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哺乳动物心肌中钠通道门控的膜片钳分析:钠电流双脉冲失活及电压依赖性的重构

Patch clamp analysis of Na channel gating in mammalian myocardium: reconstruction of double pulse inactivation and voltage dependence of Na currents.

作者信息

Benndorf K

机构信息

Julius Bernstein Institute of Physiology, Martin Luther University, Halle (Saale), German Democratic Republic.

出版信息

Gen Physiol Biophys. 1988 Aug;7(4):353-77.

PMID:2846409
Abstract

Isolated ventricular cells of the mouse heart were prepared by an enzyme digestion procedure. Unitary Na currents were recorded with the patch clamp technique from cell attached patched. Macroscopic Na currents were obtained as mean of 38 consecutive sweeps of cell attached patches with up to 100 channels each. Double pulse inactivation of macroscopic currents showed an increase of the test current amplitude at test pulse potential Vt = -30 mV after short prepulses at prepulse potential Vp = -50 mV. The open time distribution of single channels could be fitted monoexponentially yielding a mean open time tau 0. Between -70 mV and -20 mV tau 0 showed a bell shaped voltage dependence. The probability to record an empty sweep PA (0) had a minimum value at -50 mV and increased towards less negative potentials. The current-voltage relation of the unitary current was linear between -60 mV and -20 mV yielding a slope conductance of 18.5 pS at room temperature. There was no indication of the existence of more than a single unitary current level. For the apparent peak open probability of a Na channel a sigmoidal voltage dependence was found between -70 mV and -20 mV. Single channel recording reveals that the time course of double pulse inactivation coincides with the increase in the number of empty sweeps leaving tau 0 unchanged. The Markov models with two closed states, one open and one inactivated, were used for quantitative analysis. Useful were only models allowing inactivation both from at least one of the closed states and from the open state. For both model types a set of rate constants was calculated from single channel data and from the time course of the opening probability at -50 mV and -30 mV, respectively. The model with the allowed inactivation from the second closed state (M1) was superior to that with the allowed inactivation from the first closed state (M3) by the prediction of the time course of the early double pulse inactivation at Vp = 50 mV and Vt = 30 mV and, based on these data, by the prediction of the amplitude of Na currents at -40 mV and -60 mV.

摘要

采用酶消化法制备小鼠心脏的离体心室细胞。用膜片钳技术从细胞贴附式膜片记录单位钠电流。宏观钠电流是通过对每个包含多达100个通道的细胞贴附式膜片进行38次连续扫描的平均值获得的。宏观电流的双脉冲失活显示,在预脉冲电位Vp = -50 mV进行短预脉冲后,在测试脉冲电位Vt = -30 mV时测试电流幅度增加。单通道的开放时间分布可以用单指数函数拟合,得出平均开放时间tau 0。在-70 mV至-20 mV之间,tau 0呈现钟形电压依赖性。记录到空扫描PA(0)的概率在-50 mV时具有最小值,并向负电位较小的方向增加。单位电流的电流-电压关系在-60 mV至-20 mV之间呈线性,在室温下斜率电导为18.5 pS。没有迹象表明存在不止一个单位电流水平。对于钠通道的表观峰值开放概率,在-70 mV至-20 mV之间发现了S形电压依赖性。单通道记录显示,双脉冲失活的时间进程与空扫描数量的增加一致,而tau 0保持不变。具有两个关闭状态、一个开放状态和一个失活状态的马尔可夫模型用于定量分析。只有允许从至少一个关闭状态和开放状态进行失活的模型才有用。对于这两种模型类型,分别根据单通道数据以及在-50 mV和-30 mV时开放概率的时间进程计算了一组速率常数。通过预测在Vp = 50 mV和Vt = 30 mV时早期双脉冲失活的时间进程,以及基于这些数据预测在-40 mV和-60 mV时钠电流的幅度,允许从第二个关闭状态进行失活的模型(M1)优于允许从第一个关闭状态进行失活的模型(M3)。

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