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首页> 外文期刊>The Journal of general physiology >Ionic permeation and blockade in Ca2+-activated K+ channels of bovine chromaffin cells.
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Ionic permeation and blockade in Ca2+-activated K+ channels of bovine chromaffin cells.

机译:离子渗透和在牛嗜铬细胞Ca2 +激活的K +通道中的阻断。

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摘要

Single channel currents through Ca2+-activated K+ channels of bovine chromaffin cells were measured to determine the effects of small ions on permeation through the channel. The channel selects strongly for K+ over Na+ and Cs+, and Rb+ carries a smaller current through the channel than K+. Tetraethylammonium ion (TEA+) blocks channel currents when applied to either side of the membrane; it is effective at lower concentrations when applied externally. Millimolar concentrations of internal Na+ reduce the average current through the channel and produce large fluctuations (flicker) in the open channel currents. This flickery block is analyzed by a new method, amplitude distribution analysis, which can measure block and unblock rates in the microsecond time range even though individual blocking events are not time-resolved by the recording system. The analysis shows that the rate of block by Na+ is very voltage dependent, but the unblock rate is voltage independent. These results can be explained easily by supposing that current flow through the channel is diffusion limited, a hypothesis consistent with the large magnitude of the single channel current.
机译:测量通过牛嗜铬细胞的Ca2 +激活的K +通道的单通道电流,以确定小离子对通过该通道的渗透的影响。通道对Na +和Cs +上的K +有很强的选择力,并且Rb +通过通道的电流比K +小。当施加到膜的任何一侧时,四乙铵离子(TEA +)会阻止通道电流。当外部使用时,它在较低浓度下有效。内部Na +的毫摩尔浓度会降低通过通道的平均电流,并在开路电流中产生较大的波动(闪烁)。通过一种新的振幅分布分析方法可以分析此闪烁的块,即使记录系统未在时间上解决单个阻塞事件,该方法也可以在微秒的时间范围内测量阻塞和未阻塞的速率。分析表明,Na +的阻断率与电压有很大关系,但未阻断率与电压无关。通过假设流经通道的电流受到扩散限制,可以轻松地解释这些结果,这一假设与单通道电流的大幅度一致。

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