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钾离子电流在果蝇飞行肌肉中的作用。

The roles of potassium currents in Drosophila flight muscles.

作者信息

Elkins T, Ganetzky B

机构信息

Department of Zoology, University of Wisconsin, Madison 53706.

出版信息

J Neurosci. 1988 Feb;8(2):428-34. doi: 10.1523/JNEUROSCI.08-02-00428.1988.

Abstract

The roles of different K+ currents in regulating the generation and waveform of action potentials in Drosophila dorsal longitudinal flight muscles (DLMs) were examined in current-clamp experiments. In response to depolarizing current, DLMs displayed an initial transient rectification of the electronic potential lasting for up to hundreds of milliseconds. This delay in excitation was followed by oscillations or graded spikes that finally gave way to sharply rising spikes. Previous voltage-clamp studies of DLMs have revealed an inward Ca2+ current and at least three K+ currents: IA and IK, which are voltage-dependent, and IC, which is Ca2+ dependent. IA and IC are early inactivating currents, while IK is a slow, noninactivating current. In mature adults, selective elimination of IA either with Shaker (Sh) mutations or with 4-aminopyridine (4-AP), had no effect on spike duration or on the delay in excitation. In contrast, when IC was specifically eliminated with the slowpoke (slo) mutation, there was no delay before excitation, the amplitude of the spikes was significantly increased, and the spike duration was increased by 10-fold. Similar results were obtained by reducing IC in normal muscle by intracellular injections of EGTA or by use of low Ca2+ saline. Furthermore, DLM spikes evoked in slo by stimulation of the motorneuron were also broadened, suggesting that IC functions in a similar manner during normal flight as in current-clamped muscles. Elimination of IK along with IA and IC in saline containing tetraethylammonium or Ba2+ resulted in further prolongation of the DLM spike. In Ba2+ saline, there was an additional increase in spike amplitude as well. We conclude that in mature adults, IC, rather than IA, plays the major role in repolarization of DLM spikes and in the delay before excitation.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在电流钳实验中,研究了不同钾离子电流在调节果蝇背纵飞行肌(DLM)动作电位的产生和波形方面的作用。响应去极化电流时,DLM表现出持续长达数百毫秒的初始电子电位瞬态整流。这种兴奋延迟之后是振荡或分级尖峰,最终让位于急剧上升的尖峰。先前对DLM的电压钳研究揭示了一种内向钙电流和至少三种钾电流:电压依赖性的IA和IK,以及钙依赖性的IC。IA和IC是早期失活电流,而IK是一种缓慢的非失活电流。在成熟成虫中,通过Shaker(Sh)突变或4-氨基吡啶(4-AP)选择性消除IA,对尖峰持续时间或兴奋延迟没有影响。相比之下,当用slowpoke(slo)突变特异性消除IC时,兴奋前没有延迟,尖峰幅度显著增加,尖峰持续时间增加了10倍。通过细胞内注射EGTA或使用低钙盐水降低正常肌肉中的IC,也获得了类似的结果。此外,通过刺激运动神经元在slo中诱发的DLM尖峰也变宽了,这表明IC在正常飞行中的作用方式与在电流钳制肌肉中的作用方式相似。在含有四乙铵或钡离子的盐水中同时消除IK以及IA和IC,导致DLM尖峰进一步延长。在钡离子盐水中,尖峰幅度也有额外增加。我们得出结论,在成熟成虫中,IC而非IA在DLM尖峰的复极化和兴奋前的延迟中起主要作用。(摘要截短至250字)

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