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两个相关钾通道中4-氨基吡啶阻断的门控依赖性机制。

Gating-dependent mechanism of 4-aminopyridine block in two related potassium channels.

作者信息

Kirsch G E, Drewe J A

机构信息

Department of Anesthesiology, Baylor College of Medicine, Houston, Texas 77030.

出版信息

J Gen Physiol. 1993 Nov;102(5):797-816. doi: 10.1085/jgp.102.5.797.

Abstract

4-aminopyridine (4AP) is widely used as a selective blocker of voltage-activated K+ currents in excitable membranes, but its mechanism and site of action at the molecular level are not well understood. To address this problem we have analyzed 4AP block in Kv2.1 and Kv3.1, mammalian representatives of the Drosophila Shab and Shaw subfamilies of voltage-gated K+ channels, respectively. The two channels were expressed in Xenopus oocytes and analyzed at both the macroscopic and single channel levels. Whole cell analysis showed that 4AP sensitivity of Kv3.1 was approximately 150 times greater than that of Kv2.1. Patch clamp analysis revealed that the mechanism of 4AP block in both channels was qualitatively similar. 4AP reached its blocking site via the cytoplasmic side of the channels, the ON rate for block was strongly accelerated when channels opened and the drug was trapped in closed channels. Single channel analysis showed that 4AP decreased burst duration and increased the latency-to-first-opening. These effects were found to be related, respectively to drug ON and OFF rates in the activated channel. Kv3.1's high 4AP sensitivity relative to Kv2.1 was associated with both a slower OFF rate and therefore increased stability of the blocked state, as well as a faster ON rate and therefore increased access to the binding site. Our results indicate that in both channels 4AP enters the intracellular mouth to bind to a site that is guarded by the gating mechanism. Differences in channel gating as well as differences in the structure of the intracellular mouth may be important for specifying the 4AP sensitivity in related voltage-gated K+ channels.

摘要

4-氨基吡啶(4AP)被广泛用作可兴奋膜中电压激活钾离子电流的选择性阻滞剂,但其在分子水平的作用机制和作用位点尚未完全明确。为解决这一问题,我们分别分析了果蝇电压门控钾离子通道Shab和Shaw亚家族在哺乳动物中的代表Kv2.1和Kv3.1对4AP的阻滞作用。这两种通道在非洲爪蟾卵母细胞中表达,并在宏观和单通道水平上进行分析。全细胞分析表明,Kv3.1对4AP的敏感性约为Kv2.1的150倍。膜片钳分析显示,两种通道中4AP的阻滞机制在定性上相似。4AP通过通道的胞质侧到达其阻滞位点,通道开放时阻滞的开启速率强烈加快,药物被困在关闭的通道中。单通道分析表明,4AP缩短了爆发持续时间并增加了首次开放的潜伏期。发现这些效应分别与激活通道中药物的开启和关闭速率有关。相对于Kv2.1,Kv3.1对4AP的高敏感性与较慢的关闭速率以及因此增加的阻滞状态稳定性有关,也与较快的开启速率以及因此增加的与结合位点的接触有关。我们的结果表明,在两种通道中,4AP进入细胞内口以结合到由门控机制保护的位点。通道门控的差异以及细胞内口结构的差异可能对确定相关电压门控钾离子通道中4AP的敏感性很重要。

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