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犬心脏浦肯野细胞单钠通道的动力学分析。

Kinetic analysis of single sodium channels from canine cardiac Purkinje cells.

作者信息

Scanley B E, Hanck D A, Chay T, Fozzard H A

机构信息

Department of Medicine, University of Chicago, Illinois 60637.

出版信息

J Gen Physiol. 1990 Mar;95(3):411-37. doi: 10.1085/jgp.95.3.411.

Abstract

Single sodium channel events were recorded from cell-attached patches on single canine cardiac Purkinje cells at 10-13 degrees C. Data from four patches containing two to four channels and one patch with one channel were selected for quantitative analysis. The channels showed prominent reopening behavior at voltages near threshold, and the number of reopenings declined steeply with depolarization. Mean channel open time was a biphasic function of voltage with the maximum value (1-1.5 ms) occurring between -50 and -40 mV and lower values at more and at less hyperpolarized levels. Inactivation without opening was also prominent near threshold, and this occurrence also declined with depolarization. The waiting time distributions and the probability of being open showed voltage and time dependence as expected from whole-cell current studies. The results were analyzed in terms of a five-state Markovian kinetic model using both histogram analysis and a maximum likelihood method to estimate kinetic parameters. The kinetic parameters of the model fits were similar to those of GH3 pituitary cells (Horn, R., and C. A. Vandenberg. 1984. Journal of General Physiology. 84:505-534) and N1E115 neuroblastoma cells (Aldrich, R. W., and C. F. Stevens. Journal of Neuroscience. 7:418-431). Both histogram and maximum likelihood analysis implied that much of the voltage dependence of cardiac Na current is in its activation behavior, with inactivation showing modest voltage dependence.

摘要

在10 - 13摄氏度下,从单个犬心脏浦肯野细胞的细胞贴附膜片上记录单个钠通道事件。选择来自四个包含两到四个通道的膜片和一个包含一个通道的膜片的数据进行定量分析。这些通道在接近阈值的电压下表现出明显的重新开放行为,并且重新开放的次数随着去极化而急剧下降。平均通道开放时间是电压的双相函数,最大值(1 - 1.5毫秒)出现在-50至-40毫伏之间,在更超极化和更少超极化水平时数值较低。在阈值附近,未开放就发生失活的情况也很突出,并且这种情况也随着去极化而减少。等待时间分布和开放概率表现出电压和时间依赖性,这与全细胞电流研究预期的一致。使用直方图分析和最大似然法估计动力学参数,根据五态马尔可夫动力学模型对结果进行分析。该模型拟合的动力学参数与GH3垂体细胞(霍恩,R.,和C. A. 范登伯格。1984.《普通生理学杂志》。84:505 - 534)和N1E115神经母细胞瘤细胞(奥尔德里奇,R. W.,和C. F. 史蒂文斯。《神经科学杂志》。7:418 - 431)的相似。直方图分析和最大似然分析都表明,心脏钠电流的大部分电压依赖性在于其激活行为,而失活表现出适度的电压依赖性。

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