Helmle-Kolb C, Di Sole F, Forgo J, Hilfiker H, Tse C M, Casavola V, Donowitz M, Murer H
University of Zurich, Institute of Physiology, Winterthurer Strasse 190, CH-8057 Zurich, Switzerland.
Pflugers Arch. 1997 May;434(1):123-31. doi: 10.1007/s004240050372.
NHE3 is most likely the isoform involved in renal reabsorption of HCO3- and Na+. The functional properties of the "cloned" NHE3 isoform, including its transport regulation by extra- and intracellular stimuli, have so far been studied using non-epithelial expression systems. In the present report we stably transfected NHE3 cDNA (rabbit isoform) into Madin-Darby canine kidney cells (MDCK) cells and compared the sensitivity to inhibitors and the regulation of the Na+/H+-exchanger by vasotocin in NHE3 transfectants to that of the intrinsic basolateral Na+/H+-exchanger in untransfected and control transfected MDCK cells. By Southern blot analysis we documented that the NHE3 transcript is expressed in NHE3 transfectants. Na+/H+-exchange activity, measured as sodium-dependent recovery of intracellular pH from an acid load using 2', 7'-bis(carboxymethyl)-5(6)-carboxy-fluorescein (BCECF), was equally present at the basolateral cell surface of all cell lines; however, NHE3 transfectants demonstrated transport activity in the apical membrane that was significantly higher than that in untransfected or control transfected MDCK cells. Studies with ethylisopropylamiloride (EIPA) have shown that there is a similar sensitivity to inhibitors of the apical and/or basolateral Na+/H+-exchanger in transfected and untransfected MDCK cell lines. In contrast, the apical Na+/H+-exchanger (as compared to the basolateral Na+/H+-exchanger) of NHE3 transfectants was found to be relatively insensitive to the inhibitor HOE 694. Vasotocin decreased the activity of the apical Na+/H+-exchanger in NHE3 transfectants and stimulated the activity of the basolateral Na+/H+-exchanger in transfected (with NHE3 or pMAMneo) and untransfected MDCK cells. Phorbol ester, as expected, increased the activity of the Na+/H+-exchanger in the basolateral membrane of all cell lines; also, it stimulated transport activity at the apical cell surface of NHE3 transfectants. No change of Na+/H+-exchange activities was seen in studies with 8-bromo-cAMP. The PKC inhibitor calphostin C completely suppressed regulation of the apical and/or basolateral Na+/H+-exchanger by vasotocin, it partially blocked activation of the apical Na+/H+-exchanger in NHE3 transfectants by phorbol 12-myristate 13-acetate (PMA), and completely blocked stimulation of basolateral Na+/H+-exchanger by PMA. Consistent with a V1 receptor action, the effects of vasotocin in NHE3 transfectants and in MDCK cells were blocked by the V1 receptor antagonist, d(CH2)5Tyr(Me)-AVP, but were not reproduced by the V2 receptor agonist desmopressin. It is concluded that NHE3 in the apical membrane of NHE3-transfected MDCK cells contributes to the differential regulation of the apical and basolateral Na+/H+-exchanger by vasotocin; NHE3 is inhibited and endogenous Na+/H+-exchange activity is stimulated by vasotocin via V1 receptor activation of the protein kinase C pathway.
NHE3很可能是参与肾脏重吸收HCO3-和Na+的同种型。迄今为止,使用非上皮表达系统研究了“克隆的”NHE3同种型的功能特性,包括其受细胞外和细胞内刺激的转运调节。在本报告中,我们将NHE3 cDNA(兔同种型)稳定转染到Madin-Darby犬肾细胞(MDCK)中,并比较了NHE3转染细胞中对抑制剂的敏感性以及血管催产素对Na+/H+交换体的调节与未转染和对照转染的MDCK细胞中固有基底外侧Na+/H+交换体的调节情况。通过Southern印迹分析,我们证明NHE3转录本在NHE3转染细胞中表达。使用2',7'-双(羧甲基)-5(6)-羧基荧光素(BCECF)通过酸负荷后钠依赖性细胞内pH恢复来测量的Na+/H+交换活性在所有细胞系的基底外侧细胞表面均同样存在;然而,NHE3转染细胞在顶膜上表现出的转运活性明显高于未转染或对照转染的MDCK细胞。用乙基异丙基氨氯吡脒(EIPA)进行的研究表明,转染和未转染的MDCK细胞系中对顶膜和/或基底外侧Na+/H+交换体抑制剂的敏感性相似。相反,发现NHE3转染细胞的顶膜Na+/H+交换体(与基底外侧Na+/H+交换体相比)对抑制剂HOE 694相对不敏感。血管催产素降低NHE3转染细胞中顶膜Na+/H+交换体的活性,并刺激转染(用NHE3或pMAMneo)和未转染的MDCK细胞中基底外侧Na+/H+交换体的活性。如预期的那样,佛波酯增加了所有细胞系基底外侧膜中Na+/H+交换体的活性;此外,它刺激了NHE3转染细胞顶膜表面的转运活性。在使用8-溴-cAMP的研究中未观察到Na+/H+交换活性的变化。蛋白激酶C抑制剂钙泊三醇C完全抑制了血管催产素对顶膜和/或基底外侧Na+/H+交换体的调节,它部分阻断了佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA)对NHE3转染细胞中顶膜Na+/H+交换体的激活,并完全阻断了PMA对基底外侧Na+/H+交换体的刺激。与V1受体作用一致,血管催产素在NHE3转染细胞和MDCK细胞中的作用被V1受体拮抗剂d(CH2)5Tyr(Me)-AVP阻断,但未被V2受体激动剂去氨加压素重现。结论是,NHE3转染的MDCK细胞顶膜中的NHE3有助于血管催产素对顶膜和基底外侧Na+/H+交换体的差异调节;血管催产素通过蛋白激酶C途径的V1受体激活抑制NHE3并刺激内源性Na+/H+交换活性。