By Jose A. Zadunaisky
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H. Maddy. J. Gen. Physiol. 58: 190-210, 1971. A fluorescent label for the outer components of Study of the Anion Transport Protein in the Red Cell Membrane the plasma membrane. Biochem. 27 Biophys. Acta 88: 390-399, 1964. 9. M. K. Ho and G. A. Guidotti. A membrane protein from human erythrocytes involved in anion exchange. J. Biol. Chem. 250: 675-685, 1975. 10. Ζ. I. Cabantchik and A. Rothstein. Membrane proteins related to anion permeability of human red blood cells. I. Localization of disulfonic stilbene binding sites in proteins involved in permeation.
It may be that the mechanism is ping-pong and the lower values of V max-out /ο χ. 1/2-out a t lower Cl. are fortuitous. in the mechanism is sequential with a very low It may be that J value so that we have only collected data at internal chloride concentrations at which the curve is nearly saturated. But what does it mean for a sequential mechanism to have a small value of B^7 One possible way for B^ to be small is for the off-reaction described by either ic ^ or Jc 2 to be very slow relative to the other, as can be seen in the footnote to Table II.
Scorah, H. Fasold, and H. Passow. Sideness of the inhibitory action of disulfonic acids on chloride equibrium exchange and net transport across the human erythrocyte membrane. 41. FEBS Letters H. Passow and L. Zaki. 62: 182-185, 1976. Studies on the molecular mechanism of anion transport across the red blood cell membrane. In "Molecular Specialization and Symmetry in Membrane Function," (A. K. Solomon and M. Karnovsky, e d s . ) . and London, England. Cambridge, Mass. Harvard University Press, 1978: 229- 250.
Chloride Transport in Biological Membranes by Jose A. Zadunaisky