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Kinetic analysis of channel gating. Application to the cholinergic receptor channel and the chloride channel from Torpedo californica.

机译:通道门控的动力学分析。应用于加州鱼雷的胆碱能受体通道和氯离子通道。

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摘要

Identification of the minimum number of ways in which open and closed states communicate is a crucial step in defining the gating kinetics of multistate channels. We used certain correlation functions to extract information about the pathways connecting the open and closed states of the cation channel of the purified nicotinic acetylcholine receptor and of the chloride channel of Torpedo californica electroplax membranes. Single channel currents were recorded from planar lipid bilayers containing the membrane channel proteins under investigation. The correlation functions are conveniently computed from single channel current records and yield information on E, the minimum number of entry/exit states into the open or closed aggregates. E gives a lower limit on the numbers of transition pathways between open and closed states. For the acetylcholine receptor, the autocorrelation analysis shows that there are at least two entry/exit states through which the open and closed aggregates communicate. The chloride channel fluctuates between three conductance substates, here indentified as C, M, and H for closed, intermediate, and high conductance, respectively. Correlation analysis shows that E is greater than or equal to 2 for the M aggregate, indicating that there are at least two distinct entry/exit states in the M aggregate. In contrast, there is no evidence for the existence of more than one entry/exit state in the C or H aggregates. Thus, these correlation functions provide a simple and general strategy to extract information on channel gating kinetics.
机译:确定打开状态和关闭状态进行通信的最小方式是确定多状态通道门控动力学的关键步骤。我们使用某些相关函数来提取有关连接纯化的烟碱型乙酰胆碱受体阳离子通道和加利福尼亚鱼雷电浆膜氯化物通道的阳离子通道的打开和关闭状态的途径的信息。从包含所研究的膜通道蛋白的平面脂质双层记录单通道电流。可以根据单通道电流记录和E上的收益信息方便地计算相关函数,E信息是开放或封闭集合中的最小进入/退出状态数。 E给出了打开状态和关闭状态之间转换路径数量的下限。对于乙酰胆碱受体,自相关分析表明,存在至少两种进入/退出状态,开放和封闭聚集体通过该状态进行通信。氯离子通道在三个电导子状态之间波动,此处分别将C,M和H标识为封闭电导,中电导和高电导。相关性分析表明,对于M个聚合,E大于或等于2,表明M聚合中至少有两个不同的进入/退出状态。相反,没有证据表明C或H聚合中存在一个以上的进入/退出状态。因此,这些相关函数提供了一种简单而通用的策略来提取有关通道门控动力学的信息。

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