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Original Article

Water Transport Across Red-Cell Membranes Following Reductive Methylation of the Major Transmembrane Protein, Band 3: Implications to Increased Divalent Cation Membrane Permeability

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Pages 107-116 | Received 30 May 1990, Accepted 01 Oct 1990, Published online: 09 Jul 2009

References

  • Alvarez A., Lee D.C., Baldwin S.A., Chapman D. Fourier transform infrared spectroscopic study of the structure and conformational changes of human erythrocyte glucose transporter. J. Biol. Chem. 1987; 262: 3502–3509
  • Benga G. Water transport in red blood cell membranes. Prog. Biophys. Molec. Biol. 1988; 51: 193–245
  • Brahm J. Diffusional water permeability of human erythrocytes and their ghosts. J. Gen. Physiol. 1982; 79: 791–819
  • Butterfield D.A., Shahabuddin M. Reductive methylation of membrane proteins in human erythrocyte ghosts. Biosci. Rep. 1982; 2: 235–239
  • Chao L.N., Shaffer L.M., Butterfield D.A. The effect of hematocrit on water transport across human erythrocyte membranes: A 1H-T2 NMR study. Prog. Clin. Biol. Res. 1989; 292: 45–52
  • Chao L.N., Butterfield D.A. The effects of the extracellular maganese concentration and variation of the interpulse delay time in the CPMG sequence on water exchange time across erythrocyte membranes. Biochim. Biophys. Acta 1990; 1028: 245–250
  • Conlon T., Outhred R. Water diffusion permeability of erythrocytes using an NMR technique. Biochim. Biophys. Acta 1972; 288: 354–361
  • Falke J.J., Chan S.I. Molecular mechanisms of Band 3 inhibitors, transport site inhibitors. Biochemistry 1986; 25: 7888–7894
  • Herbst M.D., Goldstein J.H. A review of water diffusion measurement by NMR in human red blood cells. Am. J. Physiol. 1989; 256: C1097–C1104
  • Jennings M.L. Reductive methylation of the two 4,4′-diisothiocyanodihydrostilbene-2,2′-disulfonate-binding lysine residues of Band 3, the human erythrocyte anion transport protein. J. Biol. Chem. 1982; 257: 7554–7559
  • Jennings M.L. Structure and function of the red blood cell anion transport protein. Annu. Rev. Biophys. Chem. 1989; 18: 397–430
  • Jones G.S., Knauf P.A. Mechanism of the increase in cation permeability of human erythrocytes in low-chloride media. J. Gen. Physiol. 1985; 86: 721–738
  • Jung E.K.Y., Chin J.J., Jung C.Y. Structural basis of human erythrocyte glucose transporter function in reconstituted system. J. Biol. Chem. 1986; 261: 9155–9160
  • Laemmli U.K. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature (Lond.) 1970; 227: 680–685
  • Lowry O.H., Rosebrough N.J., Farr A.L., Rnadall R.J. Protein measurement with the Folin phenol reagent. J. Biol. Chem. 1951; 193: 265–275
  • Macey R.I., Brahm J. Osmotic and diffusional water permeability in red cells: methods and interpretations. Water Transport in Biological Membranes, G. Benga. CRC Press, Boca Raton, FL 1989; Vol. 2: 25–39
  • Ojcius D.M., Toon M.R., Solomon A.K. Is an intact cytoskeleton required for red cell urea and water transport?. Biochim Biophys. Acta 1988; 944: 19–28
  • Passow H. Molecular aspects of Band 3 protein-mediated anion transport across the red blood cell membrane. Rev. Physiol. Biochem. Pharmacol. 1986; 103: 61–203
  • Salhany J.M. Erythrocyte Band 3 Protein. CRC Press, Boca Raton, FL 1990
  • Santyr G.E., Henkelman R.M., Bronskill M.J. Variation in measured transverse relaxation in tissue resulting from spin-locking with the CPMG sequence. J. Magnetic Resonance 1988; 79: 28–44
  • Solomon A.K., Chasan B., Dix J.A., Lukacovic M.F., Toon M.R., Verkman A.S. The aqueous pore in the red cell membrane: Band 3 as a channel for anions, cations, nonelectrolytes, and water. Ann. N.Y. Acad Sci. 1983; 414: 97–124
  • Underwood E.J. Trace Elements in Human and Animal Nutrition4th ed. Academic Press, New York 1977; 173

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