeation and Selectivity
Many biological processes essential for life rely on the transport of specific ions at specific times across cell membranes. Such exquisite control of ionic currents, which is regulated by protein ion channels, is fundamental for the proper functioning of the cells. It is not surprising, therefore, that the mechanism of ion permeation and selectivity in ion channels has been extensively investigated by means of experimental and theoretical approaches. These studies have provided great mechanistic insight but have also raised new questions that are still unresolved. This chapter first summarizes the main techniques that have provided significant knowledge about ion permeation and selectivity. It then discusses the physical mechanisms leading to ion permeation and the explanations that have been proposed for ion selectivity in voltage-gated potassium, sodium, and calcium channels.
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