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豚鼠心脏细胞中镁离子阻滞揭示内向整流钾通道的开放态亚结构

Open-state substructure of inwardly rectifying potassium channels revealed by magnesium block in guinea-pig heart cells.

作者信息

Matsuda H

机构信息

Department of Physiology, Faculty of Medicine, Kyushu University, Fukuoka, Japan.

出版信息

J Physiol. 1988 Mar;397:237-58. doi: 10.1113/jphysiol.1988.sp016998.

Abstract
  1. Outward single-channel currents through inwardly rectifying K+ channels of cardiac myocytes were studied in the open cell-attached configuration to clarify the mechanism of the rectification. The outward currents, which were not recorded in the cell-attached configuration, appeared after the inner surface of the patch was exposed to low-Mg2+ solution by rupturing a part of the cell membrane. 2. The single-channel current-voltage (I-V) relation was linear in the absence of Mg2+ and crossed the voltage axis near the equilibrium potential for K+ (EK). The channel conductance was 22 and 16 pS (15-16 degrees C) at external K+ concentrations of 150 and 40 mM, respectively. 3. The channel rapidly closed on stepping the membrane potential of the patch to values more positive than EK. Decay of the average current during depolarization was fitted with a single-exponential function. The time constant appeared voltage dependent, but also tended to increase slowly with time after opening the cell to the bath solution. 4. Mg2+ on the cytoplasmic side blocked the outward currents without affecting the inward currents. The half-saturation concentration of the Mg2+ block was 1.7 microM as examined by measuring the mean patch current at +70 mV. 5. In the presence of internal Mg2+ at a micromolar level (2-10 microM), the outward single-channel current fluctuated between four levels including two intermediate levels (sublevels) in addition to the fully open channel current and the zero-current levels. The I-V relations of each sublevel were equally spaced with an interval of about 7 pS. Corresponding sublevels were found spontaneously in the inward direction. 6. Occupancy at each level was estimated from reconstructed traces at various Mg2+ concentrations and voltages, and compared with the value predicted from the binomial theorem. At different probabilities for the blocked state, the distribution of the current levels showed reasonable agreement with the binomial theorem. These findings suggest that the inwardly rectifying K+ channel of cardiac cells is composed of three identical conducting subunits and each subunit is blocked by Mg2+ independently. 7. Dwell times in each substate were distributed exponentially. On the assumption of the above model, the blocking (mu) and unblocking (lambda) rates were calculated. The value of mu increased with higher Mg2+ concentrations or larger depolarizations, while lambda ranged between 50 and 90 s-1 and seemed independent of Mg2+. 8. Owing to the voltage-dependent block by Mg2+, the average current decayed exponentially on depolarization beyond EK.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 为阐明整流机制,采用膜片贴附式记录模式,研究心肌细胞内向整流钾通道的外向单通道电流。在膜片贴附式记录模式下未记录到外向电流,当通过破坏部分细胞膜使膜片内表面暴露于低镁溶液后,外向电流出现。2. 在无镁离子时,单通道电流-电压(I-V)关系呈线性,且在钾离子平衡电位(EK)附近与电压轴相交。在胞外钾离子浓度分别为150和40 mM时,通道电导分别为22和16 pS(15 - 16℃)。3. 当将膜片膜电位阶跃到比EK更正的值时,通道迅速关闭。去极化期间平均电流的衰减用单指数函数拟合。时间常数似乎与电压有关,但在将细胞暴露于浴液后也随时间缓慢增加。4. 胞质侧的镁离子阻断外向电流而不影响内向电流。通过测量 +70 mV时的平均膜片电流检测,镁离子阻断的半饱和浓度为1.7 μM。5. 在微摩尔水平(2 - 10 μM)的胞内镁离子存在时,外向单通道电流在四个水平之间波动,除了完全开放通道电流和零电流水平外,还包括两个中间水平(亚水平)。每个亚水平的I-V关系以约7 pS的间隔等间距分布。在向内方向上自发发现了相应的亚水平。6. 根据不同镁离子浓度和电压下重建的轨迹估计每个水平的占有率,并与二项式定理预测的值进行比较。在阻断状态的不同概率下,电流水平的分布与二项式定理显示出合理的一致性。这些发现表明,心肌细胞内向整流钾通道由三个相同的传导亚基组成,每个亚基被镁离子独立阻断。7. 每个亚状态的驻留时间呈指数分布。基于上述模型的假设,计算了阻断(μ)和解阻断(λ)速率。μ的值随镁离子浓度升高或去极化程度增大而增加,而λ在50至90 s-1之间,似乎与镁离子无关。8. 由于镁离子的电压依赖性阻断,去极化超过EK时平均电流呈指数衰减。(摘要截断于400字)

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