Seki G, Coppola S, Frömter E
Zentrum der Physiologie, Klinikum der Johann Wolfgang Goethe Universität, Frankfurt/Main, Germany.
Pflugers Arch. 1993 Dec;425(5-6):409-16. doi: 10.1007/BF00374866.
All the relevant literature reports indicate that net rates of salt and water absorption and cell membrane potentials (Vb) are lower, but intracellular Na+ concentration is higher in rabbit renal proximal tubule in vitro than in rat proximal tubule in vivo. Since the different driving forces should influence basolateral Na(+)-HCO3- cotransport we have studied the operation of the cotransporter in isolated rabbit renal proximal tubule in vitro with special emphasis on the stoichiometry of flux coupling (q). Using conventional and ion-selective intracellular microelectrodes three series of experiments were performed: (a) we determined the Vb response to a 2:1 reduction of bath HCO3- or Na+ concentration, (b) we determined initial efflux rates of HCO3- or Na+ ions in response to a sudden 10:1 reduction of bath HCO3- concentration, and (c) we collapsed the tubules and determined electrochemical driving forces of Na+ and HCO3- across the basolateral cell membrane under conditions approaching zero net flux in the control state in the presence of Ba2+- and in Cl(-)-free solutions. All measurements concurrently yielded a coupling ratio of approximately two HCO3- ions to one Na+ ion (q = 2). This result contrasts with the ratio q = 3, which we have previously observed in similar experiments on rat renal proximal tubule in vivo [Yoshitomi et al. (1985) Pflügers Arch 405:360] and which was also observed on rabbit renal basolateral cell membrane vesicles in vitro [Soleimani et al. (1987) J Clin Invest 79:1276].(ABSTRACT TRUNCATED AT 250 WORDS)
所有相关文献报道表明,体外培养的兔肾近端小管中盐和水的净吸收率以及细胞膜电位(Vb)较低,但细胞内钠离子浓度高于体内大鼠近端小管。由于不同的驱动力会影响基底外侧Na(+)-HCO3-协同转运体,我们研究了体外分离的兔肾近端小管中该协同转运体的运作,特别强调通量耦合的化学计量比(q)。使用传统的和离子选择性细胞内微电极进行了三组实验:(a)我们测定了浴液中HCO3-或Na+浓度降低2:1时的Vb反应;(b)我们测定了浴液中HCO3-浓度突然降低10:1时HCO3-或Na+离子的初始流出率;(c)我们使小管塌陷,并在存在Ba2+和无Cl-的溶液中,在接近对照状态下零净通量的条件下,测定Na+和HCO3-跨基底外侧细胞膜的电化学驱动力。所有测量结果同时得出耦合比约为两个HCO3-离子对应一个Na+离子(q = 2)。这一结果与我们之前在体内大鼠肾近端小管的类似实验中观察到的q = 3的比例[Yoshitomi等人(1985年)《普弗吕格氏文献》405:360]以及在体外兔肾基底外侧细胞膜囊泡中观察到的比例[索莱马尼等人(1987年)《临床研究杂志》79:1276]形成对比。(摘要截短于250字)