Busch A, Waldegger S, Herzer T, Biber J, Markovich D, Hayes G, Murer H, Lang F
Institute of Physiology I, Eberhard-Karls-Universität Tübingen, Germany.
Proc Natl Acad Sci U S A. 1994 Aug 16;91(17):8205-8. doi: 10.1073/pnas.91.17.8205.
Phosphate (Pi) reabsorption in renal proximal tubules involves Na+/Pi cotransport across the brush border membrane; its transport rate is influenced by the Na(+)-coupled transport of other solutes as well as by pH. In the present study, we have expressed a cloned rat renal brush border membrane Na+/Pi cotransporter (NaPi-2) in Xenopus laevis oocytes and have analyzed its electrophysiologic properties in voltage- and current-clamp studies. Addition of Pi to Na(+)-containing superfusates resulted in a depolarization of the membrane potential and, in voltage-clamped oocytes, in an inward current (IP). An analysis of the Na+ and/or Pi concentration dependence of IP suggested a Na+/Pi stoichiometry of 3:1. IP was increased by increasing the pH of the superfusate; this phenomenon seems to be mainly related to a lowering of the affinity for Na+ interaction by increasing H+ concentration. The present data suggest that known properties of Pi handling at the tubular/membrane level are "directly" related to specific characteristics of the transport molecule (NaPi-2) involved.
肾近端小管中的磷酸盐(Pi)重吸收涉及通过刷状缘膜的Na⁺/Pi协同转运;其转运速率受其他溶质的Na⁺偶联转运以及pH的影响。在本研究中,我们已在非洲爪蟾卵母细胞中表达了克隆的大鼠肾刷状缘膜Na⁺/Pi协同转运蛋白(NaPi-2),并在电压钳和电流钳研究中分析了其电生理特性。向含Na⁺的灌流液中添加Pi导致膜电位去极化,并且在电压钳制的卵母细胞中产生内向电流(IP)。对IP的Na⁺和/或Pi浓度依赖性分析表明Na⁺/Pi化学计量比为3:1。通过提高灌流液的pH可增加IP;这种现象似乎主要与通过增加H⁺浓度降低对Na⁺相互作用的亲和力有关。目前的数据表明,在肾小管/膜水平上已知的Pi处理特性与所涉及的转运分子(NaPi-2)的特定特征“直接”相关。