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有髓神经纤维门控电流的温度依赖性

Temperature dependence of gating current in myelinated nerve fibers.

作者信息

Jonas P

机构信息

Physiologisches Institut der Justus-Liebig-Universität Giessen, Federal Republic of Germany.

出版信息

J Membr Biol. 1989 Dec;112(3):277-89. doi: 10.1007/BF01870958.

Abstract

Asymmetrical displacement currents and Na currents of single myelinated nerve fibers of Xenopus laevis were studied in the temperature range from 5 to 24 degrees C. The time constant of the on-response at E = 4 mV, tau on, was strongly temperature dependent, whereas the amount of displaced charge at E = 39 mV, Qon, was only slightly temperature dependent. The mean Q10 for tau on-1 was 2.54, the mean Q10 for Qon was 1.07. The time constant of charge immobilization, tau i, at E = 4 mV varied significantly (alpha = 0.001) with temperature. The mean Q10 for tau i-1 was 2.71 +/- 0.38. The time constants of immobilization of gating charge and of fast inactivation of Na permeability were similar in the temperature range from 6 to 22 degrees C. The Qoff/Qon ratio for E = 4 mV pulses of 0.5 msec duration decreased with increasing temperature. The temperature dependence of the time constant of the off-response could not be described by a single Q10 value, since the Q10 depended on the duration of the test pulse. Increasing temperature shifted Qon (E) curves to more negative potentials by 0.51 mV K-1, but shifted PNa (E) curves and h infinity (E) curves to more positive potentials by 0.43 and 0.57 mV K-1, respectively. h infinity (E = -70 mV) increased monotonously with increasing temperature. The present data indicate that considerable entropy changes may occur when the Na channel molecule passes from closed through open to inactivated states.

摘要

在5至24摄氏度的温度范围内,研究了非洲爪蟾单根有髓神经纤维的不对称位移电流和钠电流。在E = 4 mV时,开启响应的时间常数τon强烈依赖于温度,而在E = 39 mV时,位移电荷量Qon仅略微依赖于温度。τon-1的平均Q10为2.54,Qon的平均Q10为1.07。在E = 4 mV时,电荷固定的时间常数τi随温度变化显著(α = 0.001)。τi-1的平均Q10为2.71±0.38。在6至22摄氏度的温度范围内,门控电荷固定和钠通透性快速失活的时间常数相似。对于持续时间为0.5毫秒、E = 4 mV的脉冲,Qoff/Qon比值随温度升高而降低。关闭响应的时间常数的温度依赖性不能用单个Q10值来描述,因为Q10取决于测试脉冲的持续时间。温度升高使Qon(E)曲线向更负的电位移动0.51 mV K-1,但使PNa(E)曲线和h∞(E)曲线分别向更正的电位移动0.43和0.57 mV K-1。h∞(E = -70 mV)随温度升高而单调增加。目前的数据表明,当钠通道分子从关闭状态通过开放状态转变为失活状态时,可能会发生相当大的熵变。

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