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Effect of sulfhydryl compounds on ATP-stimulated H+ transport and Cl- uptake in rabbit renal cortical endosomes.

作者信息

Hilden S A, Madias N E

机构信息

Department of Medicine, Tufts University School of Medicine, Boston, Massachusetts.

出版信息

J Membr Biol. 1991 Nov;124(2):139-49. doi: 10.1007/BF01870458.

DOI:10.1007/BF01870458
PMID:1662284
Abstract

The vacuolar H+ ATPase is inhibited by N-ethylmaleimide (NEM), a sulfhydryl compound, suggesting the involvement of a sulfhydryl group in this transport process. We have examined the effects of several sulfhydryl-containing compounds on the vacuolar H+. ATPase of rabbit renal cortical endosomes. A number of such compounds were effective inhibitors of endosomal H+ transport at 10(-5)-10(-6) M, including NEM, mersalyl, aldrithiol, 5,5' dithiobis (2-nitrobenzoic acid), p-chloromercuribenzoic acid (PCMB) and p-chloromercuriphenyl sulfonic acid (PCMBS). NEM, mersalyl, aldrithiol and PCMBS had no effect on pH-gradient dissipation, whereas PCMB decreased the pH gradient faster than control. In the absence of ATP, PCMB (10(-4) M) stimulated endosomal 36Cl- uptake, particularly in the presence of an inside-alkaline pH gradient (pHin = 7.6/pHout = 5.5). This result was not an effect of PCMB on the Cl(-)-conductive pathway. The less permeable PCMBS did not stimulate 36Cl- uptake. The effects of PCMB were concentration dependent and were prevented by dithioerithritol. ATP-dependent 36Cl- uptake was decreased by addition of PCMB. Finally, PCMB had no effect on 45Ca2+ uptake. These results support the presence of two functionally important sulfhydryl groups in this endosomal preparation. One such group is involved with ATP-driven H+ transport and must be located on the cytoplasmic surface of the endosomal membrane. The second sulfhydryl group must reside on the internal surface of the endosomal membrane and relates to a PCMB-activated Cl-/OH- exchanger that is functional both in the presence and absence of ATP. This endosomal transporter is similar to the PCMB-activated Cl-/OH- exchanger recently described in rabbit renal brush-border membranes.

摘要

相似文献

1
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2
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本文引用的文献

1
Chloride uptake by brush border membrane vesicles isolated from rabbit renal cortex. Coupling to proton gradients and K+ diffusion potentials.从兔肾皮质分离的刷状缘膜囊泡对氯离子的摄取。与质子梯度和钾离子扩散电位的偶联。
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2
Mechanism of Cl- translocation across small intestinal brush-border membrane. II. Demonstration of Cl--OH- exchange and Cl- conductance.氯离子跨小肠刷状缘膜转运的机制。II. 氯离子-氢氧根离子交换及氯离子电导的证明
Am J Physiol. 1982 Mar;242(3):G272-80. doi: 10.1152/ajpgi.1982.242.3.G272.
3
Sodium uptake mechanisms in brush-border membrane vesicles prepared from rabbit renal cortex.
从兔肾皮质制备的刷状缘膜囊泡中的钠摄取机制。
Biochim Biophys Acta. 1982 Jan 4;684(1):137-40. doi: 10.1016/0005-2736(82)90058-x.
4
Absence of Cl- -OH- or Cl- -HCO3- exchange in the rabbit renal proximal tubule.
Am J Physiol. 1983 Oct;245(4):F462-9. doi: 10.1152/ajprenal.1983.245.4.F462.
5
Characterization of an essential disulfide bond associated with the active site of the renal brush-border membrane D-glucose transporter.与肾刷状缘膜D-葡萄糖转运体活性位点相关的一个必需二硫键的表征
Biochim Biophys Acta. 1984 Jan 11;769(1):23-32. doi: 10.1016/0005-2736(84)90005-1.
6
Effects of Cu2+-o-phenanthroline on gastric (H+ + K+)-ATPase. Evidence for opening of a closed anion conductance by S-S cross-linkings.铜离子-邻菲罗啉对胃(H⁺+K⁺)-ATP酶的影响。通过二硫键交联打开封闭阴离子通道的证据。
J Biol Chem. 1983 Mar 10;258(5):3094-8.
7
Evidence for electroneutral chloride transport in rabbit renal cortical brush border membrane vesicles.兔肾皮质刷状缘膜囊泡中电中性氯转运的证据。
Am J Physiol. 1984 Nov;247(5 Pt 2):F837-47. doi: 10.1152/ajprenal.1984.247.5.F837.
8
Absence of Cl-OH exchange and NaCl cotransport in rabbit renal microvillus membrane vesicles.兔肾微绒毛膜囊泡中不存在氯离子-羟基交换和氯化钠协同转运。
Am J Physiol. 1984 Nov;247(5 Pt 2):F753-9. doi: 10.1152/ajprenal.1984.247.5.F753.
9
Studies on the mechanism by which cyanine dyes measure membrane potential in red blood cells and phosphatidylcholine vesicles.关于花青染料测量红细胞和磷脂酰胆碱囊泡膜电位机制的研究。
Biochemistry. 1974 Jul 30;13(16):3315-30. doi: 10.1021/bi00713a022.
10
Mechanism of coupling between Cl- and OH- transport in renal brush-border membranes.
Biochim Biophys Acta. 1986 Dec 1;863(1):91-100. doi: 10.1016/0005-2736(86)90390-1.