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Original

Band 3 tyr-phosphorylation in normal and glucose-6-phospate dehydrogenase-deficient human erythrocytes

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Pages 411-420 | Received 23 Mar 2005, Published online: 09 Jul 2009

References

  • Arese P, De Flora A. Pathophysiology of hemolysis in glucose-6-phosphate dehydrogenase deficiency. Semin Hematol 1990; 27: 1–40
  • Awasthi YC, Gary HS, Dao DD, Partridge CA, Srivastava SK. Enzymatic conjugation of erythrocyte glutathione with 1-chloro-2,4-dinitrobenzene: the fate of glutathione conjugate in erythrocytes and the effect of glutathione depletion on hemoglobin. Blood 1981; 58: 733
  • Bennett V, Stenbuck PJ. Association between ankyrin and the cytoplasmic domain of band 3 isolated from the human erythrocyte membrane. J Biol Chem 1980; 255: 6424–32
  • Beppu M, Ochiai H, Kikugawa K. Macrophage recognition of the erythrocyte modified by oxidizing agents. Biochim Biophys Acta 1987; 930: 244–53
  • Betke, K, Beutler, E, Brewer, GJ, Kirkman, HN, Luzzato, L, Motulsky, AG, Ramot, B, Siniscalco, M. 1967. Standardization of procedures for the study of glucose-6-phosphate dehydrogenase. Report of a WHO scientific group-WHO Technical Report-Serial No 366.
  • Bordin L, Brunati AM, Donella-Deana A, Baggio B, Toninello A, Clari G. Band 3 is a anchor protein and a target for SHP-2 tyrosine phosphatases in human erythrocytes. Blood 2002; 100: 276–82
  • Bordin L, Clari G, Moro I, Dalla Vecchia F, Moret V. Functional link between phosphorylation state of membrane proteins and morphological changes of human erythrocyres. Biochem Biophys Res Commun 1995; 213: 305–11
  • Bordin, L, Ion-Popa, F, Brunati, AM, Clari, G, Low, P. Effector-induced Syk-mediated phosphorylation in human erythrocytes. Biochim Biophys Acta, (in press).
  • Bottini E, Bottini FG, Borgiani P, Businco L. Association between ACP1 and Favism: A possible biochemical mechanism. Blood 1997; 89: 2613–15
  • Brunati AM, Bordin L, Clari G, James P, Quadroni M, Baritono E, Pinna LA, Donella-Deana A. Sequential phosphorylation of protein band3 by Syk and Lyn tyrosine kinases in intact human erythrocytes, Identification of primary and secondary phosphorylation sites. Blood 2000; 96: 1550–57
  • Chiu DTY, Lai KM, Xu CM, Liour SSS, Lee J, Liu TZ. Direct alteration of erythrocyte membrane properties by 1-chloro-2,4-dinitrobenzene without oxidant challenge. Exp Hematol 1993; 21: 114–18
  • Clari G, Marzaro G, Moret V. Metabolic depletion effect on serine/threonine- and tyrosine-phosphorylations of membrane proteins in human erythrocytes. Biochim Biophys Acta 1990; 1023: 319–24
  • De Franceschi L, Fumagalli L, Olivieri O, Corrocher R, Lowell CA, Berton G. Deficiency of Src family kinases Fgr and Hck results in activation of erythrocyte K/Cl cotransport. J Clin Invest 1997; 99: 220–27
  • Harrison ML, Isaacson CC, Burg DL, Geahlen RL, Low PS. Phosphorylation of human erythrocyte band 3 by endogenous p72syk. J Biol Chem 1994; 269: 955–59
  • Harrison ML, Rathinavelu P, Arese P, Geahlen RL, Low PS. Role of band 3 tyrosine phosphorylation in the regulation of erythrocyte glycolysis. J Biol Chem 1991; 266: 4104–11
  • Hebbel RP. The sickle erythrocyte in double jeopardy: autoxidation and iron decompartmentalization. Semin Hematol 1990; 27: 51–69
  • Horn S, Bashan N, Gopas J. Phagocytosis of phenylhydrazine oxidized and G-6-PD-deficient red blood cells: the role of cell-bound immunoglobulis. Blood 1991; 78: 1818–25
  • Ingrosso D, Cimmino A, D'Angelo S, Alfinito F, Zappia V, Galletti P. Protein methylation as a marker of aspartate damage in glucose-6-phosphate dehydrogenase-deficient erythrocytes, Role of oxidative stress. Eur J Biochem 2002; 269: 2031–39
  • Jacobasch G, Rapoport SM. Hemolytic anemias due to erythrocyte enzyme deficiency. Mol Aspects Med 1996; 17: 143–70
  • Jollow DJ, McMillan DC. Oxidative stress, glucose-6-phosphate dehydrogenase and the red cell. Biological Reactive Intermediates VI, PM Dansette, R Snuder, M Delaforge, GG Gibson, H Greim, DJ Jollow, TJ Monks, IG Snipes. Plenum Publisher, New York 2001; 595–605
  • Kay MM. Localization of senescent cell antigen on band 3. Proc Natl Acad Sci 1984; 81: 5753–57
  • Kosower NS, Kosower EM, Wertheim B, Correa WS. Diamide, a new reagent for the intracellular oxidation of glutathione to the disulfide. Biochem Biophys Res Commun 1969; 37: 593–96
  • Kosower NS, Kosower EM. Diamide: an oxidant probe for thiols. Methods Enzymol 1995; 251: 123–133
  • Lee GR, Bithell TC, Foerster J, Athens JW, Lukens JN. Glucose-6-phosphate dehydrogenase deficiency and related deficiencies involving the pentose phosphate pathway and glutathione metabolism. Wintrobe's Clinical Hematology, GR Lee. Lea & Febiger, Philadelphia, PA 1993; 1: 1006–16
  • Low PS, Rathinavelu P, Harrison ML. Regulation of glycolysis via reversible enzyme binding to the membrane protein band 3. J Biol Chem 1993; 268: 14627–631
  • Low PS, Allen DP, Zioncheck TF, Chari P, Willardson BM, Geahlen RL, Harrison ML. Tyrosine phosphorylation of band 3 inhibits peripheral protein binding. J Biol Chem 1987; 262: 4592–96
  • Low PS, Waugh SM, Zinke K, Drenckhahn D. The role of hemoglobin denaturation and band 3 clustering in red blood cell aging. Science 1985; 227: 531–33
  • Lutz HU, Fasler S, Stammler P, Bussolino F, Arese P. Naturally occurring anti-band 3 antibodies and complement in phagocytosis of oxidatively-stressed and in clearance of senescent red cells. Blood Cells 1988; 14: 175–95
  • Marks PA, Banks J. Inhibition of mammalian glucose-6-phosphate dehydrogenase by steroids. Proc Natl Acad Sci USA 1960; 46: 447–52
  • Minetti G, Seppi C, Ciana A, Balduini C, Low PS, Brovelli A. Characterization of the hypertonically induced tyrosine phosphorylation of erythrocyte band 3. Biochem J 1998; 335: 305–11
  • Musch MW, Hubert EM, Goldstein L. Volume expansion stimulates p72syk and p56lyn in skate erythrocytes. J Biol Chem 1991; 274: 7923–28
  • Schluter K, Drenekhanh D. Co-clustering of denaturated hemoglobin with band 3: its role in binding of autoantibodies against band 3 to abnormal and aged erythrocytes, Proc. Natl Acad Sci USA 1986; 83: 6137–41
  • Teare JP, Punchard NA, Powell JJ, Lumb PJ, Mitchell WD, Thompson RP. Automated spectrophotometric method for determining oxidized and reduced glutathione in liver. Clin Chem 1993; 39: 686–89
  • Tietze F. Enzymic method for quantitative determination of nanogram amounts of total and oxidized glutathione: applications to mammalian blood and other tissues. Anal Biochem 1969; 27: 502–22
  • Wax R, Rosenberg E, Kosower NS, Kosower EM. Effect of the thiol-oxidizing agent diamide on the growth of Escherichia coli. J Bacteriol 1970; 101: 1092–93
  • Yannoukakos D, Vasseue C, Piau J-P, Wajcman H, Bursaux E. Phosphorylation sites in human erythrocyte band 3 protein. Biochim Biophys Acta 1991; 1061: 253–66
  • Zipser Y, Piade A, Kosower NS. Erythrocytes thiol status regulates band3 phosphotyrosine level via oxidation/reduction of band3-associated phosphotyrosine phosphatase. FEBS Lett 1997; 406: 126–30

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