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J. Biol. Chem., Vol. 263, Issue 35, 18607-18613, Dec, 1988
A Elgavish, JD Esko and A Knurr
Studies in Chinese hamster ovary cells demonstrate the presence of an anion
exchanger, which has some of the properties of the band 3 transporter in
erythrocytes. 1) Extracellular chloride is a competitive inhibitor of
sulfate influx and stimulates sulfate efflux, suggesting that the mechanism
of uptake is SO2-(4)/Cl- exchange. 2) The anion exchange inhibitor
4,4'-diisothiocyanostilbene-2,2'-disulfonic acid inhibits sulfate uptake in
a dose-dependent manner. Half-maximal inhibition is achieved at 0.06 microM
4,4'-diisothiocyanostilbene-2,2'- disulfonic acid. 3) Low extracellular pH
markedly stimulates sulfate uptake. A 6-fold decrease in the apparent Km is
observed at pHout 5.5 as compared to pHout 7.5. However, studies carried
out over a broad range of extracellular SO2-(4) concentrations indicate the
presence of three components of this transport activity in Chinese hamster
ovary cells: two high affinity low capacity systems, one in the range 0.5
microM less than [SO2-(4)]out less than 50 microM and one in the range 50
microM less than [SO2-(4)]out less than 150 microM, and a low affinity,
high capacity system (at [SO2-(4)]out greater than 150 microM). These
properties have not been previously reported for the erythroid band 3
transporter. The availability of mutants deficient in these activities has
enabled us to carry out studies which suggest that the high affinity
systems are functionally independent of the low affinity system, but that
all systems are dependent on the same anion exchange protein. Studies in a
mutant which lacks all components of the transport activity indicates that
the anion exchanger may be instrumental in the regulation of the
intracellular pH in Chinese hamster ovary cells.
Chinese hamster ovary cell mutants deficient in an anion exchanger functionally similar to the erythroid band 3
Department of Pharmacology, School of Medicine, University of Alabama, Birmingham 35294.
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