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ATP-Sensitive Potassium Channels Exhibit Variance in the Number of Open Channels below the Limit Predicted for Identical and Independent Gating

机译:ATP敏感性钾离子通道的开放通道数量差异低于为相同和独立门控预测的极限

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摘要

In small cells containing small numbers of ion channels, noise due to stochastic channel opening and closing can introduce a substantial level of variability into the cell's membrane potential. Negatively cooperative interactions that couple a channel's gating conformational change to the conformation of its neighbor(s) provide a potential mechanism for mitigating this variability, but such interactions have not previously been directly observed. Here we show that heterologously expressed ATP-sensitive potassium channels generate noise (i.e., variance in the number of open channels) below the level possible for identical and independent channels. Kinetic analysis with single-molecule resolution supports the interpretation that interchannel negative cooperativity (specifically, the presence of an open channel making a closed channel less likely to open) contributes to the decrease in noise. Functional coupling between channels may be important in modulating stochastic fluctuations in cellular signaling pathways.
机译:在包含少量离子通道的小型电池中,由于随机通道的打开和关闭而产生的噪音会在细胞膜电位中引入很大程度的可变性。将通道的门控构象变化与其邻居的构象耦合的负性协作相互作用提供了缓解这种可变性的潜在机制,但是以前从未直接观察到这种相互作用。在这里我们显示异源表达的ATP敏感性钾通道产生的噪声(即,开放通道数量的方差)低于相同和独立通道可能的水平。具有单分子分辨率的动力学分析支持以下解释:通道间负合作性(特别是开放通道的存在使闭合通道更不可能打开)有助于降低噪声。通道之间的功能耦合对于调节细胞信号通路中的随机波动可能很重要。

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