Gennari F J, Helmle-Kolb C, Murer H
University of Vermont, Burlington 05405.
Pflugers Arch. 1992 Feb;420(2):153-8. doi: 10.1007/BF00374984.
Studies were undertaken in cultured opossum kidney (OK) cells to determine whether the rate of H+ secretion by apical membrane Na+/H+ exchange is modulated by changes in extracellular pH or perfusion rate. H+ secretion was assessed in single cells by measuring the rate of Na(+)-dependent intracellular pH recovery after NH4Cl loading, using the pH-sensitive fluorescent dye, 2'7'-bis(carboxyethyl)-5,6-carboxyfluorescein, in monolayers mounted to allow independent perfusion of the apical and basolateral surfaces. At constant intracellular pH, Na(+)-dependent H+ secretion was found to be inversely related to extracellular H+ activity, and directly related to the perfusate flow rate. Inhibition of H+ secretion by perfusate acidity occurred immediately and was greater when perfusate Na+ was reduced, consistent with H+ competition with Na+ for binding to the transporter. By contrast, the effect of the perfusion rate was a delayed response, requiring 20 min of exposure, and was independent of perfusate Na+ concentration. The results indicate that both extracellular pH and the perfusion rate modulate H+ secretion by OK cells, and that the two effects are independent.
我们在培养的负鼠肾(OK)细胞中开展了研究,以确定顶端膜Na⁺/H⁺交换介导的H⁺分泌速率是否受细胞外pH值变化或灌注速率的调节。通过使用pH敏感荧光染料2'7'-双(羧乙基)-5,6-羧基荧光素,在装载于可独立灌注顶端和基底外侧表面的单层细胞中,测量氯化铵加载后Na⁺依赖的细胞内pH恢复速率,来评估单细胞中的H⁺分泌。在细胞内pH恒定的情况下,发现Na⁺依赖的H⁺分泌与细胞外H⁺活性呈负相关,与灌注液流速呈正相关。灌注液酸度对H⁺分泌的抑制立即发生,且当灌注液Na⁺减少时抑制作用更强,这与H⁺与Na⁺竞争结合转运体一致。相比之下,灌注速率的影响是延迟反应,需要暴露20分钟,且与灌注液Na⁺浓度无关。结果表明,细胞外pH值和灌注速率均调节OK细胞的H⁺分泌,且这两种效应相互独立。