首页> 美国卫生研究院文献>The Journal of General Physiology >External K+ dependence of strong inward rectifier K+ channel conductance is caused not by K+ but by competitive pore blockade by external Na+
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External K+ dependence of strong inward rectifier K+ channel conductance is caused not by K+ but by competitive pore blockade by external Na+

机译:外部K +对强向内整流器K +通道电导的依赖性不是由K +引起的而是由外部Na +引起的竞争性孔阻塞引起的

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摘要

Strong inward rectifier K+ (sKir) channels determine the membrane potentials of many types of excitable and nonexcitable cells, most notably the resting potentials of cardiac myocytes. They show little outward current during membrane depolarization (i.e., strong inward rectification) because of the channel blockade by cytoplasmic polyamines, which depends on the deviation of the membrane potential from the K+ equilibrium potential (V – EK) when the extracellular K+ concentration ([K+]out) is changed. Because their open-channel conductance is apparently proportional to the “square root” of [K+]out, increases/decreases in [K+]out enhance/diminish outward currents through sKir channels at membrane potentials near their reversal potential, which also affects, for example, the repolarization and action-potential duration of cardiac myocytes. Despite its importance, however, the mechanism underlying the [K+]out dependence of the open sKir channel conductance has remained elusive. By studying Kir2.1, the canonical member of the sKir channel family, we first show that the outward currents of Kir2.1 are observed under the external K+-free condition when its inward rectification is reduced and that the complete inhibition of the currents at 0 [K+]out results solely from pore blockade caused by the polyamines. Moreover, the noted square-root proportionality of the open sKir channel conductance to [K+]out is mediated by the pore blockade by the external Na+, which is competitive with the external K+. Our results show that external K+ itself does not activate or facilitate K+ permeation through the open sKir channel to mediate the apparent external K+ dependence of its open channel conductance. The paradoxical increase/decrease in outward sKir channel currents during alternations in [K+]out, which is physiologically relevant, is caused by competition from impermeant extracellular Na+.
机译:强大的内向整流器K + (sKir)通道决定了许多类型的兴奋性和非兴奋性细胞的膜电位,尤其是心肌细胞的静息电位。由于胞质多胺的通道阻滞作用,它们在膜去极化(即强向内整流)过程中几乎没有向外电流,这取决于膜电位与K + 平衡电位的偏差(V – EK ),当细胞外K + 浓度([K + ] out)改变时。因为它们的明渠电导显然与[K + ] out的“平方根”成正比,所以[K + ] out的增大/减小会增强/减小外向电流通过sKir通道的膜电位接近其逆转电位,这也影响例如心肌细胞的复极化和动作电位持续时间。尽管很重要,但是,开放的sKir通道电导的[K + ] out依赖性所基于的机制仍然难以捉摸。通过研究sKir通道家族的经典成员Kir2.1,我们首先表明Kir2.1的向外电流是在外部K + 无条件下观察到的,当其向内整流减小并完全抑制了[K + ] out处的电流完全是由多胺引起的孔阻塞造成的。此外,开放的sKir通道电导与[K + ] out的平方根正比关系是由外部Na + 的孔阻塞介导的,与外部K + 。我们的结果表明,外部K + 本身不会通过开放的sKir通道激活或促进K + 的渗透,从而无法介导明显的外部K + 依赖性明渠电导生理上相关的[K + ] out交替过程中,向外的sKir通道电流的反常增加/减少是生理上相关的,这是由不渗透的细胞外Na + 引起的。

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