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影响电压激活钾通道中TEA阻断和离子通透的突变。

Mutations affecting TEA blockade and ion permeation in voltage-activated K+ channels.

作者信息

MacKinnon R, Yellen G

机构信息

Department of Cellular and Molecular Physiology, Harvard Medical School, Boston, MA 02115.

出版信息

Science. 1990 Oct 12;250(4978):276-9. doi: 10.1126/science.2218530.

Abstract

Voltage-dependent ion channels are responsible for electrical signaling in neurons and other cells. The main classes of voltage-dependent channels (sodium-, calcium-, and potassium-selective channels) have closely related molecular structures. For one member of this superfamily, the transiently voltage-activated Shaker H4 potassium channel, specific amino acid residues have now been identified that affect channel blockade by the small ion tetraethylammonium, as well as the conduction of ions through the pore. Furthermore, variation at one of these amino acid positions among naturally occurring potassium channels may account for most of their differences in sensitivity to tetraethylammonium.

摘要

电压依赖性离子通道负责神经元和其他细胞中的电信号传导。电压依赖性通道的主要类别(钠、钙和钾选择性通道)具有密切相关的分子结构。对于这个超家族的一个成员,即瞬时电压激活的Shaker H4钾通道,现已鉴定出特定的氨基酸残基,它们会影响小离子四乙铵对通道的阻断作用以及离子通过孔的传导。此外,天然存在的钾通道中这些氨基酸位置之一的变异可能是它们对四乙铵敏感性差异的主要原因。

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