Murphy Ricardo, Cherny Vladimir V, Morgan Deri, DeCoursey Thomas E
Department of Molecular Biophysics and Physiology, Rush University Medical Center, 1750 W. Harrison, Chicago, IL 60612, USA.
Am J Physiol Lung Cell Mol Physiol. 2005 Feb;288(2):L398-408. doi: 10.1152/ajplung.00299.2004. Epub 2004 Oct 29.
Voltage-gated proton channels are expressed highly in rat alveolar epithelial cells. Here we investigated whether these channels contribute to pH regulation. The intracellular pH (pH(i)) was monitored using BCECF in cultured alveolar epithelial cell monolayers and found to be 7.13 in nominally HCO(3)(-)-free solutions [at external pH (pH(o)) 7.4]. Cells were acid-loaded by the NH(4)(+) prepulse technique, and the recovery was observed. Under conditions designed to eliminate the contribution of other transporters that alter pH, addition of 10 microM ZnCl(2), a proton channel inhibitor, slowed recovery about twofold. In addition, the pH(i) minimum was lower, and the time to nadir was increased. Slowing of recovery by ZnCl(2) was observed at pH(o) 7.4 and pH(o) 8.0 and in normal and high-K(+) Ringer solutions. The observed rate of Zn(2+)-sensitive pH(i) recovery required activation of a small fraction of the available proton conductance. We conclude that proton channels contribute to pH(i) recovery after an acid load in rat alveolar epithelial cells. Addition of ZnCl(2) had no effect on pH(i) in unchallenged cells, consistent with the expectation that proton channels are not open in resting cells. After inhibition of all known pH regulators, slow pH(i) recovery persisted, suggesting the existence of a yet-undefined acid extrusion mechanism in these cells.
电压门控质子通道在大鼠肺泡上皮细胞中高度表达。在此,我们研究了这些通道是否有助于pH调节。使用BCECF监测培养的肺泡上皮细胞单层中的细胞内pH(pH(i)),发现在名义上无HCO(3)(-)的溶液中(外部pH(pH(o))为7.4),pH(i)为7.13。通过NH(4)(+)预脉冲技术使细胞酸负荷,然后观察恢复情况。在旨在消除其他改变pH的转运体贡献的条件下,添加10 microM ZnCl(2)(一种质子通道抑制剂)使恢复减慢约两倍。此外,pH(i)的最小值更低,达到最低点的时间增加。在pH(o) 7.4和pH(o) 8.0以及正常和高K(+)林格溶液中均观察到ZnCl(2)使恢复减慢。观察到的Zn(2+)敏感的pH(i)恢复速率需要激活一小部分可用的质子电导。我们得出结论,质子通道有助于大鼠肺泡上皮细胞酸负荷后的pH(i)恢复。在未受刺激的细胞中添加ZnCl(2)对pH(i)没有影响,这与质子通道在静息细胞中不开放的预期一致。在抑制所有已知的pH调节剂后,pH(i)的缓慢恢复仍然存在,这表明这些细胞中存在一种尚未明确的酸排出机制。