The role of IgG glycoforms in the pathogenesis of rheumatoid arthritis (original) (raw)
References
Ahrens PB, Ankel H (1987) The role of asparagine-linked carbohydrate in natural killer cell-mediated cytolysis. J Biol Chem 262: 7575 PubMed Google Scholar
Axford JS, Lydyard PM, Isenberg DA, Mackenzie L, Hay FC, Roitt IM (1988) Reduced B cell galactosyltransferase activity in rheumatoid arthritis. Lancet II: 1486 Google Scholar
Bahr GM, Behbehani K, Stanford JL, Sattar I, Shaaban MA, Shimali B (1988) HLA-DR and tuberculin tests in rheumatoid arthritis and tuberculosis. Ann Rheum Dis (in press)
Bahr GM, Rook GAW, Shahin A, Stanford JL, Sattar MI, Behbehani K (1988) HLA-DR-associated isotype-specific regulation of antibody levels to mycobacteria in rheumatoid arthritis. Clin Exp Immunol 72: 26 PubMed Google Scholar
Burnham WR, Lennard-Jones JE, Stanford JL, Bird RG (1978) Mycobacteria as a possible cause of inflammatory bowel disease. Lancet II: 693 Google Scholar
Cave DR, Mitchell DN, Kane SP, Brooke BN (1973) Further animal evidence of a transmissible agent in Crohn's disease. Lancet II: 1120 Google Scholar
Chechik BE, Sengupta S, Fernandes B (1986) Novel heterophile chicken antigen: immunohistochemic localization using antisera to mycobacterium smegmatis and possible association with lymphocyte maturation. Histochemical J 18: 36 Google Scholar
Chechik BE, Fong M, Narasimhan S, Schachter H (1987) Identification of terminal_N_-acetylglucosamine residues of highly branched asparagine-linked oligosaccharides as immunoreactive domains of a chicken heterophile antigenic determinant, Mol Immunol 24: 765 PubMed Google Scholar
Chiodim RJ, Van-Kruiningen HJ, Thayer W, Merkal RS, Coutu JA (1984) Possible role of mycobacteria in inflammatory bowel disease. 1. An unclassifed mycobacterium species isolated from patients with Crohn's disease. Dig Dis Sci 29: 1073 PubMed Google Scholar
Cobbold SP (1984) Waldmann H. Therapeutic potential of monovalent monoclonal antibodies. Nature 308: 460 PubMed Google Scholar
Crohn BB, Ginsberg L, Oppenheimer GD (1932) Regional ileitis; a pathological and clinical entity. J Am Med Assoc 99: 1323 Google Scholar
Dobre M-A, Marx A, Ghetie V (1983) Isolation of a rabbit IgG fraction with cytophilic properties J Immunol Methods 59: 339 PubMed Google Scholar
Duvall E, Wyllie AH, Morris RG (1985) Macrophage. recognition of cells undergoing programmed cell death (apoptosis). Immunology 56: 351 PubMed Google Scholar
Forestier JM (1929) L'aurothiotic dans les rheumatisme chronique. Bull Mem Soc Med Hop Paris 53: 323 Google Scholar
Frater-Schroder M, Risau W, Hallmann R, Gautschi P, Bohlen P (1987) Tumor necrosis factor type a, a potent inhibitor of endothelial cell growth in vitro, is angiogenic in vivo. Proc Natl Acad Sci USA 84: 5277 PubMed Google Scholar
Furukawa K, Matsuta K, Takeuchi F, Kosuge E, Tsuchiya N, Yoshinoya S (1987) Alteration of a_β_-galactosyltransferase in B cells of rheumatoid arthritis patients. The IXth International Symposium on Glycoconjugates, Lille, France. 6–11 July. E56
Graham DY, Markesich DC, Yoshimura HH (1987) Mycobacteria and inflammatory bowel disease. Gastroenterology 92: 436 PubMed Google Scholar
Haltiwanger RS, Hill RL (1986) The isolation of a rat alveolar macrophage lectin. J Biol Chem 261: 7440 PubMed Google Scholar
Hansson, U B, Uesson M, Alkner U (1981) Isolation and characterisation of intermediate complexes and other components with common antigenic determinants. Scand J Inununol 13: 57 Google Scholar
Heyman B, Nose M, Weigle WO (1985) Carbohydrate chains of IgG2b: a requirement for efficient feedback immunosuppression. J Immunol 134: 4018 PubMed Google Scholar
Holoshitz J, Drucker I, Yaretzky A, van Eden W, Klajman A, Lapidot Z (1986) T lymphocytes of rheumatoid arthritis patients show augmented reactivity to a fraction of mycobacteria cross-reactive with cartilage. Lancet II: 305 Google Scholar
Hopkins SJ, Meager A (1988) Cytokines in synovial fluid. 1. The presence of tumour necrosis factor and interferon. Clin Exp Immunol (in press)
Hymes AT, Mullinax F (1979) Immunoglobulin carbohydrate requirement for the formation of an IgG-IgG complex. J Biol Chem 254: 3148 PubMed Google Scholar
Ikeda K, Sannoh T, Kawasaki N, Kawasaki T, Yamashina I (1987) Serum lectin with known structure activates complement through the classical pathway. J Biol Chem 262: 7451 PubMed Google Scholar
Imman RD, Hamilton NC, Redecha PB, Hochhauser DM (1986) Electrophoretic transfer blotting analysis of immune-complexes in rheumatoid arthritis. Clin Exp Immunol 63: 32 PubMed Google Scholar
Isenberg DA, Maddison P, Swana G (1987) Profile of autoantibodies in the serum of patients with tuberculosis, klebsiella and other gram negative infections. Clin Exp Immunol 67: 516 PubMed Google Scholar
Johnson PM, Phua KK, Perkins HR, Hart CA, Bucknall RC (1984) Antibody to streptococcal cell wall petidoglycan-polysaccharide polymers in seropositive and seronegative rheumatic disease. Clin Exp Immunol 55: 115 PubMed Google Scholar
Kobata A (1984) The carbohydrates of glycoproteins. In: Ginsberg V, Robbins PW (eds) Biology of carbohydrates. Wiley, New York, pp 87–161 Google Scholar
Labeta MO, Margni RA, Leoni J, Binaughi RA (1986) Structure of asymmetric non-precipitating antibody: presence of a carbohydrate residue in only one Fab region of the molecule. Immunology 57: 311 PubMed Google Scholar
Leatherbarrow RJ, Rademacher TW, Dwek RA, Woof JM, Clark A, Burton DR (1985) Effector functions of a monoclonal aglycosylated mouse IgG2a: binding and activation of complement C1 and interaction with human monocyte Fc receptor. Mol Immunol 22: 406 Google Scholar
Leoni J, Labeta M, Margni RA (1986) The asymmetric IgG non-precipitating antibody. Localization of the oligosaccharide involved, by concanavalin A interaction. Mol Immunol 23: 1397 PubMed Google Scholar
Malaise MG, Franchimont P, Gomez F, Bouillene C, Mahieu PR (1987) The spontaneous ability of normal human IgG to inhibit the Fc receptors of normal human monocytes is related to their binding capacity to lectins. Clin Immunol Immunopathol 45: 1 PubMed Google Scholar
McCarty M (1958) Further studies on the chemical basis for serological specificity of Group A streptococcal carbohydrate. J Exp Med 108: 311 PubMed Google Scholar
Middagh CR, Litman GW (1987) Atypical glycosylation of an IgG monoclonal cryoimmunoglobulin. J Biol Chem 262: 3671 PubMed Google Scholar
Mitchell DN, Rees RJW (1976) Further observations on the transmissibility of Crohn's disease. Ann NY Acad Sci 278: 546 PubMed Google Scholar
Mullinax F, Hymes AJ, Mullinax GL (1976) Molecular site and enzymatic origin of IgG galactose deficiency in rheumatoid arthritis and SLE. Arthritis Rheum 19: 813 Google Scholar
Munson RS, Glaser L (1981) Teichoic acid and peptidoglycan assembly in gram positive organisms In: Ginsburg V, Robbins P (eds) Biology of carbohydrates. Wiley, New York, pp 91–122 Google Scholar
Nardella FA, Teller DC, Mannik M (1985) Studies on the antigenic determinants in the selfassociation of IgG rheumatoid factor. J Exp Med 154: 112 Google Scholar
Nose M, Wigzell H (1983) Biological significance of carbohydrate chains of monoclonal antibodies. Proc Natl Acad Sci USA 80: 6632 PubMed Google Scholar
Ottenhoff Y, Torres P, Terencio J, Fernandez R, van-Eden W, de-Vries RBP, Stanford JL (1987) Evidence for an HLA-DR-associated immune response gene for mycobacterium tuberculosis. Lancet II: 310 Google Scholar
Parekh RB, Dwek RA, Sutton BJ, Fernandes DL, Leung A, Stanworth D, Rademacher TW, Mizuochi T, Taniguchi K, Matsuta K, Takeuchi Y, Nagano T, Miyamoto T, Kobata A (1985) Association of rheumatoid arthritis and primary osteoarthritis with changes in the glycosylation pattern of total serum IgG. Nature 316: 452 PubMed Google Scholar
Parekh RB, Tse AGD, Dwek RA, Williams AF, Rademacher TW (1987) Tissue-specific_N_-glycosylation, site-specific oligosaccharide patterns and lentil lectin recognition of rat Thy-1. EMBO J 6: 1233 PubMed Google Scholar
Parekh RB, Dwek RA, Rademacher TW (1988) Rheumatoid arthritis as a glycosylation disorder. Br J Rheumatol (in press)
Parekh RB, Isenberg DA, Ansell BM, Roitt IM, Dwek RA, Rademacher TW (1988) Galactosylation of IgG-associated oligosaccharides is reduced in patients with adult and juvenile onset rheumatoid arthritis and is related to disease activity. Lancet I: 966 Google Scholar
Parekh RB, Isenberg DA, Roitt IM, Dwek RA, Rademacher TW (1988) Age-related galactosylation of the_N_-linked oligosaccharides of human serum IgG. J Exp Med 167: 1731 PubMed Google Scholar
Reference deleted
Reference deleted
Pekelharing JM, Hepp E, Kamerling JP, Gerwig GJ, Leijnse B (1988) Alterations in carbohydrate composition of serum IgG from patients with rheumatoid arthritis and from pregnant women. Ann Rheum Dis 47: 91 PubMed Google Scholar
Rademacher TW, Homans SW, Parekh RB, Dwek RA (1986) Immunoglobulin G as a glycoprotein. Biochem Soc Symp 51: 131 PubMed Google Scholar
Rook GAW, Taverne J, Leveton C, Steele J (1987) The role of gamma interferon, vitamin D3 metabolites and tumour necrosis factor in the pathogenesis of tuberculosis. Immunology 62: 229 PubMed Google Scholar
Rook GAW, Steele J, Rademacher T (1988) A monoclonal antibody raised by immunising mice with group A streptococci binds to agalactosyl IgG from rheumatoid arthritis. Ann Rheum Dis 47: 247 PubMed Google Scholar
Ross GD, Cain JA, Lachmann PJ (1985) Membrane complement receptor type three (CR3) has lectin-like properties analogous to bovine conglutinin and functions as a receptor for zymosan and rabbit erythrocytes as well as a receptor for iC3b. J Immunol 134: 3307 PubMed Google Scholar
Simonowitz D, Block GE, Riddell RH, Kraft SE, Kirsner JB (1977) The production of an unusual reaction in rabbit bowel injected with Crohn's disease homogenates. Surgery 82: 211 PubMed Google Scholar
Sutton BJ, Phillips DC (1983) The three-dimensional structure of the carbohydrate within the Fc fragment of immunoglobulin G. Biochem Soc Trans 11: 130 Google Scholar
Suzuki K, Tokoro A, Okawa Y, Suzuki S, Suzuki M (1985) Enhancing effects of_N_-acetylchito-oligosaccharides on the active oxygen-generating and microbicidal activities of peritoneal exudate cells in mice. Chem Pharm Bull (Tokyo) 33: 886 Google Scholar
Taub RN, Sachar D, Janowitz M, Siltzbach LE (1976) Induction of granulomas in mice by inoculation of tissue homogenates from patients with inflammatory bowel disease and sarcoidosis. Ann NY Acad Sci 278: 560 PubMed Google Scholar
Torisu M, Miyahara T, Shinohara K, Ohsata K, Sonozaki H (1978) A new side effect of BCG immunotherapy — BCG-induced arthritis in man. Cancer Immunol Immunother 5: 77 Google Scholar
van-Eden W, Holoshitz J, Nevo Z, Frenkel A, Klajman A, Cohen IR (1985) Arthritis induced by a T-lymphocyte clone that responds to mycobacterium tuberculosis, and to cartilage proteoglycan. Proc Natl Acad Sci USA 82: 5717 Google Scholar
van Eden W, Thole JER, van der Zee R, Noordzij A, van Embden JDA, Hensen EJ, Cohen IR (1988) Cloning of the mycobacterial epitope recognized by T lymphocytes in adjuvant arthritis. Nature 331: 171 PubMed Google Scholar
Watkins J, Swannell AJ (1973) Catabolism of human serum IgG in health, rheumatoid arthritis, and active tuberculous disease. Ann Rheum Dis 32: 247 PubMed Google Scholar
Weber RJ, Clem LW (1981) The molecular mechanism of cryoprecipitation and cold agglutination of an IgM X waldenstrom macroglobulin with anti-Gd specificity: sedimenation analysis and localization of interacting sites. J Immunol 127: 300 PubMed Google Scholar
Wright SD, Jong MT (1986) Adhesion-promoting receptors on human macrophages recognize Escherichia coli by binding to lipopolysaccharide. J Exp Med 164: 1876 PubMed Google Scholar