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一种基于调制阻滞剂的钠通道失活模型。

A Model of sodium channel-inactivation based upon the modulated blocker.

作者信息

Edmonds D T

出版信息

Proc R Soc Lond B Biol Sci. 1983 Oct 22;219(1217):423-38. doi: 10.1098/rspb.1983.0082.

Abstract

An attempt is made to model sodium channel inactivation based upon real physical processes. The principle involved, which is supported by calculation and by direct appeal to experimental results, is that the gating dipole reversal or gating charge transfer that occurs when the channel is activated, markedly modulates the electrical properties of charged groups at the channel ends. Four examples of possible mechanisms that lead to channel inactivation are described. The simple four-state model that results is able to predict: (a) the steep voltage dependence of the equilibrium inactivation characteristic without the presence of any appreciable displacement current associated with inactivation; (b) the negative shift in membrane voltage of the equilibrium inactivation characteristic relative to the activation characteristic; (c) the bell-shaped dependence of inactivation time constant on membrane voltage; (d) the similarity of the membrane voltage dependence of the time constant of recovery from inactivation, to that of inactivation itself. A brief discussion of a model for sodium channel activation based upon the same physical principle is included.

摘要

人们尝试基于实际物理过程对钠通道失活进行建模。所涉及的原理得到了计算以及对实验结果直接验证的支持,即通道激活时发生的门控偶极反转或门控电荷转移,会显著调节通道末端带电基团的电学性质。文中描述了导致通道失活的四种可能机制。由此得出的简单四态模型能够预测:(a) 平衡失活特征的陡峭电压依赖性,且不存在与失活相关的任何明显位移电流;(b) 平衡失活特征相对于激活特征在膜电压上的负向偏移;(c) 失活时间常数对膜电压的钟形依赖性;(d) 失活恢复时间常数的膜电压依赖性与失活本身的相似性。文中还简要讨论了基于相同物理原理的钠通道激活模型。

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