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动脉平滑肌中钾通道的生理作用及特性

Physiological roles and properties of potassium channels in arterial smooth muscle.

作者信息

Nelson M T, Quayle J M

机构信息

Department of Pharmacology, University of Vermont, Colchester 05446, USA.

出版信息

Am J Physiol. 1995 Apr;268(4 Pt 1):C799-822. doi: 10.1152/ajpcell.1995.268.4.C799.

Abstract

This review examines the properties and roles of the four types of K+ channels that have been identified in the cell membrane of arterial smooth muscle cells. 1) Voltage-dependent K+ (KV) channels increase their activity with membrane depolarization and are important regulators of smooth muscle membrane potential in response to depolarizing stimuli. 2) Ca(2+)-activated K+ (KCa) channels respond to changes in intracellular Ca2+ to regulate membrane potential and play an important role in the control of myogenic tone in small arteries. 3) Inward rectifier K+ (KIR) channels regulate membrane potential in smooth muscle cells from several types of resistance arteries and may be responsible for external K(+)-induced dilations. 4) ATP-sensitive K+ (KATP) channels respond to changes in cellular metabolism and are targets of a variety of vasodilating stimuli. The main conclusions of this review are: 1) regulation of arterial smooth muscle membrane potential through activation or inhibition of K+ channel activity provides an important mechanism to dilate or constrict arteries; 2) KV, KCa, KIR, and KATP channels serve unique functions in the regulation of arterial smooth muscle membrane potential; and 3) K+ channels integrate a variety of vasoactive signals to dilate or constrict arteries through regulation of the membrane potential in arterial smooth muscle.

摘要

本综述探讨了在动脉平滑肌细胞膜中已鉴定出的四种类型钾通道的特性和作用。1)电压依赖性钾(KV)通道随着膜去极化而增加其活性,并且是平滑肌膜电位对去极化刺激作出反应的重要调节因子。2)钙激活钾(KCa)通道对细胞内Ca2+的变化作出反应以调节膜电位,并在小动脉肌源性张力的控制中起重要作用。3)内向整流钾(KIR)通道调节多种阻力动脉平滑肌细胞的膜电位,可能是细胞外钾(+)诱导的舒张的原因。4)ATP敏感性钾(KATP)通道对细胞代谢变化作出反应,并且是多种血管舒张刺激的靶点。本综述的主要结论是:1)通过激活或抑制钾通道活性来调节动脉平滑肌膜电位提供了一种扩张或收缩动脉的重要机制;2)KV、KCa、KIR和KATP通道在调节动脉平滑肌膜电位中发挥独特功能;3)钾通道整合多种血管活性信号,通过调节动脉平滑肌膜电位来扩张或收缩动脉。

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