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Delayed kinetics of squid axon potassium channels do not always superpose after time translation.

机译:鱿鱼轴突钾通道的动力学延迟在时间转换后并不总是叠加。

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摘要

The activation of potassium ion conductance in squid axons by voltage-clamp depolarization is delayed when the depolarizing step is preceded by a conditioning hyperpolarization of the axonal membrane. Moreover, the control conductance kinetics superpose with the delayed kinetics when they are translated along the time axis by an amount equal to the delay. We have found that the degree of superposition with internally perfused axons depends upon voltage-clamp protocol. The kinetics superpose almost exactly for modest test depolarizations, whereas they clearly fail to superpose completely for more positive levels of membrane depolarization. We have modeled these results by incorporating a time dependence into the rate constant of activation of potassium channel gates in the Hodgkin and Huxley model of potassium ionic conductance.
机译:当在去极化步骤之前进行轴突膜的超极化处理时,通过电压钳去极化来激活鱿鱼轴突中钾离子电导的活化。此外,当控制电导动力学沿时间轴平移等于延迟的量时,它们与延迟的动力学叠加。我们发现内部灌注的轴突的叠加程度取决于电压钳协议。对于适度的测试去极化,动力学几乎完全重叠,而对于更正水平的膜去极化,它们显然不能完全重叠。我们通过将时间依赖性纳入钾离子电导率的霍奇金和赫x黎模型中钾离子通道门的活化速率常数中来对这些结果进行建模。

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