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渗透离子与海兔神经元中乙酰胆碱激活的通道之间的相互作用。

Interaction of permeant ions with channels activated by acetylcholine in Aplysia neurones.

作者信息

Marchais D, Marty A

出版信息

J Physiol. 1979 Dec;297(0):9-45. doi: 10.1113/jphysiol.1979.sp013025.

Abstract
  1. Aplysia neurones with an excitatory response to acetylcholine (ACh) were voltage-clamped, and the ACh-induced currents were studied using noise and relaxation techniques. The mean channel open time, tau, and the amplitude of the elementary current, iel, were determined from these experiments, and the variation of these parameters with the ionic content of the extracellular solution was analysed. The goal of this work was to test whether permeant ions may bind in a voltage-dependent manner to channel sites and thereby hinder channel closing, as has been proposed before (Ascher, Marty & Neild, 1978a). 2. The relation between tau and the membrane potential V has a similar shape in normal sea water and after total replacement of Na ions with Li or Cs. In contrast, the shape of the tau(V) relation is modified if Na is replaced by Mg, Sr, or Ba. 3. Replacing the divalent cations (Mg and Ca) present in normal sea water with Na results in a decrease of tau and an increase of iel. Both effects are enhanced by cell hyperpolarization. 4. Similarly partial replacement of Na by Sr causes a voltage-dependent decrease of iel. 5. Experiments were performed in solutions containing Na and sucrose, or Mg and mannitol. In both cases tau was smaller than in an isotonic Na or Mg solution. 6. None of the above observations can be accounted for on the sole basis of outer surface potential changes. 7. A quantitative model of the interaction between permeant ions and ACh-sensitive channels is proposed. The possible relevance of this model for the interpretation of tau(V) curves in other systems is discussed.
摘要
  1. 对乙酰胆碱(ACh)有兴奋反应的海兔神经元进行电压钳制,采用噪声和弛豫技术研究ACh诱导的电流。从这些实验中确定了平均通道开放时间τ和基本电流iel的幅度,并分析了这些参数随细胞外溶液离子含量的变化。这项工作的目的是检验通透离子是否可能以电压依赖的方式结合到通道位点,从而阻碍通道关闭,正如之前所提出的那样(阿舍尔、马蒂和尼尔德,1978a)。2. 在正常海水中以及用锂或铯完全替代钠离子后,τ与膜电位V之间的关系具有相似的形状。相比之下,如果用镁、锶或钡替代钠,τ(V)关系的形状会发生改变。3. 用钠替代正常海水中存在的二价阳离子(镁和钙)会导致τ减小和iel增加。细胞超极化会增强这两种效应。4. 同样,用锶部分替代钠会导致iel电压依赖性降低。5. 实验在含有钠和蔗糖或镁和甘露醇的溶液中进行。在这两种情况下,τ都比等渗钠或镁溶液中的小。6. 上述任何观察结果都不能仅基于外表面电位变化来解释。7. 提出了一个通透离子与ACh敏感通道之间相互作用的定量模型。讨论了该模型在解释其他系统中τ(V)曲线方面可能的相关性。

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Ion transport through pores: a rate-theory analysis.离子通过孔道的传输:速率理论分析
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Three acetylcholine receptors in Aplysia neurones.海兔神经元中的三种乙酰胆碱受体。
J Physiol. 1972 Aug;225(1):115-46. doi: 10.1113/jphysiol.1972.sp009931.

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