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烟碱型乙酰胆碱受体的激活。

Activation of a nicotinic acetylcholine receptor.

作者信息

Sine S M, Steinbach J H

出版信息

Biophys J. 1984 Jan;45(1):175-85. doi: 10.1016/S0006-3495(84)84146-6.

Abstract

We studied activation of the nicotinic acetylcholine (ACh) receptor on cells of a mouse clonal muscle cell line (BC3H1). We analyzed single-channel currents through outside-out patches elicited with various concentrations of acetylcholine (ACh), carbamylcholine (Carb) and suberyldicholine (Sub). Our goal is to determine a likely reaction scheme for receptor activation by agonist and to determine values of rate constants for transitions in that scheme. Over a wide range of agonist concentrations the open-time duration histograms are not described by single exponential functions, but are well-described by the sum of two exponentials, a brief-duration and a long-duration component. At high concentration, channel openings occur in groups and these groups contain an excess number of brief openings. We conclude that there are two open states of the ACh receptor with different mean open times and that a single receptor may open to either open state. The concentration dependence of the numbers of brief and long openings indicates that brief openings do not result from the opening of channels of receptors which have only one agonist molecule bound to them. Closed-time duration histograms exhibit a major brief component at low concentrations. We have used the method proposed by Colquhoun and Sakmann (1981) to analyze these brief closings and to extract estimates for the rates of channel opening (beta) and agonist dissociation (k-2). We find that this estimate of beta does not predict our closed-time histograms at high agonist concentration (ACh: 30-300 microM; Carb: 300-1,000 microM). We conclude that brief closings at low agonist concentrations do not result solely from transitions between the doubly-liganded open and the doubly-liganded closed states. Instead, we postulate the existence of a second closed-channel state coupled to the open state.

摘要

我们研究了烟碱型乙酰胆碱(ACh)受体在小鼠克隆肌肉细胞系(BC3H1)细胞上的激活情况。我们分析了通过外翻式膜片钳记录的单通道电流,这些电流是由不同浓度的乙酰胆碱(ACh)、氨甲酰胆碱(Carb)和辛二酰胆碱(Sub)诱发产生的。我们的目标是确定激动剂激活受体的可能反应机制,并确定该机制中各转变过程的速率常数。在很宽的激动剂浓度范围内,开放时间持续时间直方图不能用单指数函数来描述,而是可以很好地用两个指数之和来描述,即一个短持续时间成分和一个长持续时间成分。在高浓度时,通道开放成簇出现,并且这些簇中包含过量的短开放。我们得出结论,ACh受体存在两种具有不同平均开放时间的开放状态,并且单个受体可能开放到任意一种开放状态。短开放和长开放数量的浓度依赖性表明,短开放并非仅由仅结合一个激动剂分子的受体通道开放所致。关闭时间持续时间直方图在低浓度时呈现出一个主要的短成分。我们采用了科尔库洪和萨克曼(1981年)提出的方法来分析这些短暂关闭,并提取通道开放速率(β)和激动剂解离速率(k - 2)的估计值。我们发现,在高激动剂浓度(ACh:30 - 300微摩尔;Carb:300 - 1000微摩尔)下,这个β估计值无法预测我们的关闭时间直方图。我们得出结论,低激动剂浓度下的短暂关闭并非仅由双配体结合的开放状态和双配体结合的关闭状态之间的转变所致。相反,我们推测存在与开放状态耦合的第二种关闭通道状态。

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