Hommers Leif G, Lohse Martin J, Bünemann Moritz
University of Würzburg, Department of Pharmacology & Toxicology, Versbacherstrasse 9, Germany.
J Biol Chem. 2003 Jan 10;278(2):1037-43. doi: 10.1074/jbc.M205325200. Epub 2002 Oct 25.
Gbetagamma subunits are known to bind to and activate G-protein-activated inwardly rectifying K(+) channels (GIRK) by regulating their open probability and bursting behavior. Studying G-protein regulation of either native GIRK (I(KACh)) channels in feline atrial myocytes or heterologously expressed GIRK1/4 channels in Chinese hamster ovary cells and HEK 293 cells uncovered a novel Gbetagamma subunit mediated regulation of the inwardly rectifying properties of these channels. I(KACh) activated by submaximal concentrations of acetylcholine exhibited a approximately 2.5-fold stronger inward rectification than I(KACh) activated by saturating concentrations of acetylcholine. Similarly, the inward rectification of currents through GIRK1/4 channels expressed in HEK cells was substantially weakened upon maximal stimulation with co-expressed Gbetagamma subunits. Analysis of the outward current block underlying inward rectification demonstrated that the fraction of instantaneously blocked channels was reduced when Gbetagamma was over-expressed. The Gbetagamma induced weakening of inward rectification was associated with reduced potencies for Ba(2+) and Cs(+) to block channels from the extracellular side. Based on these results we propose that saturation of the channel with Gbetagamma leads to a conformational change within the pore of the channel that reduced the potency of extracellular cations to block the pore and increased the fraction of channels inert to a pore block in outward direction.
已知Gβγ亚基可通过调节G蛋白激活的内向整流钾通道(GIRK)的开放概率和爆发行为来结合并激活这些通道。对猫心房肌细胞中的天然GIRK(I(KACh))通道或中国仓鼠卵巢细胞和HEK 293细胞中异源表达的GIRK1/4通道的G蛋白调节进行研究,发现了一种新的由Gβγ亚基介导的对这些通道内向整流特性的调节。由亚最大浓度乙酰胆碱激活的I(KACh),其内向整流比由饱和浓度乙酰胆碱激活的I(KACh)强约2.5倍。同样,在用共表达的Gβγ亚基进行最大刺激时,HEK细胞中表达的GIRK1/4通道电流的内向整流显著减弱。对内向整流所基于的外向电流阻滞进行分析表明,当Gβγ过表达时,瞬时阻滞通道的比例降低。Gβγ诱导的内向整流减弱与Ba(2+)和Cs(+)从细胞外侧阻滞通道的效力降低有关。基于这些结果,我们提出通道被Gβγ饱和会导致通道孔内的构象变化,从而降低细胞外阳离子阻滞孔的效力,并增加对外向孔阻滞呈惰性的通道比例。