Fan Z, Tokuyama Y, Makielski J C
Department of Medicine, University of Chicago, Illinois 60637.
Am J Physiol. 1994 Oct;267(4 Pt 1):C1036-44. doi: 10.1152/ajpcell.1994.267.4.C1036.
The effect of intracellular acidification (low pHi) on open probability of the ATP-sensitive K+ (KATP) channel was examined in insulin-secretion cells using an inside-out configuration of the patch-clamp technique. In an insulin-secreting cell line beta-TC3, KATP single-channel currents (IKATP) were readily recorded in the absence of internal ATP. ATP (50 microM and 0.5 mM) dramatically decreased the channel activity. A step decrease of intracellular pH (pHi) from 7.4 to 6.7 or 6.3 in the presence of ATP gradually increased the channel activity. In addition, low pHi in the presence of ATP could partially restore channel activity lost in a process called "rundown." Kinetic analysis revealed a change in channel gating at low pHi with ATP. The bursting durations of IKATP at pHi 6.3 in the presence of ATP were significantly longer than those at pHi 7.4 in the absence of ATP. These results suggest that the increased channel activity at low pHi might have resulted from a mechanism involving an alteration of channel conformation. We also observed an inhibitory effect of low pHi on channel activity. However, the inhibitory effect was much more apparent at pHi 5.7 and was only partially reversible. The activation effect of low pHi on IKATP in the presence of ATP was also observed in acutely isolated rat islet cells and in another insulin-secretion cell line RINm5F, although the effect was weaker and was variable among experiments. We conclude that, as in frog skeletal muscle and cardiac muscle, an increase in channel activity at low pHi is one of the mechanisms underlying proton modulation of IKATP in insulin-secreting cells.
利用膜片钳技术的内面向外式构型,在胰岛素分泌细胞中研究了细胞内酸化(低细胞内pH值,pHi)对ATP敏感性钾通道(KATP通道)开放概率的影响。在胰岛素分泌细胞系β-TC3中,在无细胞内ATP的情况下很容易记录到KATP单通道电流(IKATP)。ATP(50微摩尔和0.5毫摩尔)显著降低通道活性。在有ATP存在的情况下,细胞内pH值(pHi)从7.4逐步降至6.7或6.3会逐渐增加通道活性。此外,有ATP存在时的低pHi可部分恢复在一个称为“衰减”的过程中丧失的通道活性。动力学分析显示,有ATP存在时低pHi会改变通道门控。有ATP存在时pHi为6.3时IKATP的爆发持续时间明显长于无ATP时pHi为7.4时的爆发持续时间。这些结果表明,低pHi时通道活性增加可能是由涉及通道构象改变的机制所致。我们还观察到低pHi对通道活性有抑制作用。然而,这种抑制作用在pHi为5.7时更为明显,且只是部分可逆。在急性分离的大鼠胰岛细胞和另一个胰岛素分泌细胞系RINm5F中也观察到了有ATP存在时低pHi对IKATP的激活作用,尽管该作用较弱且在不同实验中存在差异。我们得出结论,与青蛙骨骼肌和心肌一样,低pHi时通道活性增加是胰岛素分泌细胞中质子调节IKATP的潜在机制之一。