Silver R B, Frindt G, Mennitt P, Satlin L M
Department of Physiology, Cornell University Medical College, New York, New York 10021, USA.
J Exp Zool. 1997 Dec 1;279(5):443-55.
K-dependent H+ extrusion was investigated using fluorescence techniques in rabbit cortical collecting tubules (CCTs). Experiments were performed in split-open tubules from normal animals exposed to the intracellular pH indicator 2',7'-bis(carboxyethyl)-5(6)-carboxyfluorescein (BCECF). This preparation permitted the study of individual intercalated cells (ICs). In the ICs, partial recovery of pH(i) was observed in response to an acute acid load upon readdition of 5 mM K to the superfusate. This recovery was SCH 28080-inhibitable (10(-5) M) and ouabain-insensitive suggesting the process is mediated by a gastric-type H-K ATPase. To see if H-K ATPase plays a role in acid secretion its function was evaluated under chronic metabolic acidosis (CMA) conditions. CMA was induced by replacing drinking water with 75 mM NH4Cl in 5% sucrose for 10-14 days. The SCH 28080-inhibitable K-dependent pH(i) recovery rate was three-fold higher in CMA ICs compared to controls. To determine the location of the H-K ATPase, CCTs were microperfused and individual peanut lectin binding (PNA) ICs studied. K-dependent pH(i) recovery was measured in response to an NH4Cl pulse. An apical SCH 28080-inhibited K-dependent pH(i) recovery process was observed in control and CMA ICs. Taken together these data confirm the existence of a gastric-type H-K ATPase in ICs of rabbit CCT. Based on our findings the H-K ATPase is found on the apical side of the cell and is stimulated under conditions of CMA.
采用荧光技术在兔皮质集合管(CCT)中研究了钾依赖性氢离子排出。实验在暴露于细胞内pH指示剂2',7'-双(羧乙基)-5(6)-羧基荧光素(BCECF)的正常动物的裂开的小管中进行。这种制备方法允许研究单个闰细胞(IC)。在IC中,当向灌流液中重新添加5 mM钾以应对急性酸负荷时,观察到pH(i)的部分恢复。这种恢复可被SCH 28080抑制(10^-5 M)且对哇巴因不敏感,表明该过程由胃型H-K ATP酶介导。为了观察H-K ATP酶是否在酸分泌中起作用,在慢性代谢性酸中毒(CMA)条件下评估了其功能。通过用含75 mM NH4Cl的5%蔗糖溶液替代饮用水10 - 14天来诱导CMA。与对照组相比,CMA IC中SCH 28080可抑制的钾依赖性pH(i)恢复率高出三倍。为了确定H-K ATP酶的位置,对CCT进行微灌流并研究单个花生凝集素结合(PNA)IC。响应NH4Cl脉冲测量钾依赖性pH(i)恢复。在对照和CMA IC中均观察到顶端SCH 28080抑制的钾依赖性pH(i)恢复过程。这些数据共同证实了兔CCT的IC中存在胃型H-K ATP酶。根据我们的发现,H-K ATP酶位于细胞的顶端侧,并在CMA条件下受到刺激。