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首页> 外文期刊>The Journal of general physiology >The Inner Quaternary Ammonium Ion Receptor in Potassium Channels of the Node of Ranvier
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The Inner Quaternary Ammonium Ion Receptor in Potassium Channels of the Node of Ranvier

机译:Ranvier节点钾通道中的内季铵离子受体

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Quaternary ammonium ions were applied to the inside of single myelinated nerve fibers by diffusion from a cut end. The resulting block of potassium channels in the node of Ranvier was studied under voltage-clamp conditions. The results agree in almost all respects with similar studies by Armstrong of squid giant axons. With tetraethylammonium ion (TEA), pentyltriethylammonium ion (C5), or nonyltriethylammonium ion (C9) inside the node, potassium current during a depolarization begins to rise at the normal rate, reaches a peak, and then falls again. This unusual inactivation is more complete with C9 than with TEA. Larger depolarizations give more block. Thus the block of potassium channels grows with time and voltage during a depolarization. The block reverses with repolarization, but for C9 full reversal takes seconds at -75 mv. The reversal is faster in 120 mM KCl Ringer's and slower during a hyperpolarization to -125 mv. All of these effects contrast with the time and voltage-independent block of potassium, channels seen with external quaternary ammonium ions on the node of Ranvier. External TEA, C5, and C9 block without inactivation. The external quaternary ammonium ion receptor appears to be distinct from the inner one. Apparently the inner quaternary ammonium ion receptor can be reached only when the activation gate for potassium channels is open. We suggest that the inner receptor lies within the channel and that the channel is a pore with its activation gate near the axoplasmic end.
机译:通过从切口端扩散,将季铵离子施加到单个有髓神经纤维的内部。在电压钳位条件下研究了Ranvier节点中钾通道的阻滞作用。结果几乎在所有方面都与阿姆斯特朗对鱿鱼巨型轴突的类似研究相吻合。在节点内部有四乙铵离子(TEA),戊基三乙铵离子(C5)或壬基三乙铵离子(C9)时,去极化过程中的钾电流开始以正常速率上升,达到峰值,然后再次下降。 C9比TEA更能完成这种异常的灭活。较大的去极化会提供更多的阻挡。因此,在去极化过程中,钾通道的阻滞随时间和电压而增长。该模块通过重新极化反转,但是对于C9,完全反转在-75 mv上需要几秒钟。逆转在120 mM KCl林格氏反应中更快,而在超极化至-125 mv时则较慢。所有这些效应与Ranvier节点上外部季铵离子所见到的钾离子通道的时间和电压无关性阻断形成对比。外部TEA,C5和C9处于关闭状态而没有停用。外部季铵离子受体似乎不同于内部季铵离子受体。显然,只有当钾通道的激活门打开时,才能达到内部季铵离子受体。我们建议内部受体位于通道内,并且该通道是一个孔,其激活门靠近轴质端。

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