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琥珀酸盐和柠檬酸盐在肾基底外侧膜和刷状缘膜中的转运。

Succinate and citrate transport in renal basolateral and brush-border membranes.

作者信息

Wright S H, Wunz T M

出版信息

Am J Physiol. 1987 Sep;253(3 Pt 2):F432-9. doi: 10.1152/ajprenal.1987.253.3.F432.

Abstract

Properties of the Na-dependent transport of succinate and citrate were determined in brush-border and basolateral membrane vesicles (BBMV and BLMV, respectively) isolated from the rabbit renal cortex. As has been shown in previous studies, the initial rate of uptake of these substrates into BBMV was markedly stimulated (50- to 150-fold) by an inwardly directed Na gradient. In BLMV, uptake of 5 microM succinate was also stimulated (150-fold) by a Na gradient, and the profile of the time course of accumulation was qualitatively and quantitatively different from that in BBMV. In contrast, basolateral uptake of 2 microM citrate was stimulated only one- to fivefold by a Na gradient. The external pH had little effect on uptake of succinate into BBMV or BLMV, or on uptake of citrate into BLMV. Uptake of citrate into BBMV, however, was stimulated 10-fold by reducing external pH from 8 to 5.5. Valinomycin-induced K diffusion potentials stimulated succinate uptake into BBMV and BLMV, suggesting that Na-coupled succinate transport across both membranes is electrogenic. The Jmax and apparent Kt for uptake into BBMV were much greater than those in BLMV (90 vs. 5 nmol X mg-1 X min-1 and 0.61 vs. 0.01 mM, respectively). Inhibition of succinate uptake by several polycarboxylates suggested that the BLMV transporter had a higher apparent affinity for dicarboxylates than for tricarboxylates, compared with the BBMV transporter. We conclude that BLMV possess a low-capacity, high-affinity Na-dependent transport pathway showing a high degree of specificity for dicarboxylic, rather than tricarboxylic, acids.

摘要

从兔肾皮质分离出的刷状缘膜囊泡和基底外侧膜囊泡(分别为BBMV和BLMV)中,测定了琥珀酸和柠檬酸的钠依赖性转运特性。如先前研究所示,内向的钠梯度可显著刺激这些底物进入BBMV的初始摄取速率(50至150倍)。在BLMV中,5微摩尔琥珀酸的摄取也受到钠梯度的刺激(150倍),其积累的时间进程曲线在定性和定量上与BBMV中的不同。相比之下,2微摩尔柠檬酸的基底外侧摄取仅受到钠梯度1至5倍的刺激。外部pH对琥珀酸进入BBMV或BLMV的摄取,或柠檬酸进入BLMV的摄取影响很小。然而,将外部pH从8降至5.5可使柠檬酸进入BBMV的摄取增加10倍。缬氨霉素诱导的钾扩散电位刺激了琥珀酸进入BBMV和BLMV的摄取,表明跨这两种膜的钠偶联琥珀酸转运是生电的。进入BBMV的Jmax和表观Kt远大于BLMV中的(分别为90对5纳摩尔·毫克⁻¹·分钟⁻¹和0.61对0.01毫摩尔)。几种多羧酸盐对琥珀酸摄取的抑制作用表明,与BBMV转运体相比,BLMV转运体对二羧酸盐的表观亲和力高于对三羧酸盐的表观亲和力。我们得出结论,BLMV具有低容量、高亲和力的钠依赖性转运途径,对二羧酸而非三羧酸表现出高度特异性。

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