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小鼠T淋巴细胞中的两种钾通道。

Two types of potassium channels in murine T lymphocytes.

作者信息

Decoursey T E, Chandy K G, Gupta S, Cahalan M D

出版信息

J Gen Physiol. 1987 Mar;89(3):379-404. doi: 10.1085/jgp.89.3.379.

Abstract

The properties of two types of K+ channels in murine T lymphocytes are described on the basis of whole-cell and isolated-patch recordings using the gigohm-seal technique. Type l (standing for "lpr gene locus" or "large") channels were characterized mainly in T cells from mutant MRL/MpJ-lpr/lpr mice, in which they are present in large numbers. Type n ("normal") K+ channels are abundant and therefore most readily studied in concanavalin A-activated T cells from four strains of mice, MRL-+/+, CBA/J, C57BL/6J, and BALB/c. Type l channels, compared with type n, are activated at potentials approximately 30 mV more positive, and close much more rapidly upon repolarization. Type l channels inactivate more slowly and less completely than type n during maintained depolarization, but recover from inactivation more rapidly, so that little inactivation accumulates during repetitive pulses. Type l channels have a higher unitary conductance (21 pS) than type n (12 pS) and are less sensitive to block by external Co++, but are 100-fold more sensitive to block by external tetraethylammonium (TEA), with half-block of type l channels at 50-100 microM TEA compared with 8-16 mM for type n. TEA blocks both types of channels by reducing the apparent single channel current amplitude, with a dose-response relation similar to that for blocking macroscopic currents. Murine type n K+ channels resemble K+ channels in human T cells.

摘要

基于使用千兆欧封接技术的全细胞和分离膜片记录,描述了小鼠T淋巴细胞中两种类型钾通道的特性。I型(代表“lpr基因位点”或“大”)通道主要在来自突变型MRL/MpJ-lpr/lpr小鼠的T细胞中得以表征,在这些细胞中它们大量存在。II型(“正常”)钾通道数量丰富,因此最易于在来自四株小鼠(MRL-+/+、CBA/J、C57BL/6J和BALB/c)的伴刀豆球蛋白A激活的T细胞中进行研究。与II型通道相比,I型通道在更正约30 mV的电位下被激活,并且在复极化时关闭得更快。在持续去极化期间,I型通道的失活比II型通道更慢且更不完全,但从失活中恢复得更快,因此在重复脉冲期间几乎没有积累失活。I型通道具有比II型通道更高的单位电导(21 pS),并且对外部Co++阻断的敏感性较低,但对外部四乙铵(TEA)阻断的敏感性高100倍,I型通道在50 - 100 μM TEA时发生半数阻断,而II型通道在8 - 16 mM时发生半数阻断。TEA通过降低表观单通道电流幅度来阻断这两种类型的通道,其剂量反应关系类似于阻断宏观电流的剂量反应关系。小鼠II型钾通道类似于人类T细胞中的钾通道。

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