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PMID: 3034881 Published · ppublish English Journal Article

Inhibition of Na+-H+ exchange by N,N'-dicyclohexylcarbodiimide in isolated rat renal brush border membrane vesicles.

The Journal of biological chemistry ·Vol. 262 ·No. 15 ·1987-05-25 ·Pages 7092-7

Kinsella JL, Wehrle J, Wilkins N, Sacktor B

Abstract

The inactivation of rat renal brush border membrane Na+-H+ exchange by the covalent carboxylate reagent N,N'-dicyclohexylcarbodiimide (DCCD) was studied by measuring 1 mM Na+ influx in the presence of a pH gradient (pHi = 5.5; pHo = 7.5) and H+ influx in the presence of a Na+ or Li+ gradient ([Na+]i = 150 mM; [Na+]o = 1.5 mM). In the presence of DCCD, the rate of Na+ uptake decreased exponentially with time and transport inhibition was irreversible. At all DCCD concentrations the loss of activity was described by a single exponential, consistent with one critical DCCD-reactive residue within the Na+-H+ exchanger. Among several carbodiimides the most hydrophobic carbodiimide, DCCD, was also the most effective inhibitor of Na+-H+ exchange. With 40 nmol of DCCD/mg of protein, at 20 degrees C for 30 min, 75% of the amiloride-sensitive 1 mM Na+ uptake was inhibited. Neither the equilibrium Na+ content nor the amiloride-insensitive Na+ uptake was significantly altered by the treatment. The Na+-dependent H+ flux, measured by the change in acridine orange absorbance, was also decreased 80% by the same DCCD treatment. If 150 mM NaCl, 150 mM LiCl, or 1 mM amiloride was present during incubation of the brush border membranes with 40 nmol of DCCD/mg of protein, then Li+-dependent H+ flux was protected 50, 100, or 100%, respectively, compared to membranes treated with DCCD in the absence of Na+-H+ exchanger substrates. The combination of DCCD and an exogenous nucleophile, e.g. ethylenediamine and glycine methyl ester, increased Na+-dependent H+ flux in the presence of 80 nmol of DCCD/mg of protein, compared to the transport after DCCD treatment alone. These findings suggest that the Na+-H+ exchanger contains a single carboxylate residue in a hydrophobic region of the protein, and the carboxylate and/or a nearby endogenous nucleophilic group is critical for exchange activity.

MeSH Terms
Amiloride/pharmacology Animals Biological Transport/drug effects Carbodiimides/pharmacology Carrier Proteins/antagonists & inhibitors Dicyclohexylcarbodiimide/pharmacology Hydrogen-Ion Concentration Kidney/drug effects,metabolism Kinetics Lithium/pharmacology Microvilli/drug effects,metabolism Protons Rats Sodium/metabolism,pharmacology Sodium-Hydrogen Exchangers
Chemicals
Carbodiimides Carrier Proteins Protons Sodium-Hydrogen Exchangers Dicyclohexylcarbodiimide Amiloride Lithium Sodium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Kinsella J L
Wehrle J
Wilkins N
Sacktor B
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1987-05-25
Pages
7092-7
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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