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海兔感觉神经元5-羟色胺敏感钾通道的药理学特性

Pharmacological characterization of the serotonin-sensitive potassium channel of Aplysia sensory neurons.

作者信息

Shuster M J, Siegelbaum S A

机构信息

Department of Pharmacology, Columbia University, New York 10032.

出版信息

J Gen Physiol. 1987 Oct;90(4):587-608. doi: 10.1085/jgp.90.4.587.

Abstract

The effects of a variety of K+ channel blockers on current flow through single serotonin-sensitive K+ channels (the S channels) of Aplysia sensory neurons were studied using the patch-clamp technique. Tetraethylammonium (TEA), 4-aminopyridine (4-AP), and Co2+ and Ba2+ were first applied to the external membrane surface using cell-free outside-out patches. At concentrations up to 10 mM, these agents had little or no effect on single S-channel currents. At higher concentrations, external TEA acted as a fast open-channel blocker, reducing the single-channel current amplitude according to a simple one-to-one binding scheme with an apparent Kd of 90 mM. Blockage by external TEA is voltage independent. Internal TEA also acts as an open-channel blocker, with an apparent Kd of approximately 40 mM and a relatively weak voltage dependence, corresponding to an apparent electrical distance to the internal TEA-binding site of 0.1. Both internal and external TEA block the open channel selectively, with an affinity that is 10-100-fold greater than the affinity for the closed channel. Internal Ba2+ acts as a slow channel blocker, producing long closures of the channel, and binding with an apparent Kd of approximately 25-30 microM. These results show that single S-channel currents share a similar pharmacological profile with the macroscopic S current previously characterized with voltage clamp. On the basis of these results, a structural model for S-channel opening is proposed.

摘要

运用膜片钳技术研究了多种钾离子通道阻滞剂对海兔感觉神经元中单个血清素敏感钾离子通道(S通道)电流的影响。首先使用无细胞外翻膜片将四乙铵(TEA)、4-氨基吡啶(4-AP)、Co²⁺和Ba²⁺施加于细胞膜外表面。在浓度高达10 mM时,这些试剂对单个S通道电流几乎没有影响或没有影响。在更高浓度下,外部TEA作为一种快速开放通道阻滞剂,根据简单的一对一结合模式降低单通道电流幅度,其表观解离常数(Kd)为90 mM。外部TEA的阻断作用与电压无关。内部TEA也作为一种开放通道阻滞剂,表观Kd约为40 mM,电压依赖性相对较弱,对应于到内部TEA结合位点的表观电距离为0.1。内部和外部TEA均选择性地阻断开放通道,其亲和力比对关闭通道的亲和力大10 - 100倍。内部Ba²⁺作为一种缓慢通道阻滞剂,使通道长时间关闭,结合的表观Kd约为25 - 30 μM。这些结果表明,单个S通道电流与先前用电压钳表征的宏观S电流具有相似的药理学特征。基于这些结果,提出了S通道开放的结构模型。

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