首页> 美国卫生研究院文献>The Journal of Physiology >The Mg2+ block and intrinsic gating underlying inward rectification of the K+ current in guinea-pig cardiac myocytes.
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The Mg2+ block and intrinsic gating underlying inward rectification of the K+ current in guinea-pig cardiac myocytes.

机译:Mg2 +阻滞和内在门控对豚鼠心肌细胞内K +电流的内向整流作用。

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摘要

1. The blockade by Mg2+ and intrinsic gating of the channel, which underlie the rectification of the inward rectifier K+ current, was investigated using the oil-gap voltage clamp method in isolated guinea-pig ventricular cells. 2. The inward rectifier K+ current was isolated by subtracting trans-gap currents recorded at an extracellular K+ concentration ([K+]o) of 0 mM from those obtained at 14 mM [K+]o in the presence of a given concentration of intracellular Mg2+ ([Mg2+]i). The reversal potential (V0) of the difference current was near the equilibrium potential for K+ (EK). 3. On repolarization across EK, the inward rectifier K+ current showed a rapid exponential increase. The time constant decreased with increasing hyperpolarization, but it was independent of both [Mg2+]i and the preceding depolarization. 4. When the pre-pulse potential was made progressively positive between V0-20 and V0 + 30 mV, the amplitude of the time-dependent component became larger and the preceding current jump decreased at any [Mg2+]i. With pre-pulses more positive than V0 + 40 mV, the time-dependent component started from almost the zero current level at 2 microM [Mg2+]i. At higher [Mg2+]i (350, 500 and 3000 microM), however, the time-dependent component became smaller as the pre-pulse potential was made more positive than V0 + 40 mV. 5. When the membrane was depolarized from a potential of full activation at 2 microM [Mg2+]i, the initial jump in the outward current was ohmic and was followed by an exponential decay. The time-dependent component of the inward current, recorded on repolarization after increasing durations of the preceding depolarization, developed as the outward current decayed. The time constants of both processes were in good agreement. 6. At 500 microM [Mg2+]i, the outward current on depolarization was instantaneously rectified. The time-dependent component recorded on repolarization developed with prolongation of the pre-pulse with a time course slower than at 2 microM [Mg2+]i. The envelope time course became slower as the potential of the depolarization became more positive. 7. Lowering the temperature from 23 to 15 degrees C slowed the time-dependent current with an apparent Q10 of about 3.5 at V0. 8. Based on the experimental data, kinetic parameters were estimated for a model of Mg2+ block, which well simulated the inward-going rectification of the K+ current. 9. It is concluded that the instantaneous inward rectification on depolarization is due to the Mg2+ block at physiological [Mg2+]i.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.在分离的豚鼠心室细胞中,使用油隙电压钳制方法研究了Mg2 +的阻断和通道的固有门控,这是向内整流器K +电流整流的基础。 2.通过在给定浓度的细胞内Mg2 +存在的情况下,从14 mM [K +] o所获得的电流减去在细胞外K +浓度([K +] o)为0 mM时记录的跨隙电流,从而隔离向内整流器K +电流。 ([Mg2 +] i)。差电流的反向电位(V0)接近K +的平衡电位(EK)。 3.跨EK极化时,内向整流器K +电流呈快速指数增长。时间常数随着超极化的增加而减小,但与[Mg2 +] i和先前的去极化均无关。 4.当预脉冲电位在V0-20和V0 + 30 mV之间逐渐变为正时,随时间变化的分量的幅度变大,并且在任何[Mg2 +] i处,先前的电流跃变均减小。当预脉冲比V0 + 40 mV正时,与时间相关的分量从2 microM [Mg2 +] i处几乎为零的电流水平开始。然而,在较高的[Mg2 +] i(350、500和3000 microM)下,随时间变化的分量变小,因为使预脉冲电势比V0 + 40 mV更正。 5.当膜从2 microM [Mg2 +] i的完全活化电位去极化时,向外电流的初始跃变为欧姆,随后呈指数衰减。随着前次去极化持续时间的增加,复极化后记录的内向电流随时间变化的分量随着外向电流衰减而发展。两个过程的时间常数一致。 6.在500 microM [Mg2 +] i下,去极化时的外向电流立即得到整流。复极记录的时间相关成分随预脉冲的延长而发展,其时程比2 microM [Mg2 +] i慢。随着去极化的潜力变得越来越积极,包络时间进程变得越来越慢。 7.将温度从23降低到15摄氏度会减慢随时间变化的电流,在V0时的Q10约为3.5。 8.根据实验数据,估算了Mg2 +块模型的动力学参数,该模型很好地模拟了K +电流的内向整流。 9.得出的结论是,去极化的瞬时向内整流是由于生理学[Mg2 +] i处的Mg2 +阻滞引起的(抽象截断为400个字)

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