Quayle J M, McCarron J G, Brayden J E, Nelson M T
Department of Pharmacology, Medical Research Facility, University of Vermont, Colchester 05446.
Am J Physiol. 1993 Nov;265(5 Pt 1):C1363-70. doi: 10.1152/ajpcell.1993.265.5.C1363.
Inward rectifier K+ channels have been implicated in the control of membrane potential and external K(+)-induced dilations of small cerebral arteries. In the present study, whole cell K+ currents through the inward rectifier K+ channel were measured in single smooth muscle cells isolated from the posterior cerebral artery of Wistar-Kyoto rats. The whole cell K+ current-voltage relationship showed inward rectification. Inward currents were recorded negative to the K+ equilibrium potential, whereas outward currents were small. When extracellular K+ was elevated, the zero current potential shifted to the new K+ equilibrium potential, and the conductance of the inward current increased. Inward currents were reduced by external barium or cesium. Inhibition by barium and cesium increased with membrane hyperpolarization. The half-inhibition constant for barium was 2.2 microM at -60 mV, increasing e-fold for a 23-mV depolarization. We provide the first direct measurements of inward rectifier K+ currents in single smooth muscle cells and show that external barium ions are effective blockers of these currents.
内向整流钾通道参与了膜电位的调控以及细胞外钾离子诱导的大脑小动脉舒张过程。在本研究中,我们对从Wistar-Kyoto大鼠大脑后动脉分离出的单个平滑肌细胞中通过内向整流钾通道的全细胞钾电流进行了测量。全细胞钾电流-电压关系呈现内向整流特性。内向电流记录于钾离子平衡电位负值一侧,而外向电流较小。当细胞外钾离子浓度升高时,零电流电位移至新的钾离子平衡电位,内向电流的电导增加。内向电流可被细胞外钡离子或铯离子降低。钡离子和铯离子的抑制作用随膜超极化增强。钡离子在-60 mV时的半抑制常数为2.2 μM,膜电位去极化23 mV时增大10倍。我们首次直接测量了单个平滑肌细胞中的内向整流钾电流,并表明细胞外钡离子是这些电流的有效阻断剂。