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载体介导的四乙铵跨兔肾基底外侧膜的转运。

Carrier-mediated transport of tetraethylammonium across rabbit renal basolateral membrane.

作者信息

Montrose-Rafizadeh C, Mingard F, Murer H, Roch-Ramel F

机构信息

Institut de Pharmacologie, de l'Université de Lausanne, Switzerland.

出版信息

Am J Physiol. 1989 Aug;257(2 Pt 2):F243-51. doi: 10.1152/ajprenal.1989.257.2.F243.

Abstract

Mechanisms of tetraethylammonium (TEA) transport were investigated in basolateral membrane (BLM) vesicles from rabbit renal cortex. Preloading vesicles with 10 mM TEA or 1 mM mepiperphenidol stimulated the 15-s uptake of [14C]-TEA compared with control vesicles (258 and 200%, respectively) and produced an overshoot of the equilibrium value (3 and 1.6 times, respectively). In the presence of a K+ gradient, net TEA uptake was also increased (and showed an overshoot of 2-fold) when the membrane potential of vesicles was made interior negative by adding valinomycin. Both TEA-TEA exchange and the voltage-driven net TEA transport were cis-inhibited by other organic cations, and a similar affinity order was found for both transport mechanisms (quinine greater than amiloride greater than morphine greater than mepiperphenidol greater than choline = N1-methylnicotinamide). This data suggests that the same transport protein might be responsible for both phenomena. Other experiments determined that the BLM vesicles had no TEA-H+ exchange, and that contamination of the vesicle population by brush-border membranes was negligible in terms of their contribution to TEA transport. These results demonstrate the presence of an exchange reaction for TEA in the rabbit renal BLM and thus imply carrier-mediated transport of TEA by these membranes.

摘要

在兔肾皮质基底外侧膜(BLM)囊泡中研究了四乙铵(TEA)的转运机制。与对照囊泡相比,用10 mM TEA或1 mM美哌隆醇预加载囊泡刺激了[14C]-TEA的15秒摄取(分别为258%和200%),并使平衡值出现过冲(分别为3倍和1.6倍)。在存在K+梯度的情况下,当通过添加缬氨霉素使囊泡膜电位内负时,TEA的净摄取也增加(并显示出2倍的过冲)。TEA-TEA交换和电压驱动的TEA净转运都受到其他有机阳离子的顺式抑制,并且两种转运机制的亲和力顺序相似(奎宁大于阿米洛利大于吗啡大于美哌隆醇大于胆碱=N1-甲基烟酰胺)。这些数据表明,这两种现象可能由相同的转运蛋白负责。其他实验确定,BLM囊泡不存在TEA-H+交换,并且就其对TEA转运的贡献而言,刷状缘膜对囊泡群体的污染可以忽略不计。这些结果证明了兔肾BLM中存在TEA的交换反应,因此暗示这些膜通过载体介导TEA的转运。

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