Misler S, Gillis K, Tabcharani J
Department of Medicine, Washington University, St. Louis, Missouri 63110.
J Membr Biol. 1989 Jul;109(2):135-43. doi: 10.1007/BF01870852.
Membrane-permeant weak acids and bases, when applied to the bath, modulate the resting membrane potential and the glucose-induced electrical activity of pancreatic B cells, as well as their insulin secretion. These substances alter the activity of a metabolite-regulated, ATP-sensitive K+ channel which underlies the B-cell resting potential. We now present several lines of evidence indicating that the channel may be directly gated by pHi. (1) The time course of K+(ATP) channel activity during exposure to and washout of NH4Cl under a variety of experimental conditions, including alteration of the electrochemical gradient for NH4Cl entry and inhibition of the Na+o/H+i exchanger, resembles the time course of pHi measured in other cell types that have been similarly treated. (2) Increasing pHo over the range 6.25-7.9 increases K+(ATP) channel activity in cell-attached patches where the cell surface exposed to the bath has been permeabilized to H+ by the application of the K+/H+ exchanger nigericin. (3) Increasing pHi over a similar range produces similar effects on K+(ATP) channels in inside-out excised patches exposed to small concentrations of ATPi. The physiological role of delta pHi in the metabolic gating of this channel remains to be explored.
膜通透性弱酸和弱碱应用于浴液时,可调节胰腺β细胞的静息膜电位、葡萄糖诱导的电活动及其胰岛素分泌。这些物质改变了一种代谢物调节的ATP敏感性钾通道的活性,该通道是β细胞静息电位的基础。我们现在提供几条证据表明该通道可能直接受细胞内pH值(pHi)调控。(1)在多种实验条件下,包括改变氯化铵进入细胞的电化学梯度以及抑制钠外向/氢内向交换体时,暴露于氯化铵期间及洗脱过程中钾离子ATP(K+(ATP))通道活性的时间进程,类似于在其他经过类似处理的细胞类型中测得的pHi的时间进程。(2)在6.25 - 7.9范围内提高细胞外pH值(pHo),可增加细胞贴附式膜片中K+(ATP)通道的活性,在这种膜片中,通过应用钾离子/氢离子交换体尼日利亚菌素使暴露于浴液的细胞表面对氢离子通透。(3)在类似范围内提高pHi,对暴露于低浓度细胞内ATP(ATPi)的内向外翻式膜片中的K+(ATP)通道产生类似影响。细胞内pH值差值(δpHi)在该通道代谢门控中的生理作用仍有待探索。