Starmer C F, Starobin J, Grant A O
Department of Medicine (Cardiology), Duke University Medical Center, Durham, North Carolina 27710.
Biophys J. 1994 Jul;67(1):153-60. doi: 10.1016/S0006-3495(94)80464-3.
Two types of the late Na channels, burst and background, were studied in Purkinje and ventricular cells. In the whole-cell configuration, steady-state Na currents were recorded at potentials (-70 to -80 mV) close to the normal cell resting potential. The question of the contribution of late Na channels to this background Na conductance was investigated. During depolarization, burst Na channels were active for periods (up to approximately 5 s), which exceeded the action potential duration. However, they eventually closed without reopening, indicating the presence of slow and complete inactivation. When, at the moment of burst channel opening, the potential was switched to -80 mV, the channel closed quickly without reopening. We conclude that the burst Na channels cannot contribute significantly to the background Na conductance. Background Na channels undergo incomplete inactivation. After a step depolarization, their activity decreased in time, approaching a steady-state level. Background Na channel openings could be recorded at constant potentials in the range from -120 to 0 mV. After step depolarizations to potentials near -70 mV and more negative, a significant fraction of Na current was carried by the background Na channels. Analysis of the background channel behavior revealed that their gating properties are qualitatively different from those of the early Na channels. We suggest that background Na channels represent a special type of Na channel that can play an important role in the initiation of cardiac action potential and in the TTX-sensitive background Na conductance.
在浦肯野细胞和心室细胞中研究了两种类型的晚期钠通道,即爆发型和背景型。在全细胞模式下,在接近正常细胞静息电位的电位(-70至-80 mV)记录稳态钠电流。研究了晚期钠通道对这种背景钠电导的贡献问题。在去极化期间,爆发型钠通道会活跃一段时间(长达约5秒),超过动作电位持续时间。然而,它们最终会关闭且不再重新开放,表明存在缓慢且完全的失活。当爆发型通道打开瞬间,电位切换到-80 mV时,通道会迅速关闭且不再重新开放。我们得出结论,爆发型钠通道对背景钠电导的贡献不大。背景钠通道经历不完全失活。在阶跃去极化后,它们的活性随时间下降,接近稳态水平。在-120至0 mV范围内的恒定电位下可记录到背景钠通道的开放。在阶跃去极化到接近-70 mV及更负的电位后,相当一部分钠电流由背景钠通道携带。对背景通道行为的分析表明,它们的门控特性在质上与早期钠通道不同。我们认为背景钠通道代表一种特殊类型的钠通道,可能在心脏动作电位的起始以及TTX敏感的背景钠电导中起重要作用。