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在非洲爪蟾卵母细胞中表达的比目鱼II型钠/磷酸盐共转运体(NaPi-5)的电生理特性

Electrophysiological characterization of the flounder type II Na+/Pi cotransporter (NaPi-5) expressed in Xenopus laevis oocytes.

作者信息

Forster I C, Wagner C A, Busch A E, Lang F, Biber J, Hernando N, Murer H, Werner A

机构信息

Institute of Physiology, University of Zurich, Switzerland.

出版信息

J Membr Biol. 1997 Nov 1;160(1):9-25. doi: 10.1007/s002329900291.

Abstract

The two electrode voltage clamp technique was used to investigate the steady-state and presteady-state kinetic properties of the type II Na+/Pi cotransporter NaPi-5, cloned from the kidney of winter flounder (Pseudopleuronectes americanus) and expressed in Xenopus laevis oocytes. Steady-state Pi-induced currents had a voltage-independent apparent K(m) for Pi of 0.03 mM and a Hill coefficient of 1.0 at neutral pH, when superfusing with 96 mM Na+. The apparent K(m) for Na+ at 1 mM Pi was strongly voltage dependent (increasing from 32 mM at -70 mV to 77 mM at -30 mV) and the Hill coefficient was between 1 and 2, indicating cooperative binding of more than one Na+ ion. The maximum steady-state current was pH dependent, diminishing by 50% or more for a change from pH 7.8 to pH 6.3. Voltage jumps elicited presteady-state relaxations in the presence of 96 mM Na+ which were suppressed at saturating Pi (1 mM). Relaxations were absent in non-injected oocytes. Charge was balanced for equal positive and negative steps, saturated at extremes of potential and reversed at the holding potential. Fitting the charge transfer to a Boltzmann relationship typically gave a midpoint voltage (V0.5) close to zero and an apparent valency of approximately 0.6. The maximum steady-state transport rate correlated linearly with the maximum Pi-suppressed charge movement, indicating that the relaxations were NaPi-5-specific. The apparent transporter turnover was estimated as 35 sec-1. The voltage dependence of the relaxations was Pi-independent, whereas changes in Na+ shifted V0.5 to -60 mV at 25 mM Na+. Protons suppressed relaxations but contributed to no detectable charge movement in zero external Na+. The voltage dependent presteady-state behavior of NaPi-5 could be described by a 3 state model in which the partial reactions involving reorientation of the unloaded carrier and binding of Na+ contribute to transmembrane charge movement.

摘要

采用双电极电压钳技术,研究了从冬鲽(美洲拟庸鲽)肾脏克隆并在非洲爪蟾卵母细胞中表达的II型Na⁺/Pi共转运体NaPi-5的稳态和前稳态动力学特性。当用96 mM Na⁺灌注时,在中性pH条件下,稳态Pi诱导电流对Pi的电压非依赖性表观K(m)为0.03 mM,希尔系数为1.0。在1 mM Pi时,Na⁺的表观K(m)强烈依赖电压(从-70 mV时的32 mM增加到-30 mV时的77 mM),希尔系数在1到2之间,表明有多个Na⁺离子的协同结合。最大稳态电流依赖于pH,从pH 7.8变化到pH 6.3时减少50%或更多。在96 mM Na⁺存在下,电压阶跃引发前稳态弛豫,在饱和Pi(1 mM)时被抑制。未注射的卵母细胞中没有弛豫现象。对于相等的正向和负向阶跃,电荷是平衡的,在电位极值处饱和,并在保持电位处反转。将电荷转移拟合到玻尔兹曼关系通常得到一个接近零的中点电压(V0.5)和大约0.6的表观价态。最大稳态转运速率与最大Pi抑制的电荷移动呈线性相关,表明弛豫是NaPi-5特异性的。表观转运体周转数估计为35 s⁻¹。弛豫的电压依赖性与Pi无关,而Na⁺的变化在25 mM Na⁺时将V0.5移至-60 mV。质子抑制弛豫,但在零外部Na⁺时不产生可检测的电荷移动。NaPi-5的电压依赖性前稳态行为可以用一个三态模型来描述,其中涉及卸载载体重新定向和Na⁺结合的部分反应对跨膜电荷移动有贡献。

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