Wu M S, Biemesderfer D, Giebisch G, Aronson P S
Department of Medicine, Yale University School of Medicine, New Haven, Connecticut 06520-8029, USA.
J Biol Chem. 1996 Dec 20;271(51):32749-52. doi: 10.1074/jbc.271.51.32749.
The aims of the present study were to estimate the fraction of renal brush border membrane Na+-H+ exchange activity mediated by the isoform NHE3 and to evaluate whether the increased brush border Na+-H+ exchange observed in metabolic acidosis is due to increased expression of NHE3 protein. Compared with other isoforms, NHE3 is known to have a unique profile of sensitivity to pharmacologic inhibitors, including relative resistance to amiloride analogs and HOE694. We therefore assessed the inhibitor sensitivity of pH gradient-stimulated 22Na uptake in renal brush border vesicles isolated from normal rats. The I50 values for amiloride (30 microM), dimethylamiloride (10 microM), ethylisopropylamiloride (6 microM), and HOE694 (>100 microM) were markedly dissimilar from those reported for NHE1 and NHE2 but were nearly identical to reported values for NHE3. Na+-H+ exchange activity in renal brush border vesicles isolated from rats with 5 days of NH4Cl-induced metabolic acidosis was increased 1.5-fold compared with control rats, with no change in inhibitor sensitivity. Western blot analysis indicated that NHE3 protein expression was greater in brush border membranes from acidotic compared with control rats. We conclude that virtually all measured Na+-H+ exchange activity in brush border membranes from control and acidotic rats is mediated by NHE3 and that metabolic acidosis causes increased expression of renal brush border NHE3 protein.
本研究的目的是估计由NHE3亚型介导的肾刷状缘膜Na⁺-H⁺交换活性的比例,并评估在代谢性酸中毒中观察到的刷状缘Na⁺-H⁺交换增加是否归因于NHE3蛋白表达的增加。与其他亚型相比,已知NHE3对药理抑制剂具有独特的敏感性特征,包括对氨氯地平类似物和HOE694相对耐药。因此,我们评估了从正常大鼠分离的肾刷状缘小泡中pH梯度刺激的²²Na摄取的抑制剂敏感性。氨氯地平(30μM)、二甲基氨氯地平(10μM)、乙基异丙基氨氯地平(6μM)和HOE694(>100μM)的I50值与报道的NHE1和NHE2的值明显不同,但与报道的NHE3的值几乎相同。与对照大鼠相比,从氯化铵诱导的代谢性酸中毒5天的大鼠分离的肾刷状缘小泡中的Na⁺-H⁺交换活性增加了1.5倍,抑制剂敏感性没有变化。蛋白质印迹分析表明,与对照大鼠相比,酸中毒大鼠刷状缘膜中的NHE3蛋白表达更高。我们得出结论,对照和酸中毒大鼠刷状缘膜中几乎所有测量的Na⁺-H⁺交换活性均由NHE3介导,并且代谢性酸中毒导致肾刷状缘NHE3蛋白表达增加。