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Citations to this article

Chloride Uptake by Brush Border Membrane Vesicles Isolated from Rabbit Renal Cortex: COUPLING TO PROTON GRADIENTS AND K+ DIFFUSION POTENTIALS
David G. Warnock, Victoria J. Yee
David G. Warnock, Victoria J. Yee
Published January 1, 1981
Citation Information: J Clin Invest. 1981;67(1):103-115. https://doi.org/10.1172/JCI110002.
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Chloride Uptake by Brush Border Membrane Vesicles Isolated from Rabbit Renal Cortex: COUPLING TO PROTON GRADIENTS AND K+ DIFFUSION POTENTIALS

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Abstract

Brush border membrane vesicles were isolated from rabbit renal cortex by Mg++-precipitation and differential centrifugation. 36Cl− and [3H]glucose uptakes were simultaneously determined by a rapid filtration technique. Lysis of the vesicles with distilled water abolished 90-95% of the radioactivity on the filters, suggesting that nearly all of the 36Cl− and [3H]glucose counts represented uptake into an osmotically reactive intravesicular space. Inwardly directed K+ gradients plus valinomycin stimulated 36Cl− uptake, demonstrating a conductive pathway for chloride uptake into brush-border membrane vesicles. 36Cl− uptake could also be stimulated by inwardly directed proton gradients (pHoutside < pHinside). This effect was seen in the absence of sodium, as well as in the presence of valinomycin when the vesicles had equal K+ concentrations inside and out. An “overshoot” phenomenon was observed when external 36Cl− was 2 mM and the external pH was lowered from 7.5 to 6.0 or to 4.5. The effect of the proton gradient was presumed to be different from the conductive mechanism because (a) the stimulation of 36Cl− uptake by inwardly directed K+ diffusion potentials was additive to the proton gradient effect, and (b) competition studies revealed statistically significant effects of thiocyanate on the conductive pathway, but not on the proton-driven pathway.

Authors

David G. Warnock, Victoria J. Yee

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Total citations by year

Year: 2016 2014 2013 2012 2010 2009 2007 2006 2004 2003 2002 2001 1998 1997 1996 1994 1993 1992 1991 1990 1989 1988 1987 1986 1985 1984 1983 1982 1981 1978 Total
Citations: 1 1 1 5 2 1 1 2 2 1 2 3 1 2 2 2 3 1 5 1 8 4 6 5 2 6 4 13 1 1 89
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