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兔肾皮质刷状缘膜囊泡中电中性氯转运的证据。

Evidence for electroneutral chloride transport in rabbit renal cortical brush border membrane vesicles.

作者信息

Shiuan D, Weinstein S W

出版信息

Am J Physiol. 1984 Nov;247(5 Pt 2):F837-47. doi: 10.1152/ajprenal.1984.247.5.F837.

Abstract

Controversial evidence exists as to whether electroneutral Cl-OH exchange occurs across the proximal tubular brush border membrane of the mammalian kidney. To help resolve this controversy, we carried out a series of experiments using rabbit renal cortical brush border membrane vesicles to determine the effect of changes in pH on 36Cl uptake across this membrane. Reducing pH equally inside and outside of the vesicle stimulated Cl-Cl exchange as well as chloride uptake. A proton gradient (out greater than in) stimulated and caused an overshoot in unidirectional Cl uptake. All three of these processes were inhibited by 4-acetoamido-4-isothiocyano-2,2-disulfonic stilbene. Valinomycin with K+ out-in added to shunt any proton diffusion potential, minimally inhibited pH gradient-dependent Cl uptake, and carbonyl cyanide p-trifluoro-methoxyphenyl hydrazone (FCCP), added to increase the proton diffusion potential, minimally stimulated pH gradient-dependent Cl uptake. Sodium-glucose cotransport (an electrogenic system) was used to assess the efficacy of these ionophores. FCCP markedly enhanced and valinomycin markedly inhibited pH gradient stimulated sodium-glucose cotransport. Valinomycin added to vesicles with a 180/0 meq K+ out greater than in gradient stimulated less Cl uptake than a 6.0/7.5 pH out greater than in gradient. We conclude that these results provide strong evidence for the existence of an electroneutral Cl-OH exchanger or Cl-H symporter in this membrane.

摘要

关于电中性的Cl⁻-OH交换是否发生在哺乳动物肾脏近端小管刷状缘膜上,存在有争议的证据。为了帮助解决这一争议,我们使用兔肾皮质刷状缘膜囊泡进行了一系列实验,以确定pH变化对该膜上³⁶Cl摄取的影响。使囊泡内外的pH同等降低会刺激Cl⁻-Cl⁻交换以及氯离子摄取。质子梯度(外侧大于内侧)会刺激并导致单向Cl⁻摄取出现过冲。所有这三个过程都受到4-乙酰氨基-4-异硫氰基-2,2-二磺酸芪的抑制。添加缬氨霉素并使K⁺外流-内流以分流任何质子扩散电位,对pH梯度依赖性Cl⁻摄取的抑制作用最小,而添加羰基氰化物对三氟甲氧基苯基腙(FCCP)以增加质子扩散电位,对pH梯度依赖性Cl⁻摄取的刺激作用最小。钠-葡萄糖共转运(一种生电系统)用于评估这些离子载体的功效。FCCP显著增强而缬氨霉素显著抑制pH梯度刺激的钠-葡萄糖共转运。向具有180/0 meq K⁺外流大于内流梯度的囊泡中添加缬氨霉素所刺激的Cl⁻摄取比6.0/7.5 pH外侧大于内侧梯度时少。我们得出结论,这些结果为该膜中存在电中性的Cl⁻-OH交换体或Cl⁻-H⁺共转运体提供了有力证据。

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