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应用电位对鱿鱼巨轴突中三价铒离子产生的电位变化的补偿作用。

The compensation of potential changes produced by trivalent erbium ion in squid giant axon with applied potentials.

作者信息

Starzak M E, Starzak R J

出版信息

Biophys J. 1978 Nov;24(2):555-60. doi: 10.1016/S0006-3495(78)85401-0.

Abstract

The transmembrane potential of voltage-clamped squid giant axon is increased to compensate for a reduction in the rate of potassium channel kinetics when artificial seawater with trivalent erbium ion is substituted for artificial seawater. The additional potential required to produce an equivalent rise time is a measure of the potential shift produced by the erbium ions. When the kinetics of K+ channels are matched in this manner, the maximal K+ currents are larger for the larger transmembrane potential. This observation requires a functional separation of the open K+ channel and the voltage sensor for the gating mechanism of this channel.

摘要

当用含三价铒离子的人工海水替代人工海水时,电压钳制的枪乌贼巨轴突的跨膜电位会升高,以补偿钾通道动力学速率的降低。产生等效上升时间所需的额外电位是铒离子产生的电位偏移的一种度量。当以这种方式使K⁺通道的动力学相匹配时,对于更大的跨膜电位,最大K⁺电流更大。这一观察结果要求在该通道的门控机制中,开放的K⁺通道与电压传感器在功能上分离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4a2/1473416/425c06cf731a/biophysj00741-0150-a.jpg

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