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首页> 外文期刊>Journal of General Physiology >Calcium-dependent Gating of MthK, a prokaryotic potassium channel
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Calcium-dependent Gating of MthK, a prokaryotic potassium channel

机译:MthK(原核钾通道)的钙依赖性门控

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摘要

MthK is a calcium-gated, inwardly rectifying, prokaryotic potassium channel. Although little functional information is available for MthK, its high-resolution structure is used as a model for eukaryotic Ca2+-dependent potassium channels. Here we characterize in detail the main gating characteristics of MthK at the single-channel level with special focus on the mechanism of Ca2+ activation. MthK has two distinct gating modes: slow gating affected mainly by Ca2+ and fast gating affected by voltage. Millimolar Ca2+ increases MthK open probability over 100-fold by mainly increasing the frequency of channel opening while leaving the opening durations unchanged. The Ca2+ dose-response curve displays an unusually high Hill coefficient (n = similar to 8), suggesting strong coupling between Ca2+ binding and channel opening. Depolarization affects both the fast gate by dramatically reducing the fast flickers, and to a lesser extent, the slow gate, by increasing MthK open probability. We were able to capture the mechanistic features of MthK with a modified MWC model.
机译:MthK是钙门控,向内整流的原核钾通道。尽管很少有功能信息可用于MthK,但其高分辨率结构可作为真核细胞依赖Ca2 +的钾离子通道的模型。在这里,我们详细描述了MthK在单通道水平上的主要门控特性,并特别关注Ca2 +激活的机制。 MthK具有两种不同的选通模式:主要受Ca2 +影响的慢选通和受电压影响的快速选通。毫摩尔Ca2 +通过主要增加通道开放的频率而使开放时间保持不变,从而将MthK的开放概率提高了100倍以上。 Ca2 +剂量-反应曲线显示出异常高的Hill系数(n =类似于8),表明Ca2 +结合与通道开放之间存在强耦合。通过增加MthK开路概率,去极化会通过显着减少快速闪烁而影响快速栅极,并在较小程度上影响慢速栅极。我们能够使用修改后的MWC模型捕获MthK的机械特性。

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