Literature DB >> 2539743

Multiple transport systems for organic cations in renal brush-border membrane vesicles.

Y Miyamoto1, C Tiruppathi, V Ganapathy, F H Leibach.   

Abstract

The characteristics of guanidine uptake in brush-border membrane vesicles isolated from rabbit renal cortex were investigated. Guanidine uptake was markedly stimulated by an outwardly directed H+ gradient, resulting in a transient uphill transport. This stimulation was not due to an inside-negative, H+-diffusion potential because an ionophore-induced H+-diffusion potential and a K+-diffusion potential (both inside-negative) failed to enhance guanidine uptake. The H+ gradient itself appeared to be the driving force for the uptake. These data suggest that guanidine-H+ antiport (or guanidine-OH- symport) is the mechanism of guanidine uptake in these membrane vesicles. Guanidine uptake was only minimally inhibited by organic cations such as tetraethylammonium, N1-methylnicotinamide, and choline, but many other organic cations such as amiloride, clonidine, imipramine, and harmaline caused considerable inhibition. Uptake of radiolabeled guanidine was inhibited more effectively by guanidine than by tetraethylammonium, whereas uptake of radiolabeled tetraethylammonium was inhibited more effectively by tetraethylammonium than by guanidine. beta-Lactam antibiotics did not inhibit guanidine uptake but did inhibit tetraethylammonium uptake. Kinetic analysis showed that there were at least two kinetically distinct carrier systems for guanidine uptake, whereas tetraethylammonium uptake occurred via a single carrier system. These data provide evidence that renal brush-border membranes possess multiple carrier systems for organic cations.

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Year:  1989        PMID: 2539743     DOI: 10.1152/ajprenal.1989.256.4.F540

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  9 in total

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3.  Guanidine transport in a human choriocarcinoma cell line (JAR).

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Authors:  J K Chun; L Zhang; M Piquette-Miller; E Lau; L Q Tong; K M Giacomini
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5.  Transport of beta-lactam antibiotics in kidney brush border membrane. Determinants of their affinity for the oligopeptide/H+ symporter.

Authors:  H Daniel; S A Adibi
Journal:  J Clin Invest       Date:  1993-11       Impact factor: 14.808

6.  Membrane transporters in drug disposition.

Authors:  K M Giacomini
Journal:  J Pharmacokinet Biopharm       Date:  1997-12

7.  Contraluminal transport of organic cations in the proximal tubule of the rat kidney. I. Kinetics of N1-methylnicotinamide and tetraethylammonium, influence of K+, HCO3-, pH; inhibition by aliphatic primary, secondary and tertiary amines and mono- and bisquaternary compounds.

Authors:  K J Ullrich; F Papavassiliou; C David; G Rumrich; G Fritzsch
Journal:  Pflugers Arch       Date:  1991-08       Impact factor: 3.657

8.  Luminal transport system for H+/organic cations in the rat proximal tubule. Kinetics, dependence on pH; specificity as compared with the contraluminal organic cation-transport system.

Authors:  C David; G Rumrich; K J Ullrich
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9.  Effect of probenecid on tetraethyl ammonium (TEA) transport across basolateral membrane of rabbit proximal tubule.

Authors:  T L Choi; Y K Kim
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  9 in total

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