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Research Article

Plasma Membrane Enzymes in BALB/C Lymphomas with Either T or B Cell Properties I. 5′-Nucleotidase

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Pages 97-118 | Published online: 26 Sep 2008

References

  • Claman N. H., Chaperon E. A., Triplett R. F. Thymus-marrow cell combination. Synergism in antibody production. Proc. Soc. Exp. Biol. (N.Y.) 1966; 122: 1167
  • Gershon R. K., Cohen P., Hencin R. S., Liebhaber S. A. Suppressor T cells. J. Immunol. 1972; 108: 586
  • Boyse E. A., Miyazawa M., Aoki T., Old L. J. LyA and LyB, Two systems of lymphocyte iso antigens in the mouse. Proc. R. Soc. Lond. B. Biol. Sci. 1968; 170: 175
  • Scheid M. P., Hoffman M. K., Komuro K., Hämmerling U., Abbot J., Boyse E. F., Cohen G. H., Hopper J. A., Schulof R. S., Goldstein A. L. Differentiation of T cells induced by preparations from thymus and by non thymic agents (the determined state of the precursor cell). J. Exp. Med. 1973; 138: 1027
  • Hammerling U., Chin A. F., Abbott J., Scheid M. P. The ontogeny of murine B lymphocytes. 1) Induction of phenotypic conversion of Ia- to Ia+ lymphocytes. J. Immunol. 1975; 115: 1425
  • Edelman G. M. Surface modulation in cell recognition and cell growth. Science 1976; 192: 218
  • Ash J. F., Louvard D., Singer S. J. Antibody-induced linkages of plasma membrane proteins to intracellular actomyosin-containing filaments in cultured fibroblasts. Proc. Natl. Acad. Sci. USA 1977; 74: 1584
  • Quastel M. R., Wright P., Kaplan J. G. Potassium uptake and lymphocyte activation: generality of the effect of ouabain and a model of events at the lymphocyte surface induced by phytohemagglutinin. Proc. of the 6th leucocyte culture conference 185. 1972. Academic Press, New York
  • Resch K., Gelfand E. N., Hanser K., Ferber E. Lymphocyte activation rapid changes in the phospholipid metabolism of plasma membrane during stimulation. Eur. J. Immunol. 1972; 2: 598
  • Chiller J. M., Habicht G. S., Weigle W. O. Kinetic differences in unresponsiveness of thymus and bone marrow-cells. Science 1971; 171: 1813
  • Charreire J., Dardenne M., Bach J. F. Antigen recognition by T lymphocytes. IV. Differences in antigen binding characteristics of T and B-RFC. A cause for variations in the evaluation of T-RFC. Cell. Immun. 1973; 9: 32
  • Potter M. Immunoglobulin-producing tumors and myeloma proteins of mice. Physiol. Rev. 1972; 52: 631
  • Mathieson B. S., Campbell P. S., Potter M., Asofsky R. Expression of Ly 1, Ly 2, Thy 1 and TL differentiation antigens on mouse T cells tumours. J. Exp. Med. 1978; 147: 1267
  • Paraf A., Guerin-Marchand C., Aubry J., Dubert J. M. Inhibition of murine plasmacytoma TEPC 15 by its specific antigen. Nature 1975; 255: 488
  • Abbas A. K., Klaus G. C. Inhibition of antibody production in plasmacytoma cell by antigens. Eur. J. Immunol. 1977; 7: 667
  • Allan D., Crumpton M. J. Preparation and characterization of the plasma membrane of pig lymphocytes. Biochem. J. 1970; 120: 133
  • Ferber E., Resch K., Wallach D. F.H., Imm W. Isolation and characterization of lymphocyte plasma membranes. Biochim. Biophys. Acta 1972; 266: 494
  • Schmidt-Ullrich R., Ferber E., Knüfermann H., Fischer H., Wallach D. F.H. Analysis of the proteins in thymocyte plasma membrane and smooth endoplasmic reticulum by sodium dodecylsulfate gel electrophoresis. Biochim. Biophys. Acta 1974; 332: 175
  • Dods R. F., Essner E., Barclay M. Isolation and characterization of plasma membranes from an L-asparaginase-sensitive strain of leukemia cells. Biochem. Biophys. Res. Commun. 1972; 46: 1074
  • Dornand J., Bonnafous J. C., Mani J. C. 5′-Nucleotidase-adenylate cyclase relationships in mouse thymocytes. FEBS Lett. 1980; 110: 30
  • Andersson J., Sjöberg O., Möller G. Induction of immunoglobulin and antibody synthesis in vitro by lipopolysaccharides. Eur. J. Immunol. 1972; 2: 349
  • Lelievre L. Plasma membranes from fibroblastic cells in culture, Isolation, morphological and enzymatic identification. Biochim. Biophys. Acta 1973; 291: 662
  • Ottolenghi P. The reversible delipidation of a solubilized sodium-plus-potassium ion dependent adenosine triphosphatase from the salt gand of a Spiny Dogfish. Biochem. J. 1975; 151: 61
  • Anner B., Moosmayer M. Rapid determination of inorganic phosphate in biological systems by a highly sensitive photometric method. Anal. Biochem. 1975; 65: 305
  • Lowry O. H., Rosebrough N. I., Farr A. C., Randall R. J. Protein measurement with the Folin phenol reagent. J. Biol. Chem. 1951; 193: 265
  • Evans W. H. Preparation and characterisation of mammalian plasma membranes, T. S. Work, E. Work. North Holland Publishing Company. 1978
  • Burger R. M., Lowenstein J. M. Preparation and properties of 5′-Nucleotidase from smooth muscle of small intestine. J. Biol. Chem. 1970; 245: 6274
  • De Pierre J. W., Karnovsky M. L. Ecto-enzyme of granulocytes: 5′-Nucleotidase. Science 1974; 183: 1096
  • Trams E. G., Lauter C. J. On the sidedness of plasma membrane enzymes. Biochim. Biophys. Acta 1974; 345: 180
  • Misra D. N., Ladoulis C. T., Estes L. W., Gill T. J. Biochemical and enzymatic characterization of thymic and splenic lymphocyte plasma membranes from inbred rats. Biochemistry 1975; 14: 3015
  • Dornand J., Reminiac C., Mani J. C. Activité 5′-nucléotidase des membranes plasmiques de lymphocytes. Effet de la Concanavaline A. Biochimie 1977; 59: 425
  • Usitalo R., Karnovsky M. J. Surface localization of 5′-Nucleotidase on the mouse lymphocyte. J. Histochem. Cytochem. 1977; 25: 87
  • Zachowski A., Aubry J., Jonkman-Bark G., Lelievre L. Localization of the catalytic site of the 5′-nucleotidase at the inner face of murine plasmocytoma plasma membrane. FEBS Letters 1977; 75: 197
  • Zachowski A., Evans W. H., Paraf A., Manuscript in preparation
  • Gelfand E. W., Lee J. J., Dosch H. M. Selective toxicity of purine deoxynucleosides for human lymphocyte growth and function. Proc. Natl. Acad. Sci. U.S. 1979; 76: 1998
  • Barton W. R., Goldschneider I. 5′-Nucleotidase activity in subpopulations of rat lymphocytes. J. Immunol. 1978; 121: 2329
  • Monneron A. Ultrastructural study of membrane bound enzymes in thymocytes. J. Histochem. Cytochem. 1974; 22: 1128
  • Rowe M., De Gast C. G., Platts-Mills T. A.E., Asherson G. L., Webster A. D.B., Johnson S. M. 5′-Nucleotidase of B and T lymphocytes isolated from human peripheral blood. Clin. Exp. Immunol. 1979; 36: 97
  • Lopes J., Zucker-Franklin D., Silber R. Heterogeneity of 5′-nucleotidase activity in lymphocytes, in chronic lymphocytic leukemia. J. Clin. Invest. 1973; 52: 1297
  • Quagliata F., Faig D., Conklyn M., Silber R. Studies on the lymphocyte 5′-nucleotidase in chronic lymphocytic leukemia, infectious mononucleosis, normal subpopulations and phytohemagglutinin-stimulated cells. Cancer Res. 1974; 34: 3197
  • Edwards N. L., Magilavy D. B., Cassidy J. T., Fox I. H. Lymphocyte ecto 5′-nucleotidase deficiency in agammaglobulinemia. Science 1978; 201: 628
  • Matamoros N., Horwitz D. A., Newton C., Asherson G. L., Webster A. D.B. Histochemical studies for 5′-nucleotidase and alpha-naphtyl (non specific) esterase in lymphocytes from patients with primary immunoglobulin deficiencies. Clin. Exp. Immunol. 1979; 36: 102
  • Mitchell B. S., Mejias E., Daddong P. E., Kelley W. N. Purinogenic immunodeficiency diseases: selective toxicity of deoxyribonucleosides for T cells. Proc. Natl. Acad. Sci. USA 1978; 75: 5011
  • Carson D. A., Kaye J., Matsumoto S., Seegmiller J. E., Thompson L. Biochemical basis for the enhanced toxicity of deoxyribonucleosides toward malignant human T cell lines. Proc. Natl. Acad. Sci. USA 1979; 76: 2430
  • Cohen A., Hirschorn R., Horowitz S. D., Rubinstein A., Polmar S. H., Hong R., Martin D. W., Jr. Deoxyadenosine triphosphate as a potentially toxic metabolite in adenosine deaminase deficiency. Proc. Natl. Acad. Sci. USA 1978; 75: 472
  • Wortmann R. L., Mitchell B. S., Edwards N. L., Fox I. H. Biochemical basis for differential deoxyadenosine toxicity to T and B lymphoblasts: role of 5′-nucleotidase. Proc. Natl. Acad. Sci. USA 1979; 76: 2434
  • Edwards N. L., Gelfand E., Bark L., Dosch H. M., Fox I. H. Distribution of 5′-nucleotidase in human lymphoïd tissues. Proc. Natl. Acad. Sci. USA 1979; 76: 3474
  • Fleit H., Conklyn M., Stebbins R. D., Silber R. Function of 5′-nucleotidase in the uptake of adenosine from AMP by human lymphocytes. J. Biol. Chem. 1975; 250: 8889
  • Frick G. P., Lowenstein J. M. Studies of 5′-nucleotidase in the perfused rat heart. J. Biol. Chem. 1976; 251: 6372
  • Dornand J., Bonnafous J. C., Gavach C., Mani J. C. 5′-nucleotidase-facilitated adenosine transport by mouse lymphocytes. Biochimie 1979; 61: 973

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