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Am J Physiol Regul Integr Comp Physiol 279: R69-R76, 2000;
0363-6119/00 $5.00
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Vol. 279, Issue 1, R69-R76, July 2000

Osmolyte channel regulation by ionic strength in skate RBC

Kathleen A. Wittels1,3, Elise M. Hubert1,3, Mark W. Musch2,3, and Leon Goldstein1,3

1 Division of Biology and Medicine, Brown University, Providence, Rhode Island 02912; 2 The Inflammatory Bowel Disease Research Center, The University of Chicago, Chicago, Illinois 60627; and 3 The Mount Desert Island Biological Laboratory, Salsbury Cove, Maine 04672

The aim of this study was to determine whether the opening of the osmolyte channel in skate red blood cells (RBC) is regulated by intracellular electrolyte concentration and conductivity. Consistent with previous studies, experiments with hyperosmotic preincubation before cell swelling or swelling with an isosmotic electrolyte (e.g., ammonium chloride) showed that an increase in ionic strength inhibits the opening of the taurine channel. However, a decrease in intracellular ionic strength did not always stimulate taurine efflux to the same degree. Whereas hyposmotic swelling caused a large increase in taurine efflux, swelling induced by treatment with isosmotic nonelectrolytes produced much smaller stimulation. Results with assays for band 3 phosphorylating enzymes were consistent with those from the taurine efflux studies; stimulation of enzyme activity was lower in cells that were swollen with isosmotic nonelectrolyte media than in cells swollen in hyposmotic media. These results indicate that a decrease in ionic strength is not the only signal for the opening of the taurine channel in skate RBC. Ionic strength does affect channel activity, but there must also be some other regulator.

cell volume regulation; taurine; protein kinases


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[Abstract] [Full Text] [PDF]




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