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Successive openings of the same acetylcholine receptor channel are correlated in open time.

机译:同一乙酰胆碱受体通道的连续打开与打开时间相关。

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摘要

Previous analysis of single-channel current records has shown that both the opening and closing transitions of chemically activated ion channels are operated by fast and slow kinetic processes. The fast component in the kinetics of channel opening has been interpreted as the reopening of a channel that has just closed. The fast component in the kinetics of channel closure has many possible explanations and is therefore more difficult to interpret. We can gain insight into the closing process by asking whether the lifetimes of successive openings of an acetylcholine receptor channel are correlated in open-state lifetime. Five kinetic models of channel closure are considered. Two of these models predict uncorrelated open-state lifetimes, one predicts correlated open-state lifetimes, and for two others a range of behavior is possible. Acetylcholine receptor channel data from cultured rat muscle are analyzed to show that open-state lifetimes are correlated, eliminating two models of channel gating.
机译:以前对单通道电流记录的分析表明,化学活化离子通道的打开和关闭过渡都通过快速和缓慢的动力学过程来操作。通道打开动力学中的快速成分已被解释为刚刚关闭的通道的重新打开。通道闭合动力学中的快速成分有许多可能的解释,因此更难以解释。我们可以通过询问乙酰胆碱受体通道的连续打开的寿命是否与开放状态的寿命相关来深入了解关闭过程。考虑了五个通道闭合动力学模型。这些模型中的两个模型预测了不相关的开态寿命,一个模型预测了相关的开态寿命,而对于另外两个模型,则可能存在一系列行为。分析来自培养的大鼠肌肉的乙酰胆碱受体通道数据,以显示开放状态的寿命是相关的,从而消除了两种通道门控模型。

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