The intracellular dialysis technique was used to measure unidirectional Cl- fluxes and net acid extrusion by single muscle fibers from the giant barnacle. Decreasing pHi below normal levels of 7.35 stimulated both Cl- efflux and influx. These increases of Cl- fluxes were blocked by disulfonic acid stilbene derivatives such as SITS and DIDS. The SITS-sensitive Cl- efflux was sharply dependent upon pHi, increasing approximately 20-fold as pHi was decreased from 7.35 to 6.7. Under conditions of normal intracellular Mg2+ concentration, the apparent pKa for the activation of Cl- efflux was 7.0. We found that raising [Mg2+]i, but not [Mg2+]o, had a pronounced inhibitory effect on both SITS-sensitive unidirectional Cl- fluxes as well as on SITS-sensitive net acid extrusion. Increasing [Mg2+]i shifted the apparent pKa of Cl- efflux to a more acid value without affecting the maximal flux that could be attained. This relation between pHi and [Mg2+]i on SITS-sensitive Cl- efflux is consistent with a competition between H ions and Mg ions. We conclude that the SITS-inhibitable Cl- fluxes are mediated by the pHi-regulatory transport mechanism and that changes of intracellular Mg2+ levels can modify the activity of the pHi regulator/anion transporter.
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1 April 1988
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April 01 1988
The interaction of intracellular Mg2+ and pH on Cl- fluxes associated with intracellular pH regulation in barnacle muscle fibers.
J M Russell,
J M Russell
Department of Physiology and Biophysics, University of Texas Medical Branch, Galveston 77550.
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M S Brodwick
M S Brodwick
Department of Physiology and Biophysics, University of Texas Medical Branch, Galveston 77550.
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J M Russell
Department of Physiology and Biophysics, University of Texas Medical Branch, Galveston 77550.
M S Brodwick
Department of Physiology and Biophysics, University of Texas Medical Branch, Galveston 77550.
Online ISSN: 1540-7748
Print ISSN: 0022-1295
J Gen Physiol (1988) 91 (4): 495–513.
Citation
J M Russell, M S Brodwick; The interaction of intracellular Mg2+ and pH on Cl- fluxes associated with intracellular pH regulation in barnacle muscle fibers.. J Gen Physiol 1 April 1988; 91 (4): 495–513. doi: https://doi.org/10.1085/jgp.91.4.495
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