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The permeability of the human red blood cell to sulfate ions
1II. Physiologisches Institut der Universität des Saarlandes, 665, Homburg (Saar), Germany.
Abstract:
Sulfate permeability was measured at Donnan equilibrium as a function of three variables, the sulfate, chloride, and hydrogen ion concentration in the medium. The data were used for a quantitative evaluation of a number of typical predictions of a fixed charge model of the ion permeable regions of the red blood cell membrane. It could be shown that more than 1,000-fold variations of sulfate flux,[Formula: see text], could be represented as a function of a single variable SO 4m (2-) , the sulfate concentration in the membrane. SO 4m (2-) was calculated from the measured values of all three variables by means of a previously published equation (Passow,Progress in Biophysics and Molecular Biology, vol. 19, pt. II, pp. 425-467, 1969). In this equation, two constants can be arbitrarily chosen:Ā, the sum of the charged and uncharged forms of dissociable fixed charges, andK, the dissociation constant of the fixed charges. For the present calculations, the previously obtained valuesĀ=2.5 andK=1·10(-9) were used. The resulting relationship between[Formula: see text] and SO 4m (2-) was found to obey the equation[Formula: see text] wherec I=1.62·10(-9),c II=2.3·10(-2),a=4.94 gave the best fit for data obtained at 27°C. The exponential increase of[Formula: see text] with SO 4m (2-) suggests that there exists a cooperative facilitation of sulfate flux with increasing SO 4m (2-) . Measurements of the apparant activation energy of sulfate flux yielded a value of 32.7 Kcal/mole. This value was independent of the pH at which the measurements were made.
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