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pH值为5时青蛙骨骼肌中氯离子电导的动力学分析

Kinetic analysis of chloride conductance in frog skeletal muscle at pH 5.

作者信息

Vaughan P, Kootsey J M, Feezor M D

机构信息

Department of Physiology, University of British Columbia, Vancouver, Canada.

出版信息

Pflugers Arch. 1991 Nov;419(5):522-8. doi: 10.1007/BF00370799.

Abstract

At pH 5 the steady-state chloride chord conductance in frog skeletal muscle rises to an asymptotic maximum at very negative voltages and approaches an asymptotic minimum at positive voltages. When a two-pulse test paradigm is used, the conductance computed from steady-state currents during the first (conditioning) voltage step are not duplicated by the conductance at the onset of a second (test) step. If the test step is to a more negative voltage than the conditioning step the steady-state conductance is overestimated; if it is to a less negative voltage the conductance is underestimated. In some fibres the initial currents accompanying steps from the resting potential are inwardly rectified. From this it was inferred that chloride channel conductance is voltage dependent: in those fibres in which no such initial inward rectification was observed it was inferred that at rest the voltage-dependent chloride channels are all closed. Time-dependent ("gated") changes of conductance could be reasonably described by a first-order process, but the relaxations were not simple exponentials. Simulation of the experimental set-up predicted the type of deviation from exponentiality seen experimentally, although the observed deviations were often more pronounced than those predicted.

摘要

在pH值为5时,青蛙骨骼肌中的稳态氯化物弦电导在非常负的电压下上升到渐近最大值,并在正电压下接近渐近最小值。当使用双脉冲测试范式时,在第一个(调节)电压阶跃期间根据稳态电流计算出的电导与第二个(测试)阶跃开始时的电导不一致。如果测试阶跃的电压比调节阶跃更负,则稳态电导被高估;如果测试阶跃的电压比调节阶跃更正,则电导被低估。在一些纤维中,伴随从静息电位开始的阶跃的初始电流是内向整流的。由此推断,氯化物通道电导是电压依赖性的:在那些未观察到这种初始内向整流的纤维中,推断在静息时电压依赖性氯化物通道全部关闭。电导的时间依赖性(“门控”)变化可以用一阶过程合理描述,但弛豫不是简单的指数形式。对实验装置的模拟预测了实验中观察到的偏离指数形式的类型,尽管观察到的偏差通常比预测的更明显。

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