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N-醇类对鱿鱼巨轴突中钾离子电导的影响。

Effects of N-alcohols on potassium conductance in squid giant axons.

作者信息

Paternostre M, Pichon Y

出版信息

Eur Biophys J. 1987;14(5):279-88. doi: 10.1007/BF00254892.

Abstract

The effect of bath application of several short chain N-alcohols on voltage-dependent potassium conductance has been studied in intact giant axons of Loligo forbesi under voltage-clamp conditions. All tested alcohols (methanol, ethanol, propanol, butanol, heptanol and octanol) were found to depress potassium conductance only at concentrations much larger than those necessary to reduce sodium conductance. The efficacy of the different molecules was correlated with the carbon-chain length. In all cases the effects were found to be at least partly reversible. Low concentrations of propanol (100 mM) or heptanol (1 mM) were found to increase potassium conductance whereas higher concentrations had the usual depressing effect. The two alcohols were found to induce a slow inactivation of the potassium conductance. A detailed analysis of the time course of the turning-on of the potassium current for various pulse potentials in the presence of TTX revealed that, for membrane potential values more positive than -20 mV, the time constant of activation was reduced in the presence of propanol or heptanol. The delay which separates the change in potential and the turning-on of the potassium current, which was systematically analysed for different pulse and prepulse potential values, was increased by the two alcohols, the curve relating this delay to prepulse potential being shifted towards larger (positive) delays. This high degree of complexity in the effects on potassium conductance suggests that the alcohol molecules modify several more or less independent mechanisms associated with the turning-on of the potassium current.

摘要

在电压钳制条件下,研究了几种短链N - 醇对福布斯枪乌贼完整巨轴突电压依赖性钾电导的影响。发现所有测试的醇(甲醇、乙醇、丙醇、丁醇、庚醇和辛醇)仅在浓度远高于降低钠电导所需浓度时才会抑制钾电导。不同分子的效能与碳链长度相关。在所有情况下,发现这些影响至少部分是可逆的。发现低浓度的丙醇(100 mM)或庚醇(1 mM)会增加钾电导,而较高浓度则具有通常的抑制作用。发现这两种醇会诱导钾电导的缓慢失活。在存在TTX的情况下,对不同脉冲电位下钾电流开启的时间进程进行详细分析表明,对于膜电位值更正于 - 20 mV的情况,在存在丙醇或庚醇时激活的时间常数会降低。对不同脉冲和预脉冲电位值系统分析的电位变化与钾电流开启之间的延迟,被这两种醇增加,将该延迟与预脉冲电位相关的曲线向更大(正)延迟方向移动。对钾电导影响的这种高度复杂性表明,醇分子改变了与钾电流开启相关的几个或多或少独立的机制。

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