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首页> 外文期刊>The Journal of general physiology >The calcium-independent transient outward potassium current in isolated ferret right ventricular myocytes. I. Basic characterization and kinetic analysis.
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The calcium-independent transient outward potassium current in isolated ferret right ventricular myocytes. I. Basic characterization and kinetic analysis.

机译:孤立的雪貂右心室心肌细胞中钙非依赖性的瞬时向外钾电流。一,基本表征和动力学分析。

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Enzymatically isolated myocytes from ferret right ventricles (12-16 wk, male) were studied using the whole cell patch clamp technique. The macroscopic properties of a transient outward K+ current I(to) were quantified. I(to) is selective for K+, with a PNa/PK of 0.082. Activation of I(to) is a voltage-dependent process, with both activation and inactivation being independent of Na+ or Ca2+ influx. Steady-state inactivation is well described by a single Boltzmann relationship (V1/2 = -13.5 mV; k = 5.6 mV). Substantial inactivation can occur during a subthreshold depolarization without any measurable macroscopic current. Both development of and recovery from inactivation are well described by single exponential processes. Ensemble averages of single I(to) channel currents recorded in cell-attached patches reproduce macroscopic I(to) and indicate that inactivation is complete at depolarized potentials. The overall inactivation/recovery time constant curve has a bell-shaped potential dependence that peaks between -10 and -20 mV, with time constants (22 degrees C) ranging from 23 ms (-90 mV) to 304 ms (-10 mV). Steady-state activation displays a sigmoidal dependence on membrane potential, with a net aggregate half-activation potential of +22.5 mV. Activation kinetics (0 to +70 mV, 22 degrees C) are rapid, with I(to) peaking in approximately 5-15 ms at +50 mV. Experiments conducted at reduced temperatures (12 degrees C) demonstrate that activation occurs with a time delay. A nonlinear least-squares analysis indicates that three closed kinetic states are necessary and sufficient to model activation. Derived time constants of activation (22 degrees C) ranged from 10 ms (+10 mV) to 2 ms (+70 mV). Within the framework of Hodgkin-Huxley formalism, Ito gating can be described using an a3i formulation.
机译:使用全细胞膜片钳技术研究了来自雪貂右心室(12-16周,男性)的酶促分离的心肌细胞。瞬态向外K +电流I(to)的宏观特性被量化。 I(to)对K +具有选择性,PNa / PK为0.082。 I(to)的激活是一个电压依赖性过程,激活和失活都与Na +或Ca2 +流入无关。单个Boltzmann关系式(V1 / 2 = -13.5 mV; k = 5.6 mV)很好地描述了稳态失活。在没有任何可测量的宏观电流的情况下,亚阈值去极化期间可能会发生大量失活。单个指数过程很好地描述了灭活的发生和从中的恢复。单元格贴片中记录的单个I(to)通道电流的集合平均值重现了宏观I(to),并表明去极化电势下灭活完成。总体失活/恢复时间常数曲线具有钟形电位依赖性,其峰值介于-10和-20 mV之间,时间常数(22摄氏度)的范围从23 ms(-90 mV)到304 ms(-10 mV) 。稳态活化显示出对膜电位的S形依赖性,净聚集半活化电位为+22.5 mV。激活动力学(0至+70 mV,22摄氏度)很快,I(to)在+50 mV时约5-15 ms达到峰值。在降低的温度(12摄氏度)下进行的实验表明,激活会发生时间延迟。非线性最小二乘分析表明,三个闭合的动力学状态对于建模激活是必要且足够的。派生的激活时间常数(22摄氏度)范围从10 ms(+10 mV)到2 ms(+70 mV)。在Hodgkin-Huxley形式主义的框架内,可以使用a3i公式描述伊藤门。

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