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来自单个雪貂心房肌细胞的E-4031敏感电流的激活和失活动力学。

Activation and inactivation kinetics of an E-4031-sensitive current from single ferret atrial myocytes.

作者信息

Liu S, Rasmusson R L, Campbell D L, Wang S, Strauss H C

机构信息

Department of Medicine, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Biophys J. 1996 Jun;70(6):2704-15. doi: 10.1016/S0006-3495(96)79840-5.

Abstract

Ferret atrial myocytes can display an E-4031-sensitive current (IKr) that is similar to that previously described for guinea pig cardiac myocytes. We examined the ferret atrial IKr as the E-4031-sensitive component of current using the amphotericin B perforated patch-clamp technique. Steady-state IKr during depolarizing pulses showed characteristic inward rectification. Activation time constants during a single pulse were voltage dependent, consistent with previous studies. However, for potentials positive to +30 mV, IKr time course became complex and included a brief transient component. We examined the envelope of tails of the drug-sensitive current for activation in the range -10 to +50 mV and found that the tail currents for IKr do not activate with the same time course as the current during the depolarizing pulse. The activation time course determined from tail currents was relatively voltage insensitive over the range +30 to +50 mV (n = 5), but was voltage sensitive for potentials between -10 and +30 mV and appeared to show some sigmoidicity in this range. These data indicate that activation of IKr occurs in at least two steps, one voltage sensitive and one voltage insensitive, the latter of which becomes rate limiting at positive potentials. We also examined the rapid time-dependent inactivation process that mediates rectification at positive potentials. The time constants for this process were only weakly voltage dependent over the range of potentials from -50 to +60 mV. From these data we constructed a simple linear four-state model that reproduces the general features of ferret IKr, including the initial transient at positive potentials and the apparent discrepancy between the currents during the initial depolarizing pulse and the tail current.

摘要

雪貂心房肌细胞可呈现一种对E - 4031敏感的电流(IKr),该电流与先前描述的豚鼠心肌细胞的电流相似。我们使用两性霉素B穿孔膜片钳技术,将雪貂心房IKr作为电流的E - 4031敏感成分进行了检测。去极化脉冲期间的稳态IKr表现出特征性的内向整流。单个脉冲期间的激活时间常数与电压有关,这与先前的研究一致。然而,对于高于+30 mV的电位,IKr的时间进程变得复杂,并且包括一个短暂的瞬态成分。我们检测了药物敏感电流在-10至+50 mV范围内激活时的尾电流包络,发现IKr的尾电流激活时间进程与去极化脉冲期间的电流不同。由尾电流确定的激活时间进程在+30至+50 mV范围内对电压相对不敏感(n = 5),但在-10至+30 mV的电位范围内对电压敏感,并且在此范围内似乎呈现出某种S形。这些数据表明,IKr的激活至少分两步进行,一步对电压敏感,一步对电压不敏感,后者在正电位时成为限速步骤。我们还研究了介导正电位整流的快速时间依赖性失活过程。该过程的时间常数在-50至+60 mV的电位范围内仅对电压有微弱的依赖性。根据这些数据,我们构建了一个简单的线性四态模型,该模型再现了雪貂IKr的一般特征,包括正电位时的初始瞬态以及初始去极化脉冲期间的电流与尾电流之间明显的差异。

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