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杀虫剂氰戊菊酯对小龙虾巨轴突中钠通道门控电荷的固定作用。

Immobilization of sodium channel gating charge in crayfish giant axons by the insecticide fenvalerate.

作者信息

Salgado V L, Narahashi T

机构信息

DowElanco Discovery Research, Indianapolis, Indiana 46268-1053.

出版信息

Mol Pharmacol. 1993 Apr;43(4):626-34.

PMID:8386311
Abstract

The type II pyrethroid fenvalerate is known to depolarize nerve membranes by keeping sodium channels in a very stable modified open state. We have performed experiments on crayfish giant axons to determine whether the asymmetric charge movement was affected in parallel with changes in sodium current. When all sodium channels were modified by repetitive stimulation in the presence of fenvalerate, on gating charge movement was reduced by 78%. When on gating currents were fractionated into three exponentially decaying components, it was found that fenvalerate selectively depressed the intermediate and slow components, leaving the fast component unchanged. Off gating currents could be fractionated into two exponentially decaying components. The fast component of off charge movement (tau = 50 microseconds at -160 mV) was abolished by fenvalerate, whereas the slow component was suppressed by 50%. These results are consistent with previous conclusions that a large fraction of the intermediate and slow on and slow off components and essentially all of the fast off components are related to sodium channel gating. We conclude that fenvalerate traps the gating charges of sodium channels in the open state.

摘要

已知II型拟除虫菊酯氰戊菊酯通过使钠通道保持在非常稳定的修饰开放状态来使神经膜去极化。我们对小龙虾巨轴突进行了实验,以确定不对称电荷移动是否与钠电流的变化同时受到影响。当在氰戊菊酯存在下通过重复刺激使所有钠通道发生修饰时,门控电荷移动减少了78%。当将门控电流分为三个指数衰减成分时,发现氰戊菊酯选择性地抑制了中间成分和慢成分,而快成分保持不变。关断门控电流可分为两个指数衰减成分。氰戊菊酯消除了关断电荷移动的快成分(在-160 mV时时间常数τ = 50微秒),而慢成分被抑制了50%。这些结果与先前的结论一致,即大部分中间成分和慢的开启和关闭成分以及基本上所有的快关闭成分都与钠通道门控有关。我们得出结论,氰戊菊酯将钠通道的门控电荷捕获在开放状态。

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