Ehrengruber M U, Doupnik C A, Xu Y, Garvey J, Jasek M C, Lester H A, Davidson N
Division of Biology, 156-29, California Institute of Technology, Pasadena, CA 91125, USA.
Proc Natl Acad Sci U S A. 1997 Jun 24;94(13):7070-5. doi: 10.1073/pnas.94.13.7070.
G protein-gated inward rectifier K+ channel subunits 1-4 (GIRK1-4) have been cloned from neuronal and atrial tissue and function as heterotetramers. To examine the inhibition of neuronal excitation by GIRKs, we overexpressed GIRKs in cultured hippocampal neurons from 18 day rat embryos, which normally lack or show low amounts of GIRK protein and currents. Adenoviral recombinants containing the cDNAs for GIRK1, GIRK2, GIRK4, and the serotonin 1A receptor were constructed. Typical GIRK currents could be activated by endogenous GABAB, serotonin 5-HT1A, and adenosine A1 receptors in neurons coinfected with GIRK1+2 or GIRK1+4. Under current clamp, GIRK activation increased the cell membrane conductance by 1- to 2-fold, hyperpolarized the cell by 11-14 mV, and inhibited action potential firing by increasing the threshold current for firing by 2- to 3-fold. These effects were not found in non- and mock-infected neurons, and were similar to the effects of muscarinic stimulation of native GIRK currents in atrial myocytes. Two inhibitory effects of GIRK activation, hyperpolarization and diminution of depolarizing pulses, were simulated from the experimental data. These inhibitory effects are physiologically important in the voltage range between the resting membrane potential and the potential where voltage-gated Na+ and K+ currents are activated; that is where GIRK currents are outward.
G蛋白门控内向整流钾离子通道亚基1 - 4(GIRK1 - 4)已从神经元和心房组织中克隆出来,并作为异源四聚体发挥作用。为了研究GIRK对神经元兴奋的抑制作用,我们在来自18日龄大鼠胚胎的培养海马神经元中过表达GIRK,这些神经元通常缺乏或仅显示少量的GIRK蛋白和电流。构建了含有GIRK1、GIRK2、GIRK4以及5 - 羟色胺1A受体cDNA的腺病毒重组体。在同时感染GIRK1 + 2或GIRK1 + 4的神经元中,典型的GIRK电流可被内源性GABAB、5 - 羟色胺5 - HT1A和腺苷A1受体激活。在电流钳模式下,GIRK激活使细胞膜电导增加1至2倍,使细胞超极化11至14 mV,并通过将动作电位发放的阈值电流增加2至3倍来抑制动作电位发放。在未感染和模拟感染的神经元中未发现这些效应,且这些效应与毒蕈碱刺激心房肌细胞中天然GIRK电流的效应相似。根据实验数据模拟了GIRK激活的两种抑制作用,即超极化和减小去极化脉冲。这些抑制作用在静息膜电位与电压门控钠电流和钾电流激活电位之间的电压范围内具有重要生理意义;也就是说,在此电压范围内GIRK电流是外向的。