Skip to main content
Erschienen in: Seminars in Immunopathology 4/2006

01.12.2006 | Review

IgA and IgA-specific receptors in human disease: structural and functional insights into pathogenesis and therapeutic potential

verfasst von: Michelle M. Gomes, Andrew B. Herr

Erschienen in: Seminars in Immunopathology | Ausgabe 4/2006

Einloggen, um Zugang zu erhalten

Abstract

IgA antibodies play an important role in humoral immunity. IgA is the predominant antibody in mucosal secretions and the second most prevalent in the serum. It occupies a unique position among human antibodies in that it can both trigger and suppress inflammatory responses, depending on the situation. Recent structural and functional studies have revealed details of the structure of IgA and its interaction with key cell-surface receptors. We look at the role IgA and IgA receptors (particularly FcαRI) play in the pathogenesis of diseases such as IgA nephropathy and other autoimmune conditions. Finally, we address the potential of IgA as a therapeutic tool to either trigger specific inflammatory responses to destroy target cells or suppress inflammatory responses in the case of autoimmune diseases, and the promise of mucosal vaccines for eliciting specific IgA responses to pathogens in mucosal environments.
Literatur
1.
Zurück zum Zitat Monteiro RC, van de Winkel JG (2003) IgA Fc receptors. Annu Rev Immunol 177–204 Monteiro RC, van de Winkel JG (2003) IgA Fc receptors. Annu Rev Immunol 177–204
2.
Zurück zum Zitat Norderhaug IN, Johansen FE, Schjerven H, Brandtzaeg P (1999) Regulation of the formation and external transport of secretory immunoglobulins. Crit Rev Immunol 19:481–508PubMed Norderhaug IN, Johansen FE, Schjerven H, Brandtzaeg P (1999) Regulation of the formation and external transport of secretory immunoglobulins. Crit Rev Immunol 19:481–508PubMed
3.
Zurück zum Zitat van Egmond M, van Garderen E, van Spriel AB, Damen CA, van Amersfoort ES, van Zandbergen G, van Hattum J, Kuiper J, van de Winkel JG (2000) FcaRI-positive liver Kupffer cells: reappraisal of the function of immunoglobulin A in immunity. Nat Med 6:680–685PubMed van Egmond M, van Garderen E, van Spriel AB, Damen CA, van Amersfoort ES, van Zandbergen G, van Hattum J, Kuiper J, van de Winkel JG (2000) FcaRI-positive liver Kupffer cells: reappraisal of the function of immunoglobulin A in immunity. Nat Med 6:680–685PubMed
4.
Zurück zum Zitat Vidarsson G, van Der Pol WL, van Den Elsen JM, Vile H, Jansen M, Duijs J, Morton HC, Boel E, Daha MR, Corthesy B, van De Winkel JG (2001) Activity of human IgG and IgA subclasses in immune defense against Neisseria meningitidis serogroup B. J Immunol 166:6250–6256PubMed Vidarsson G, van Der Pol WL, van Den Elsen JM, Vile H, Jansen M, Duijs J, Morton HC, Boel E, Daha MR, Corthesy B, van De Winkel JG (2001) Activity of human IgG and IgA subclasses in immune defense against Neisseria meningitidis serogroup B. J Immunol 166:6250–6256PubMed
5.
Zurück zum Zitat Monteiro RC, Kubagawa H, Cooper MD (1990) Cellular distribution, regulation, and biochemical nature of an Fc alpha receptor in humans. J Exp Med 171:597–613PubMed Monteiro RC, Kubagawa H, Cooper MD (1990) Cellular distribution, regulation, and biochemical nature of an Fc alpha receptor in humans. J Exp Med 171:597–613PubMed
6.
Zurück zum Zitat Shibuya A, Sakamoto N, Shimizu Y, Shibuya K, Osawa M, Hiroyama T, Eyre HJ, Sutherland GR, Endo Y, Fujita T, Miyabayashi T, Sakano S, Tsuji T, Nakayama E, Phillips JH, Lanier LL, Nakauchi H (2000) Fc alpha/mu receptor mediates endocytosis of IgM-coated microbes. Nat Immunol 1:441–446PubMed Shibuya A, Sakamoto N, Shimizu Y, Shibuya K, Osawa M, Hiroyama T, Eyre HJ, Sutherland GR, Endo Y, Fujita T, Miyabayashi T, Sakano S, Tsuji T, Nakayama E, Phillips JH, Lanier LL, Nakauchi H (2000) Fc alpha/mu receptor mediates endocytosis of IgM-coated microbes. Nat Immunol 1:441–446PubMed
7.
Zurück zum Zitat Boehm MK, Woof JM, Kerr MA, Perkins SJ (1999) The Fab and Fc fragments of IgA1 exhibit a different arrangement from that in IgG: a study by X-ray and neutron solution scattering and homology modelling. J Mol Biol 286:1421–1447PubMed Boehm MK, Woof JM, Kerr MA, Perkins SJ (1999) The Fab and Fc fragments of IgA1 exhibit a different arrangement from that in IgG: a study by X-ray and neutron solution scattering and homology modelling. J Mol Biol 286:1421–1447PubMed
8.
Zurück zum Zitat Keown MB, Ghirlando R, Young RJ, Beavil AJ, Owens RJ, Perkins SJ, Sutton BJ, Gould HJ (1995) Hydrodynamic studies of a complex between the Fc fragment of human IgE and a soluble fragment of the Fc epsilon RI alpha chain. Proc Natl Acad Sci USA 92:1841–1845PubMed Keown MB, Ghirlando R, Young RJ, Beavil AJ, Owens RJ, Perkins SJ, Sutton BJ, Gould HJ (1995) Hydrodynamic studies of a complex between the Fc fragment of human IgE and a soluble fragment of the Fc epsilon RI alpha chain. Proc Natl Acad Sci USA 92:1841–1845PubMed
9.
Zurück zum Zitat Herr AB, Ballister ER, Bjorkman PJ (2003) Insights into IgA-mediated immune responses from the crystal structures of human FcalphaRI and its complex with IgA1-Fc. Nature 423:614–620PubMed Herr AB, Ballister ER, Bjorkman PJ (2003) Insights into IgA-mediated immune responses from the crystal structures of human FcalphaRI and its complex with IgA1-Fc. Nature 423:614–620PubMed
10.
Zurück zum Zitat Mostov KE (1994) Transepithelial transport of immunoglobulins. Annu Rev Immunol 12:63–84PubMed Mostov KE (1994) Transepithelial transport of immunoglobulins. Annu Rev Immunol 12:63–84PubMed
11.
Zurück zum Zitat Maliszewski CR, March CJ, Schoenborn MA, Gimpel S, Shen L (1990) Expression cloning of a human Fc receptor for IgA. J Exp Med 172:1665–1672PubMed Maliszewski CR, March CJ, Schoenborn MA, Gimpel S, Shen L (1990) Expression cloning of a human Fc receptor for IgA. J Exp Med 172:1665–1672PubMed
12.
Zurück zum Zitat Moura IC, Centelles MN, Arcos-Fajardo M, Malheiros DM, Collawn JF, Cooper MD, Monteiro RC (2001) Identification of the transferrin receptor as a novel immunoglobulin (Ig)A1 receptor and its enhanced expression on mesangial cells in IgA nephropathy. J Exp Med 194:417–425PubMed Moura IC, Centelles MN, Arcos-Fajardo M, Malheiros DM, Collawn JF, Cooper MD, Monteiro RC (2001) Identification of the transferrin receptor as a novel immunoglobulin (Ig)A1 receptor and its enhanced expression on mesangial cells in IgA nephropathy. J Exp Med 194:417–425PubMed
13.
Zurück zum Zitat Lamkhioued B, Gounni AS, Gruart V, Pierce A, Capron A, Capron M (1995) Human eosinophils express a receptor for secretory component. Role in secretory IgA-dependent activation. Eur J Immunol 25:117–125PubMed Lamkhioued B, Gounni AS, Gruart V, Pierce A, Capron A, Capron M (1995) Human eosinophils express a receptor for secretory component. Role in secretory IgA-dependent activation. Eur J Immunol 25:117–125PubMed
14.
Zurück zum Zitat Mantis NJ, Cheung MC, Chintalacharuvu KR, Rey J, Corthesy B, Neutra MR (2002) Selective adherence of IgA to murine Peyer’s patch M cells: evidence for a novel IgA receptor. J Immunol 169:1844–1851PubMed Mantis NJ, Cheung MC, Chintalacharuvu KR, Rey J, Corthesy B, Neutra MR (2002) Selective adherence of IgA to murine Peyer’s patch M cells: evidence for a novel IgA receptor. J Immunol 169:1844–1851PubMed
15.
Zurück zum Zitat Mota G, Manciulea M, Cosma E, Popescu I, Hirt M, Jensen-Jarolim E, Calugaru A, Galatiuc C, Regalia T, Tamandl D, Spittler A, Boltz-Nitulescu G (2003) Human NK cells express Fc receptors for IgA which mediate signal transduction and target cell killing. Eur J Immunol 33:2197–2205PubMed Mota G, Manciulea M, Cosma E, Popescu I, Hirt M, Jensen-Jarolim E, Calugaru A, Galatiuc C, Regalia T, Tamandl D, Spittler A, Boltz-Nitulescu G (2003) Human NK cells express Fc receptors for IgA which mediate signal transduction and target cell killing. Eur J Immunol 33:2197–2205PubMed
16.
Zurück zum Zitat Mestecky J, McGhee JR (1987) Immunoglobulin A (IgA): molecular and cellular interactions involved in IgA biosynthesis and immune response. Adv Immunol 40:153–245PubMed Mestecky J, McGhee JR (1987) Immunoglobulin A (IgA): molecular and cellular interactions involved in IgA biosynthesis and immune response. Adv Immunol 40:153–245PubMed
17.
Zurück zum Zitat Sangeetha SR, Appukuttan PS (2005) IgA1 is the premier serum glycoprotein recognized by human galectin-1 since T antigen (Galbeta1→3GalNAc−) is far superior to non-repeating N-acetyl lactosamine as ligand. Int J Biol Macromol 35:269–276PubMed Sangeetha SR, Appukuttan PS (2005) IgA1 is the premier serum glycoprotein recognized by human galectin-1 since T antigen (Galbeta1→3GalNAc−) is far superior to non-repeating N-acetyl lactosamine as ligand. Int J Biol Macromol 35:269–276PubMed
18.
Zurück zum Zitat Rudd PM, Fortune F, Patel T, Parekh RB, Dwek RA, Lehner T (1994) A human T-cell receptor recognizes ‘O’-linked sugars from the hinge region of human IgA1 and IgD. Immunology 83:99–106PubMed Rudd PM, Fortune F, Patel T, Parekh RB, Dwek RA, Lehner T (1994) A human T-cell receptor recognizes ‘O’-linked sugars from the hinge region of human IgA1 and IgD. Immunology 83:99–106PubMed
19.
Zurück zum Zitat van Spriel AB, Leusen JH, van Egmond M, Dijkman HB, Assmann KJ, Mayadas TN, van de Winkel JG (2001) Mac-1 (CD11b/CD18) is essential for Fc receptor-mediated neutrophil cytotoxicity and immunologic synapse formation. Blood 97:2478–2486PubMed van Spriel AB, Leusen JH, van Egmond M, Dijkman HB, Assmann KJ, Mayadas TN, van de Winkel JG (2001) Mac-1 (CD11b/CD18) is essential for Fc receptor-mediated neutrophil cytotoxicity and immunologic synapse formation. Blood 97:2478–2486PubMed
20.
Zurück zum Zitat Monteiro RC, Moura IC, Launay P, Tsuge T, Haddad E, Benhamou M, Cooper MD, Arcos-Fajardo M (2002) Pathogenic significance of IgA receptor interactions in IgA nephropathy. Trends Mol Med 8:464–468PubMed Monteiro RC, Moura IC, Launay P, Tsuge T, Haddad E, Benhamou M, Cooper MD, Arcos-Fajardo M (2002) Pathogenic significance of IgA receptor interactions in IgA nephropathy. Trends Mol Med 8:464–468PubMed
21.
Zurück zum Zitat Rifai A, Fadden K, Morrison SL, Chintalacharuvu KR (2000) The N-glycans determine the differential blood clearance and hepatic uptake of human immunoglobulin (Ig)A1 and IgA2 isotypes. J Exp Med 191:2171–2182PubMed Rifai A, Fadden K, Morrison SL, Chintalacharuvu KR (2000) The N-glycans determine the differential blood clearance and hepatic uptake of human immunoglobulin (Ig)A1 and IgA2 isotypes. J Exp Med 191:2171–2182PubMed
22.
Zurück zum Zitat Socken DJ, Underdown BJ (1978) Comparison of human, bovine and rabbit secretory component-immunoglobulin interactions. Immunochemistry 15:499–506PubMed Socken DJ, Underdown BJ (1978) Comparison of human, bovine and rabbit secretory component-immunoglobulin interactions. Immunochemistry 15:499–506PubMed
23.
Zurück zum Zitat Frutiger S, Hughes GJ, Hanly WC, Kingzette M, Jaton JC (1986) The amino-terminal domain of rabbit secretory component is responsible for noncovalent binding to immunoglobulin A dimers. J Biol Chem 261:16673–16681PubMed Frutiger S, Hughes GJ, Hanly WC, Kingzette M, Jaton JC (1986) The amino-terminal domain of rabbit secretory component is responsible for noncovalent binding to immunoglobulin A dimers. J Biol Chem 261:16673–16681PubMed
24.
Zurück zum Zitat Geneste C, Iscaki S, Mangalo R, Pillot J (1986) Both Fc alpha domains of human IgA are involved in in vitro interaction between secretory component and dimeric IgA. Immunol Lett 13:221–226PubMed Geneste C, Iscaki S, Mangalo R, Pillot J (1986) Both Fc alpha domains of human IgA are involved in in vitro interaction between secretory component and dimeric IgA. Immunol Lett 13:221–226PubMed
25.
Zurück zum Zitat Fallgreen-Gebauer E, Gebauer W, Bastian A, Kratzin HD, Eiffert H, Zimmermann B, Karas M, Hilschmann N (1993) The covalent linkage of secretory component to IgA. Structure of sIgA. Biol Chem Hoppe Seyler 374:1023–1028PubMed Fallgreen-Gebauer E, Gebauer W, Bastian A, Kratzin HD, Eiffert H, Zimmermann B, Karas M, Hilschmann N (1993) The covalent linkage of secretory component to IgA. Structure of sIgA. Biol Chem Hoppe Seyler 374:1023–1028PubMed
26.
Zurück zum Zitat Brandtzaeg P (1975) Human secretory immunoglobulin M. An immunochemical and immunohistochemical study. Immunology 29:559–570PubMed Brandtzaeg P (1975) Human secretory immunoglobulin M. An immunochemical and immunohistochemical study. Immunology 29:559–570PubMed
27.
Zurück zum Zitat Mostov KE, Kraehenbuhl JP, Blobel G (1980) Receptor-mediated transcellular transport of immunoglobulin: synthesis of secretory component as multiple and larger transmembrane forms. Proc Natl Acad Sci USA 77:7257–7261PubMed Mostov KE, Kraehenbuhl JP, Blobel G (1980) Receptor-mediated transcellular transport of immunoglobulin: synthesis of secretory component as multiple and larger transmembrane forms. Proc Natl Acad Sci USA 77:7257–7261PubMed
28.
Zurück zum Zitat Hamburger AE, Bjorkman PJ, Herr AB (2006) Structural insights into antibody-mediated mucosal immunity. Curr Top Microbiol Immunol 308:173–204PubMed Hamburger AE, Bjorkman PJ, Herr AB (2006) Structural insights into antibody-mediated mucosal immunity. Curr Top Microbiol Immunol 308:173–204PubMed
29.
Zurück zum Zitat Lamm ME (1997) Interaction of antigens and antibodies at mucosal surfaces. Annu Rev Microbiol 51:311–340PubMed Lamm ME (1997) Interaction of antigens and antibodies at mucosal surfaces. Annu Rev Microbiol 51:311–340PubMed
30.
Zurück zum Zitat Brandtzaeg P, Baekkevold ES, Farstad IN, Jahnsen FL, Johansen FE, Nilsen EM, Yamanaka T (1999) Regional specialization in the mucosal immune system: what happens in the microcompartments? Immunol Today 20:141–151PubMed Brandtzaeg P, Baekkevold ES, Farstad IN, Jahnsen FL, Johansen FE, Nilsen EM, Yamanaka T (1999) Regional specialization in the mucosal immune system: what happens in the microcompartments? Immunol Today 20:141–151PubMed
31.
Zurück zum Zitat Mazanec MB, Kaetzel CS, Lamm ME, Fletcher D, Nedrud JG (1992) Intracellular neutralization of virus by immunoglobulin A antibodies. Proc Natl Acad Sci USA 89:6901–6905PubMed Mazanec MB, Kaetzel CS, Lamm ME, Fletcher D, Nedrud JG (1992) Intracellular neutralization of virus by immunoglobulin A antibodies. Proc Natl Acad Sci USA 89:6901–6905PubMed
32.
Zurück zum Zitat Kaetzel CS, Robinson JK, Chintalacharuvu KR, Vaerman JP, Lamm ME (1991) The polymeric immunoglobulin receptor (secretory component) mediates transport of immune complexes across epithelial cells: a local defense function for IgA. Proc Natl Acad Sci USA 88:8796–8800PubMed Kaetzel CS, Robinson JK, Chintalacharuvu KR, Vaerman JP, Lamm ME (1991) The polymeric immunoglobulin receptor (secretory component) mediates transport of immune complexes across epithelial cells: a local defense function for IgA. Proc Natl Acad Sci USA 88:8796–8800PubMed
33.
Zurück zum Zitat Lamm ME, Robinson JK, Kaetzel CS (1992) Transport of IgA immune complexes across epithelial membranes: new concepts in mucosal immunity. Adv Exp Med Biol 327:91–94PubMed Lamm ME, Robinson JK, Kaetzel CS (1992) Transport of IgA immune complexes across epithelial membranes: new concepts in mucosal immunity. Adv Exp Med Biol 327:91–94PubMed
34.
Zurück zum Zitat Dallas SD, Rolfe RD (1998) Binding of Clostridium difficile toxin A to human milk secretory component. J Med Microbiol 47:879–888PubMedCrossRef Dallas SD, Rolfe RD (1998) Binding of Clostridium difficile toxin A to human milk secretory component. J Med Microbiol 47:879–888PubMedCrossRef
35.
Zurück zum Zitat de Oliveira IR, de Araujo AN, Bao SN, Giugliano LG (2001) Binding of lactoferrin and free secretory component to enterotoxigenic Escherichia coli. FEMS Microbiol Lett 203:29–33PubMedCrossRef de Oliveira IR, de Araujo AN, Bao SN, Giugliano LG (2001) Binding of lactoferrin and free secretory component to enterotoxigenic Escherichia coli. FEMS Microbiol Lett 203:29–33PubMedCrossRef
36.
Zurück zum Zitat Hamburger AE, West AP Jr, Bjorkman PJ (2004) Crystal structure of a polymeric immunoglobulin binding fragment of the human polymeric immunoglobulin receptor. Structure 12:1925–1935PubMed Hamburger AE, West AP Jr, Bjorkman PJ (2004) Crystal structure of a polymeric immunoglobulin binding fragment of the human polymeric immunoglobulin receptor. Structure 12:1925–1935PubMed
37.
Zurück zum Zitat Coyne RS, Siebrecht M, Peitsch MC, Casanova JE (1994) Mutational analysis of polymeric immunoglobulin receptor/ligand interactions. Evidence for the involvement of multiple complementarity determining region (CDR)-like loops in receptor domain I. J Biol Chem 269:31620–31625PubMed Coyne RS, Siebrecht M, Peitsch MC, Casanova JE (1994) Mutational analysis of polymeric immunoglobulin receptor/ligand interactions. Evidence for the involvement of multiple complementarity determining region (CDR)-like loops in receptor domain I. J Biol Chem 269:31620–31625PubMed
38.
Zurück zum Zitat White KD, Capra JD (2002) Targeting mucosal sites by polymeric immunoglobulin receptor-directed peptides. J Exp Med 196:551–555PubMed White KD, Capra JD (2002) Targeting mucosal sites by polymeric immunoglobulin receptor-directed peptides. J Exp Med 196:551–555PubMed
39.
Zurück zum Zitat Hexham JM, White KD, Carayannopoulos LN, Mandecki W, Brisette R, Yang YS, Capra JD (1999) A human immunoglobulin (Ig)A calpha3 domain motif directs polymeric Ig receptor-mediated secretion. J Exp Med 189:747–752PubMed Hexham JM, White KD, Carayannopoulos LN, Mandecki W, Brisette R, Yang YS, Capra JD (1999) A human immunoglobulin (Ig)A calpha3 domain motif directs polymeric Ig receptor-mediated secretion. J Exp Med 189:747–752PubMed
40.
Zurück zum Zitat Roe M, Norderhaug IN, Brandtzaeg P, Johansen FE (1999) Fine specificity of ligand-binding domain 1 in the polymeric Ig receptor: importance of the CDR2-containing region for IgM interaction. J Immunol 162:6046–6052PubMed Roe M, Norderhaug IN, Brandtzaeg P, Johansen FE (1999) Fine specificity of ligand-binding domain 1 in the polymeric Ig receptor: importance of the CDR2-containing region for IgM interaction. J Immunol 162:6046–6052PubMed
41.
Zurück zum Zitat Wende H, Colonna M, Ziegler A, Volz A (1999) Organization of the leukocyte receptor cluster (LRC) on human chromosome 19q13.4. Mamm Genome 10:154–160PubMed Wende H, Colonna M, Ziegler A, Volz A (1999) Organization of the leukocyte receptor cluster (LRC) on human chromosome 19q13.4. Mamm Genome 10:154–160PubMed
42.
Zurück zum Zitat Feng J, Garrity D, Call ME, Moffett H, Wucherpfennig KW (2005) Convergence on a distinctive assembly mechanism by unrelated families of activating immune receptors. Immunity 22:427–438PubMed Feng J, Garrity D, Call ME, Moffett H, Wucherpfennig KW (2005) Convergence on a distinctive assembly mechanism by unrelated families of activating immune receptors. Immunity 22:427–438PubMed
43.
Zurück zum Zitat Morton HC, van den Herik-Oudijk IE, Vossebeld P, Snijders A, Verhoeven AJ, Capel PJ, van de Winkel JG (1995) Functional association between the human myeloid immunoglobulin A Fc receptor (CD89) and FcR γ chain. Molecular basis for CD89/FcR γ chain association. J Biol Chem 270:29781–29787PubMed Morton HC, van den Herik-Oudijk IE, Vossebeld P, Snijders A, Verhoeven AJ, Capel PJ, van de Winkel JG (1995) Functional association between the human myeloid immunoglobulin A Fc receptor (CD89) and FcR γ chain. Molecular basis for CD89/FcR γ chain association. J Biol Chem 270:29781–29787PubMed
44.
Zurück zum Zitat Cochran JR, Cameron TO, Stone JD, Lubetsky JB, Stern LJ (2001) Receptor proximity, not intermolecular orientation, is critical for triggering T-cell activation. J Biol Chem 276:28068–28074PubMed Cochran JR, Cameron TO, Stone JD, Lubetsky JB, Stern LJ (2001) Receptor proximity, not intermolecular orientation, is critical for triggering T-cell activation. J Biol Chem 276:28068–28074PubMed
45.
Zurück zum Zitat Launay P, Patry C, Lehuen A, Pasquier B, Blank U, Monteiro RC (1999) Alternative endocytic pathway for immunoglobulin A Fc receptors (CD89) depends on the lack of FcRgamma association and protects against degradation of bound ligand. J Biol Chem 274:7216–7225PubMed Launay P, Patry C, Lehuen A, Pasquier B, Blank U, Monteiro RC (1999) Alternative endocytic pathway for immunoglobulin A Fc receptors (CD89) depends on the lack of FcRgamma association and protects against degradation of bound ligand. J Biol Chem 274:7216–7225PubMed
46.
Zurück zum Zitat Wines BD, Trist HM, Ramsland PA, Hogarth PM (2006) A common site of the Fc receptor gamma subunit interacts with the unrelated immunoreceptors FcalphaRI and FcepsilonRI. J Biol Chem 281:17108–17113PubMed Wines BD, Trist HM, Ramsland PA, Hogarth PM (2006) A common site of the Fc receptor gamma subunit interacts with the unrelated immunoreceptors FcalphaRI and FcepsilonRI. J Biol Chem 281:17108–17113PubMed
47.
Zurück zum Zitat Bakema JE, de Haij S, den Hartog-Jager CF, Bakker J, Vidarsson G, van Egmond M, van de Winkel JG, Leusen JH (2006) Signaling through mutants of the IgA receptor CD89 and consequences for Fc receptor gamma-chain interaction. J Immunol 176:3603–3610PubMed Bakema JE, de Haij S, den Hartog-Jager CF, Bakker J, Vidarsson G, van Egmond M, van de Winkel JG, Leusen JH (2006) Signaling through mutants of the IgA receptor CD89 and consequences for Fc receptor gamma-chain interaction. J Immunol 176:3603–3610PubMed
48.
Zurück zum Zitat van Zandbergen G, Westerhuis R, Mohamad NK, van de Winkel JG, Daha MR, van Kooten C (1999) Crosslinking of the human Fc receptor for IgA (FcalphaRI/CD89) triggers FcR gamma-chain-dependent shedding of soluble CD89. J Immunol 163:5806–5812PubMed van Zandbergen G, Westerhuis R, Mohamad NK, van de Winkel JG, Daha MR, van Kooten C (1999) Crosslinking of the human Fc receptor for IgA (FcalphaRI/CD89) triggers FcR gamma-chain-dependent shedding of soluble CD89. J Immunol 163:5806–5812PubMed
49.
Zurück zum Zitat Launay P, Grossetete B, Arcos-Fajardo M, Gaudin E, Torres SP, Beaudoin L, Patey-Mariaud de Serre N, Lehuen A, Monteiro RC (2000) Fcalpha receptor (CD89) mediates the development of immunoglobulin A (IgA) nephropathy (Berger’s disease). Evidence for pathogenic soluble receptor-IgA complexes in patients and CD89 transgenic mice. J Exp Med 191:1999–2009PubMed Launay P, Grossetete B, Arcos-Fajardo M, Gaudin E, Torres SP, Beaudoin L, Patey-Mariaud de Serre N, Lehuen A, Monteiro RC (2000) Fcalpha receptor (CD89) mediates the development of immunoglobulin A (IgA) nephropathy (Berger’s disease). Evidence for pathogenic soluble receptor-IgA complexes in patients and CD89 transgenic mice. J Exp Med 191:1999–2009PubMed
50.
Zurück zum Zitat Pasquier B, Launay P, Kanamaru Y, Moura IC, Pfirsch S, Ruffie C, Henin D, Benhamou M, Pretolani M, Blank U, Monteiro RC (2005) Identification of FcalphaRI as an inhibitory receptor that controls inflammation: dual role of FcRgamma ITAM. Immunity 22:31–42PubMed Pasquier B, Launay P, Kanamaru Y, Moura IC, Pfirsch S, Ruffie C, Henin D, Benhamou M, Pretolani M, Blank U, Monteiro RC (2005) Identification of FcalphaRI as an inhibitory receptor that controls inflammation: dual role of FcRgamma ITAM. Immunity 22:31–42PubMed
51.
Zurück zum Zitat Chapman TL, You I, Joseph IM, Bjorkman PJ, Morrison SL, Raghavan M (1999) Characterization of the interaction between the herpes simplex virus type I Fc receptor and immunoglobulin G. J Biol Chem 274:6911–6919PubMed Chapman TL, You I, Joseph IM, Bjorkman PJ, Morrison SL, Raghavan M (1999) Characterization of the interaction between the herpes simplex virus type I Fc receptor and immunoglobulin G. J Biol Chem 274:6911–6919PubMed
52.
Zurück zum Zitat Fan QR, Mosyak L, Winter CC, Wagtmann N, Long EO, Wiley DC (1997) Structure of the inhibitory receptor for human natural killer cells resembles haematopoietic receptors. Nature 389:96–100PubMed Fan QR, Mosyak L, Winter CC, Wagtmann N, Long EO, Wiley DC (1997) Structure of the inhibitory receptor for human natural killer cells resembles haematopoietic receptors. Nature 389:96–100PubMed
53.
Zurück zum Zitat Horii K, Kahn ML, Herr AB (2006) Structural basis for platelet collagen responses by the immune-type receptor glycoprotein VI. Blood 108:936–942PubMed Horii K, Kahn ML, Herr AB (2006) Structural basis for platelet collagen responses by the immune-type receptor glycoprotein VI. Blood 108:936–942PubMed
54.
Zurück zum Zitat Garman SC, Kinet JP, Jardetzky TS (1998) Crystal structure of the human high-affinity IgE receptor. Cell 95:951–961PubMed Garman SC, Kinet JP, Jardetzky TS (1998) Crystal structure of the human high-affinity IgE receptor. Cell 95:951–961PubMed
55.
Zurück zum Zitat Maxwell KF, Powell MS, Hulett MD, Barton PA, McKenzie IF, Garrett TP, Hogarth PM (1999) Crystal structure of the human leukocyte Fc receptor, FcγRIIa. Nat Struct Biol 6:437–442PubMed Maxwell KF, Powell MS, Hulett MD, Barton PA, McKenzie IF, Garrett TP, Hogarth PM (1999) Crystal structure of the human leukocyte Fc receptor, FcγRIIa. Nat Struct Biol 6:437–442PubMed
56.
Zurück zum Zitat Sondermann P, Huber R, Oosthuizen V, Jacob U (2000) The 3.2-A crystal structure of the human IgG1 Fc fragment-FcgammaRIII complex. Nature 406:267–273PubMed Sondermann P, Huber R, Oosthuizen V, Jacob U (2000) The 3.2-A crystal structure of the human IgG1 Fc fragment-FcgammaRIII complex. Nature 406:267–273PubMed
57.
Zurück zum Zitat Sondermann P, Huber R, Jacob U (1999) Crystal structure of the soluble form of the human Fcgamma-receptor IIb: a new member of the immunoglobulin superfamily at 1.7 A resolution. EMBO J 18:1095–1103PubMed Sondermann P, Huber R, Jacob U (1999) Crystal structure of the soluble form of the human Fcgamma-receptor IIb: a new member of the immunoglobulin superfamily at 1.7 A resolution. EMBO J 18:1095–1103PubMed
58.
Zurück zum Zitat Herr AB, White CL, Milburn C, Wu C, Bjorkman PJ (2003) Bivalent binding of IgA1 to FcalphaRI suggests a mechanism for cytokine activation of IgA phagocytosis. J Mol Biol 327:645–657PubMed Herr AB, White CL, Milburn C, Wu C, Bjorkman PJ (2003) Bivalent binding of IgA1 to FcalphaRI suggests a mechanism for cytokine activation of IgA phagocytosis. J Mol Biol 327:645–657PubMed
59.
Zurück zum Zitat Carayannopoulos L, Hexham JM, Capra JD (1996) Localization of the binding site for the monocyte immunoglobulin (Ig) A-Fc receptor (CD89) to the domain boundary between Calpha2 and Calpha3 in human IgA1. J Exp Med 183:1579–1586PubMed Carayannopoulos L, Hexham JM, Capra JD (1996) Localization of the binding site for the monocyte immunoglobulin (Ig) A-Fc receptor (CD89) to the domain boundary between Calpha2 and Calpha3 in human IgA1. J Exp Med 183:1579–1586PubMed
60.
Zurück zum Zitat Pleass RJ, Anderson CM, Dunlop JI, Woof JM (1997) Probing the Fc alpha R binding site on IgA by mutagenesis of the IgA Fc region. Biochem Soc Trans 25:328SPubMed Pleass RJ, Anderson CM, Dunlop JI, Woof JM (1997) Probing the Fc alpha R binding site on IgA by mutagenesis of the IgA Fc region. Biochem Soc Trans 25:328SPubMed
61.
Zurück zum Zitat Pleass RJ, Dunlop JI, Anderson CM, Woof JM (1999) Identification of residues in the CH2/CH3 domain interface of IgA essential for interaction with the human fcalpha receptor (FcalphaR) CD89. J Biol Chem 274:23508–23514PubMed Pleass RJ, Dunlop JI, Anderson CM, Woof JM (1999) Identification of residues in the CH2/CH3 domain interface of IgA essential for interaction with the human fcalpha receptor (FcalphaR) CD89. J Biol Chem 274:23508–23514PubMed
62.
Zurück zum Zitat Wines BD, Hulett MD, Jamieson GP, Trist HM, Spratt JM, Hogarth PM (1999) Identification of residues in the first domain of human Fc alpha receptor essential for interaction with IgA. J Immunol 162:2146–2153PubMed Wines BD, Hulett MD, Jamieson GP, Trist HM, Spratt JM, Hogarth PM (1999) Identification of residues in the first domain of human Fc alpha receptor essential for interaction with IgA. J Immunol 162:2146–2153PubMed
63.
Zurück zum Zitat Wines BD, Sardjono CT, Trist HM, Lay CS, Hogarth PM (2001) The interaction of Fc alpha RI with IgA and its implications for ligand binding by immunoreceptors of the leukocyte receptor cluster. J Immunol 166:1781–1789PubMed Wines BD, Sardjono CT, Trist HM, Lay CS, Hogarth PM (2001) The interaction of Fc alpha RI with IgA and its implications for ligand binding by immunoreceptors of the leukocyte receptor cluster. J Immunol 166:1781–1789PubMed
64.
Zurück zum Zitat Berger J, Hinglais N (1968) [Intercapillary deposits of IgA–IgG]. J Urol Nephrol (Paris) 74:694–695 Berger J, Hinglais N (1968) [Intercapillary deposits of IgA–IgG]. J Urol Nephrol (Paris) 74:694–695
65.
Zurück zum Zitat Savoldi S (2001) Berger’s disease. In: F Scolari (ed) Orphanet encyclopedia (updated: January 2004) Savoldi S (2001) Berger’s disease. In: F Scolari (ed) Orphanet encyclopedia (updated: January 2004)
66.
Zurück zum Zitat Berger J, Yaneva H, Nabarra B, Barbanel C (1975) Recurrence of mesangial deposition of IgA after renal transplantation. Kidney Int 7:232–241PubMed Berger J, Yaneva H, Nabarra B, Barbanel C (1975) Recurrence of mesangial deposition of IgA after renal transplantation. Kidney Int 7:232–241PubMed
67.
Zurück zum Zitat Valentijn RM, Radl J, Haaijman JJ, Vermeer BJ, Weening JJ, Kauffmann RH, Daha MR, van Es LA (1984) Circulating and mesangial secretory component-binding IgA-1 in primary IgA nephropathy. Kidney Int 26:760–766PubMed Valentijn RM, Radl J, Haaijman JJ, Vermeer BJ, Weening JJ, Kauffmann RH, Daha MR, van Es LA (1984) Circulating and mesangial secretory component-binding IgA-1 in primary IgA nephropathy. Kidney Int 26:760–766PubMed
68.
Zurück zum Zitat Novak J, Julian BA, Tomana M, Mesteck J (2001) Progress in molecular and genetic studies of IgA nephropathy. J Clin Immunol 21:310–327PubMed Novak J, Julian BA, Tomana M, Mesteck J (2001) Progress in molecular and genetic studies of IgA nephropathy. J Clin Immunol 21:310–327PubMed
69.
Zurück zum Zitat Tomana M, Novak J, Julian BA, Matousovic K, Konecny K, Mestecky J (1999) Circulating immune complexes in IgA nephropathy consist of IgA1 with galactose-deficient hinge region and antiglycan antibodies. J Clin Invest 104:73–81PubMed Tomana M, Novak J, Julian BA, Matousovic K, Konecny K, Mestecky J (1999) Circulating immune complexes in IgA nephropathy consist of IgA1 with galactose-deficient hinge region and antiglycan antibodies. J Clin Invest 104:73–81PubMed
70.
Zurück zum Zitat Tomino Y, Sakai H, Miura M, Endoh M, Nomoto Y (1982) Detection of polymeric IgA in glomeruli from patients with IgA nephropathy. Clin Exp Immunol 49:419–425PubMed Tomino Y, Sakai H, Miura M, Endoh M, Nomoto Y (1982) Detection of polymeric IgA in glomeruli from patients with IgA nephropathy. Clin Exp Immunol 49:419–425PubMed
71.
Zurück zum Zitat Leung JC, Tang SC, Chan DT, Lui SL, Lai KN (2002) Increased sialylation of polymeric lambda-IgA1 in patients with IgA nephropathy. J Clin Lab Anal 16:11–19PubMed Leung JC, Tang SC, Chan DT, Lui SL, Lai KN (2002) Increased sialylation of polymeric lambda-IgA1 in patients with IgA nephropathy. J Clin Lab Anal 16:11–19PubMed
72.
Zurück zum Zitat Odani H, Hiki Y, Takahashi M, Nishimoto A, Yasuda Y, Iwase H, Shinzato T, Maeda K (2000) Direct evidence for decreased sialylation and galactosylation of human serum IgA1 Fc O-glycosylated hinge peptides in IgA nephropathy by mass spectrometry. Biochem Biophys Res Commun 271:268–274PubMed Odani H, Hiki Y, Takahashi M, Nishimoto A, Yasuda Y, Iwase H, Shinzato T, Maeda K (2000) Direct evidence for decreased sialylation and galactosylation of human serum IgA1 Fc O-glycosylated hinge peptides in IgA nephropathy by mass spectrometry. Biochem Biophys Res Commun 271:268–274PubMed
73.
Zurück zum Zitat Linossier MT, Palle S, Berthoux F (2003) Different glycosylation profile of serum IgA1 in IgA nephropathy according to the glomerular basement membrane thickness: normal versus thin. Am J Kidney Dis 41:558–564PubMed Linossier MT, Palle S, Berthoux F (2003) Different glycosylation profile of serum IgA1 in IgA nephropathy according to the glomerular basement membrane thickness: normal versus thin. Am J Kidney Dis 41:558–564PubMed
74.
Zurück zum Zitat Amore A, Cirina P, Conti G, Brusa P, Peruzzi L, Coppo R (2001) Glycosylation of circulating IgA in patients with IgA nephropathy modulates proliferation and apoptosis of mesangial cells. J Am Soc Nephrol 12:1862–1871PubMed Amore A, Cirina P, Conti G, Brusa P, Peruzzi L, Coppo R (2001) Glycosylation of circulating IgA in patients with IgA nephropathy modulates proliferation and apoptosis of mesangial cells. J Am Soc Nephrol 12:1862–1871PubMed
75.
Zurück zum Zitat Basset C, Devauchelle V, Durand V, Jamin C, Pennec YL, Youinou P, Dueymes M (1999) Glycosylation of immunoglobulin A influences its receptor binding. Scand J Immunol 50:572–579PubMed Basset C, Devauchelle V, Durand V, Jamin C, Pennec YL, Youinou P, Dueymes M (1999) Glycosylation of immunoglobulin A influences its receptor binding. Scand J Immunol 50:572–579PubMed
76.
Zurück zum Zitat Iwase H, Ohkawa S, Ishii-Karakasa I, Hiki Y, Kokubo T, Sano T, Tanaka A, Toma K, Kobayashi Y, Hotta K (1999) Study of the relationship between sticky human serum IgA1 and its O-glycan glycoform. Biochem Biophys Res Commun 261:472–477PubMed Iwase H, Ohkawa S, Ishii-Karakasa I, Hiki Y, Kokubo T, Sano T, Tanaka A, Toma K, Kobayashi Y, Hotta K (1999) Study of the relationship between sticky human serum IgA1 and its O-glycan glycoform. Biochem Biophys Res Commun 261:472–477PubMed
77.
Zurück zum Zitat Kokubo T, Hiki Y, Iwase H, Tanaka A, Toma K, Hotta K, Kobayashi Y (1998) Protective role of IgA1 glycans against IgA1 self-aggregation and adhesion to extracellular matrix proteins. J Am Soc Nephrol 9:2048–2054PubMed Kokubo T, Hiki Y, Iwase H, Tanaka A, Toma K, Hotta K, Kobayashi Y (1998) Protective role of IgA1 glycans against IgA1 self-aggregation and adhesion to extracellular matrix proteins. J Am Soc Nephrol 9:2048–2054PubMed
78.
Zurück zum Zitat Sano T, Hiki Y, Kokubo T, Iwase H, Shigematsu H, Kobayashi Y (2002) Enzymatically deglycosylated human IgA1 molecules accumulate and induce inflammatory cell reaction in rat glomeruli. Nephrol Dial Transplant 17:50–56PubMed Sano T, Hiki Y, Kokubo T, Iwase H, Shigematsu H, Kobayashi Y (2002) Enzymatically deglycosylated human IgA1 molecules accumulate and induce inflammatory cell reaction in rat glomeruli. Nephrol Dial Transplant 17:50–56PubMed
79.
Zurück zum Zitat Grossetete B, Launay P, Lehuen A, Jungers P, Bach JF, Monteiro RC (1998) Down-regulation of Fc alpha receptors on blood cells of IgA nephropathy patients: evidence for a negative regulatory role of serum IgA. Kidney Int 53:1321–1335PubMed Grossetete B, Launay P, Lehuen A, Jungers P, Bach JF, Monteiro RC (1998) Down-regulation of Fc alpha receptors on blood cells of IgA nephropathy patients: evidence for a negative regulatory role of serum IgA. Kidney Int 53:1321–1335PubMed
80.
Zurück zum Zitat van Zandbergen G, van Kooten C, Mohamad NK, Reterink TJ, de Fijter JW, van de Winkel JG, Daha MR (1998) Reduced binding of immunoglobulin A (IgA) from patients with primary IgA nephropathy to the myeloid IgA Fc-receptor, CD89. Nephrol Dial Transplant 13:3058–3064PubMed van Zandbergen G, van Kooten C, Mohamad NK, Reterink TJ, de Fijter JW, van de Winkel JG, Daha MR (1998) Reduced binding of immunoglobulin A (IgA) from patients with primary IgA nephropathy to the myeloid IgA Fc-receptor, CD89. Nephrol Dial Transplant 13:3058–3064PubMed
81.
Zurück zum Zitat Moura IC, Arcos-Fajardo M, Sadaka C, Leroy V, Benhamou M, Novak J, Vrtovsnik F, Haddad E, Chintalacharuvu KR, Monteiro RC (2004) Glycosylation and size of IgA1 are essential for interaction with mesangial transferrin receptor in IgA nephropathy. J Am Soc Nephrol 15:622–634PubMed Moura IC, Arcos-Fajardo M, Sadaka C, Leroy V, Benhamou M, Novak J, Vrtovsnik F, Haddad E, Chintalacharuvu KR, Monteiro RC (2004) Glycosylation and size of IgA1 are essential for interaction with mesangial transferrin receptor in IgA nephropathy. J Am Soc Nephrol 15:622–634PubMed
82.
Zurück zum Zitat Merry AH, Gilbert RJ, Shore DA, Royle L, Miroshnychenko O, Vuong M, Wormald MR, Harvey DJ, Dwek RA, Classon BJ, Rudd PM, Davis SJ (2003) O-glycan sialylation and the structure of the stalk-like region of the T cell co-receptor CD8. J Biol Chem 278:27119–27128PubMed Merry AH, Gilbert RJ, Shore DA, Royle L, Miroshnychenko O, Vuong M, Wormald MR, Harvey DJ, Dwek RA, Classon BJ, Rudd PM, Davis SJ (2003) O-glycan sialylation and the structure of the stalk-like region of the T cell co-receptor CD8. J Biol Chem 278:27119–27128PubMed
83.
Zurück zum Zitat Monteiro RC, Grossetete B, Nguyen AT, Jungers P, Lehuen A (1995) Dysfunctions of Fc alpha receptors by blood phagocytic cells in IgA nephropathy. Contrib Nephrol 111:116–122PubMed Monteiro RC, Grossetete B, Nguyen AT, Jungers P, Lehuen A (1995) Dysfunctions of Fc alpha receptors by blood phagocytic cells in IgA nephropathy. Contrib Nephrol 111:116–122PubMed
84.
Zurück zum Zitat Toyabe S, Kuwano Y, Takeda K, Uchiyama M, Abo T (1997) IgA nephropathy-specific expression of the IgA Fc receptors (CD89) on blood phagocytic cells. Clin Exp Immunol 110:226–232PubMedCrossRef Toyabe S, Kuwano Y, Takeda K, Uchiyama M, Abo T (1997) IgA nephropathy-specific expression of the IgA Fc receptors (CD89) on blood phagocytic cells. Clin Exp Immunol 110:226–232PubMedCrossRef
85.
Zurück zum Zitat Barratt J, Greer MR, Pawluczyk IZ, Allen AC, Bailey EM, Buck KS, Feehally J (2000) Identification of a novel Fcalpha receptor expressed by human mesangial cells. Kidney Int 57:1936–1948PubMed Barratt J, Greer MR, Pawluczyk IZ, Allen AC, Bailey EM, Buck KS, Feehally J (2000) Identification of a novel Fcalpha receptor expressed by human mesangial cells. Kidney Int 57:1936–1948PubMed
86.
Zurück zum Zitat Westerhuis R, Van Zandbergen G, Verhagen NA, Klar-Mohamad N, Daha MR, van Kooten C (1999) Human mesangial cells in culture and in kidney sections fail to express Fc alpha receptor (CD89). J Am Soc Nephrol 10:770–778PubMed Westerhuis R, Van Zandbergen G, Verhagen NA, Klar-Mohamad N, Daha MR, van Kooten C (1999) Human mesangial cells in culture and in kidney sections fail to express Fc alpha receptor (CD89). J Am Soc Nephrol 10:770–778PubMed
87.
Zurück zum Zitat Leung JC, Tsang AW, Chan DT, Lai KN (2000) Absence of CD89, polymeric immunoglobulin receptor, and asialoglycoprotein receptor on human mesangial cells. J Am Soc Nephrol 11:241–249PubMed Leung JC, Tsang AW, Chan DT, Lai KN (2000) Absence of CD89, polymeric immunoglobulin receptor, and asialoglycoprotein receptor on human mesangial cells. J Am Soc Nephrol 11:241–249PubMed
88.
Zurück zum Zitat Haddad E, Moura IC, Arcos-Fajardo M, Macher MA, Baudouin V, Alberti C, Loirat C, Monteiro RC, Peuchmaur M (2003) Enhanced expression of the CD71 mesangial IgA1 receptor in Berger disease and Henoch–Schonlein nephritis: association between CD71 expression and IgA deposits. J Am Soc Nephrol 14:327–337PubMed Haddad E, Moura IC, Arcos-Fajardo M, Macher MA, Baudouin V, Alberti C, Loirat C, Monteiro RC, Peuchmaur M (2003) Enhanced expression of the CD71 mesangial IgA1 receptor in Berger disease and Henoch–Schonlein nephritis: association between CD71 expression and IgA deposits. J Am Soc Nephrol 14:327–337PubMed
89.
Zurück zum Zitat Peebles RS Jr, Hamilton RG, Lichtenstein LM, Schlosberg M, Liu MC, Proud D, Togias A (2001) Antigen-specific IgE and IgA antibodies in bronchoalveolar lavage fluid are associated with stronger antigen-induced late phase reactions. Clin Exp Allergy 31:239–248PubMed Peebles RS Jr, Hamilton RG, Lichtenstein LM, Schlosberg M, Liu MC, Proud D, Togias A (2001) Antigen-specific IgE and IgA antibodies in bronchoalveolar lavage fluid are associated with stronger antigen-induced late phase reactions. Clin Exp Allergy 31:239–248PubMed
90.
Zurück zum Zitat Nahm DH, Kim HY, Park HS (1998) Elevation of specific immunoglobulin A antibodies to both allergen and bacterial antigen in induced sputum from asthmatics. Eur Respir J 12:540–545PubMed Nahm DH, Kim HY, Park HS (1998) Elevation of specific immunoglobulin A antibodies to both allergen and bacterial antigen in induced sputum from asthmatics. Eur Respir J 12:540–545PubMed
91.
Zurück zum Zitat Terada N, Terada Y, Shirotori K, Ishikawa K, Togawa K, Konno A (1996) Immunoglobulin as an eosinophil degranulation factor: change in immunoglobulin level in nasal lavage fluid after antigen challenge. Acta Otolaryngol 116:863–867PubMed Terada N, Terada Y, Shirotori K, Ishikawa K, Togawa K, Konno A (1996) Immunoglobulin as an eosinophil degranulation factor: change in immunoglobulin level in nasal lavage fluid after antigen challenge. Acta Otolaryngol 116:863–867PubMed
92.
Zurück zum Zitat Peebles RS Jr, Liu MC, Lichtenstein LM, Hamilton RG (1995) IgA, IgG and IgM quantification in bronchoalveolar lavage fluids from allergic rhinitics, allergic asthmatics, and normal subjects by monoclonal antibody-based immunoenzymetric assays. J Immunol Methods 179:77–86PubMed Peebles RS Jr, Liu MC, Lichtenstein LM, Hamilton RG (1995) IgA, IgG and IgM quantification in bronchoalveolar lavage fluids from allergic rhinitics, allergic asthmatics, and normal subjects by monoclonal antibody-based immunoenzymetric assays. J Immunol Methods 179:77–86PubMed
93.
Zurück zum Zitat Iikura M, Yamaguchi M, Fujisawa T, Miyamasu M, Takaishi T, Morita Y, Iwase T, Moro I, Yamamoto K, Hirai K (1998) Secretory IgA induces degranulation of IL-3-primed basophils. J Immunol 161:1510–1515PubMed Iikura M, Yamaguchi M, Fujisawa T, Miyamasu M, Takaishi T, Morita Y, Iwase T, Moro I, Yamamoto K, Hirai K (1998) Secretory IgA induces degranulation of IL-3-primed basophils. J Immunol 161:1510–1515PubMed
94.
Zurück zum Zitat Seminario MC, Gleich GJ (1994) The role of eosinophils in the pathogenesis of asthma. Curr Opin Immunol 6:860–864PubMed Seminario MC, Gleich GJ (1994) The role of eosinophils in the pathogenesis of asthma. Curr Opin Immunol 6:860–864PubMed
95.
Zurück zum Zitat Pleass RJ, Lang ML, Kerr MA, Woof JM (2006) IgA is a more potent inducer of NADPH oxidase activation and degranulation in blood eosinophils than IgE. Mol Immunol 1401–1408 Pleass RJ, Lang ML, Kerr MA, Woof JM (2006) IgA is a more potent inducer of NADPH oxidase activation and degranulation in blood eosinophils than IgE. Mol Immunol 1401–1408
96.
Zurück zum Zitat Abu-Ghazaleh RI, Fujisawa T, Mestecky J, Kyle RA, Gleich GJ (1989) IgA-induced eosinophil degranulation. J Immunol 142:2393–2400PubMed Abu-Ghazaleh RI, Fujisawa T, Mestecky J, Kyle RA, Gleich GJ (1989) IgA-induced eosinophil degranulation. J Immunol 142:2393–2400PubMed
97.
Zurück zum Zitat Pilette C, Durham SR, Vaerman JP, Sibille Y (2004) Mucosal immunity in asthma and chronic obstructive pulmonary disease: a role for immunoglobulin A? Proc Am Thorac Soc 1:125–135PubMed Pilette C, Durham SR, Vaerman JP, Sibille Y (2004) Mucosal immunity in asthma and chronic obstructive pulmonary disease: a role for immunoglobulin A? Proc Am Thorac Soc 1:125–135PubMed
98.
Zurück zum Zitat Ludviksson BR, Eiriksson TH, Ardal B, Sigfusson A, Valdimarsson H (1992) Correlation between serum immunoglobulin A concentrations and allergic manifestations in infants. J Pediatr 121:23–27PubMed Ludviksson BR, Eiriksson TH, Ardal B, Sigfusson A, Valdimarsson H (1992) Correlation between serum immunoglobulin A concentrations and allergic manifestations in infants. J Pediatr 121:23–27PubMed
99.
Zurück zum Zitat Schwarze J, Cieslewicz G, Joetham A, Sun LK, Sun WN, Chang TW, Hamelmann E, Gelfand EW (1998) Antigen-specific immunoglobulin-A prevents increased airway responsiveness and lung eosinophilia after airway challenge in sensitized mice. Am J Respir Crit Care Med 158:519–525PubMed Schwarze J, Cieslewicz G, Joetham A, Sun LK, Sun WN, Chang TW, Hamelmann E, Gelfand EW (1998) Antigen-specific immunoglobulin-A prevents increased airway responsiveness and lung eosinophilia after airway challenge in sensitized mice. Am J Respir Crit Care Med 158:519–525PubMed
100.
Zurück zum Zitat Montenegro V, Monteiro RC (1999) Elevation of serum IgA in spondyloarthropathies and IgA nephropathy and its pathogenic role. Curr Opin Rheumatol 11:265–272PubMed Montenegro V, Monteiro RC (1999) Elevation of serum IgA in spondyloarthropathies and IgA nephropathy and its pathogenic role. Curr Opin Rheumatol 11:265–272PubMed
101.
Zurück zum Zitat Veys EM, van Leare M (1973) Serum IgG, IgM, and IgA levels in ankylosing spondylitis. Ann Rheum Dis 32:493–496PubMedCrossRef Veys EM, van Leare M (1973) Serum IgG, IgM, and IgA levels in ankylosing spondylitis. Ann Rheum Dis 32:493–496PubMedCrossRef
102.
Zurück zum Zitat Feltelius N, Hvatum M, Brandtzaeg P, Knutson L, Hallgren R (1994) Increased jejunal secretory IgA and IgM in ankylosing spondylitis: normalization after treatment with sulfasalazine. J Rheumatol 21:2076–2081PubMed Feltelius N, Hvatum M, Brandtzaeg P, Knutson L, Hallgren R (1994) Increased jejunal secretory IgA and IgM in ankylosing spondylitis: normalization after treatment with sulfasalazine. J Rheumatol 21:2076–2081PubMed
103.
Zurück zum Zitat Hunter T, Harding GK, Kaprove RE, Schroeder ML (1981) Fecal carriage of various Klebsiella and Enterobacter species in patients with active ankylosing spondylitis. Arthritis Rheum 24:106–108PubMed Hunter T, Harding GK, Kaprove RE, Schroeder ML (1981) Fecal carriage of various Klebsiella and Enterobacter species in patients with active ankylosing spondylitis. Arthritis Rheum 24:106–108PubMed
104.
Zurück zum Zitat Montenegro V, Chiamolera M, Launay P, Goncalves CR, Monteiro RC (2000) Impaired expression of IgA Fc receptors (CD89) by blood phagocytic cells in ankylosing spondylitis. J Rheumatol 27:411–417PubMed Montenegro V, Chiamolera M, Launay P, Goncalves CR, Monteiro RC (2000) Impaired expression of IgA Fc receptors (CD89) by blood phagocytic cells in ankylosing spondylitis. J Rheumatol 27:411–417PubMed
105.
Zurück zum Zitat Brandtzaeg P (2006) The changing immunological paradigm in coeliac disease. Immunol Lett 105:127–139PubMed Brandtzaeg P (2006) The changing immunological paradigm in coeliac disease. Immunol Lett 105:127–139PubMed
106.
Zurück zum Zitat Woof JM, Kerr MA (2006) The function of immunoglobulin A in immunity. J Pathol 208:270–282PubMed Woof JM, Kerr MA (2006) The function of immunoglobulin A in immunity. J Pathol 208:270–282PubMed
107.
Zurück zum Zitat Fry L (2002) Dermatitis herpetiformis: problems, progress and prospects. Eur J Dermatol 12:523–531PubMed Fry L (2002) Dermatitis herpetiformis: problems, progress and prospects. Eur J Dermatol 12:523–531PubMed
108.
Zurück zum Zitat Collin P, Maki M, Keyrilainen O, Hallstrom O, Reunala T, Pasternack A (1992) Selective IgA deficiency and coeliac disease. Scand J Gastroenterol 27:367–371PubMed Collin P, Maki M, Keyrilainen O, Hallstrom O, Reunala T, Pasternack A (1992) Selective IgA deficiency and coeliac disease. Scand J Gastroenterol 27:367–371PubMed
109.
Zurück zum Zitat Silvain C, Patry C, Launay P, Lehuen A, Monteiro RC (1995) Altered expression of monocyte IgA Fc receptors is associated with defective endocytosis in patients with alcoholic cirrhosis. Potential role for IFN-gamma. J Immunol 155:1606–1618PubMed Silvain C, Patry C, Launay P, Lehuen A, Monteiro RC (1995) Altered expression of monocyte IgA Fc receptors is associated with defective endocytosis in patients with alcoholic cirrhosis. Potential role for IFN-gamma. J Immunol 155:1606–1618PubMed
110.
Zurück zum Zitat Basset C, Durand V, Jamin C, Clement J, Pennec Y, Youinou P, Dueymes M, Roitt IM (2000) Increased N-linked glycosylation leading to oversialylation of monomeric immunoglobulin A1 from patients with Sjogren’s syndrome. Scand J Immunol 51:300–306PubMed Basset C, Durand V, Jamin C, Clement J, Pennec Y, Youinou P, Dueymes M, Roitt IM (2000) Increased N-linked glycosylation leading to oversialylation of monomeric immunoglobulin A1 from patients with Sjogren’s syndrome. Scand J Immunol 51:300–306PubMed
111.
Zurück zum Zitat Saulsbury FT (2001) Henoch–Schonlein purpura. Curr Opin Rheumatol 13:35–40PubMed Saulsbury FT (2001) Henoch–Schonlein purpura. Curr Opin Rheumatol 13:35–40PubMed
112.
Zurück zum Zitat Saulsbury FT (1997) Alterations in the O-linked glycosylation of IgA1 in children with Henoch–Schonlein purpura. J Rheumatol 24:2246–2249PubMed Saulsbury FT (1997) Alterations in the O-linked glycosylation of IgA1 in children with Henoch–Schonlein purpura. J Rheumatol 24:2246–2249PubMed
113.
Zurück zum Zitat Allen AC, Willis FR, Beattie TJ, Feehally J (1998) Abnormal IgA glycosylation in Henoch–Schonlein purpura restricted to patients with clinical nephritis. Nephrol Dial Transplant 13:930–934PubMed Allen AC, Willis FR, Beattie TJ, Feehally J (1998) Abnormal IgA glycosylation in Henoch–Schonlein purpura restricted to patients with clinical nephritis. Nephrol Dial Transplant 13:930–934PubMed
114.
Zurück zum Zitat Glennie MJ, Johnson PW (2000) Clinical trials of antibody therapy. Immunol Today 21:403–410PubMed Glennie MJ, Johnson PW (2000) Clinical trials of antibody therapy. Immunol Today 21:403–410PubMed
115.
Zurück zum Zitat von Mehren M, Adams GP, Weiner LM (2003) Monoclonal antibody therapy for cancer. Annu Rev Med 54:343–369 von Mehren M, Adams GP, Weiner LM (2003) Monoclonal antibody therapy for cancer. Annu Rev Med 54:343–369
116.
Zurück zum Zitat Valerius T, Stockmeyer B, van Spriel AB, Graziano RF, van den Herik-Oudijk IE, Repp R, Deo YM, Lund J, Kalden JR, Gramatzki M, van de Winkel JG (1997) FcalphaRI (CD89) as a novel trigger molecule for bispecific antibody therapy. Blood 90:4485–4492PubMed Valerius T, Stockmeyer B, van Spriel AB, Graziano RF, van den Herik-Oudijk IE, Repp R, Deo YM, Lund J, Kalden JR, Gramatzki M, van de Winkel JG (1997) FcalphaRI (CD89) as a novel trigger molecule for bispecific antibody therapy. Blood 90:4485–4492PubMed
117.
Zurück zum Zitat Huls G, Heijnen IA, Cuomo E, van der Linden J, Boel E, van de Winkel JG, Logtenberg T (1999) Antitumor immune effector mechanisms recruited by phage display-derived fully human IgG1 and IgA1 monoclonal antibodies. Cancer Res 59:5778–5784PubMed Huls G, Heijnen IA, Cuomo E, van der Linden J, Boel E, van de Winkel JG, Logtenberg T (1999) Antitumor immune effector mechanisms recruited by phage display-derived fully human IgG1 and IgA1 monoclonal antibodies. Cancer Res 59:5778–5784PubMed
118.
Zurück zum Zitat Otten MA, Rudolph E, Dechant M, Tuk CW, Reijmers RM, Beelen RH, van de Winkel JG, van Egmond M (2005) Immature neutrophils mediate tumor cell killing via IgA but not IgG Fc receptors. J Immunol 174:5472–5480PubMed Otten MA, Rudolph E, Dechant M, Tuk CW, Reijmers RM, Beelen RH, van de Winkel JG, van Egmond M (2005) Immature neutrophils mediate tumor cell killing via IgA but not IgG Fc receptors. J Immunol 174:5472–5480PubMed
119.
Zurück zum Zitat Dechant M, Vidarsson G, Stockmeyer B, Repp R, Glennie MJ, Gramatzki M, van de Winkel JG, Valerius T (2002) Chimeric IgA antibodies against HLA class II effectively trigger lymphoma cell killing. Blood 100:4574–4580PubMed Dechant M, Vidarsson G, Stockmeyer B, Repp R, Glennie MJ, Gramatzki M, van de Winkel JG, Valerius T (2002) Chimeric IgA antibodies against HLA class II effectively trigger lymphoma cell killing. Blood 100:4574–4580PubMed
120.
Zurück zum Zitat Neutra MR, Kozlowski PA (2006) Mucosal vaccines: the promise and the challenge. Nat Rev Immunol 6:148–158PubMed Neutra MR, Kozlowski PA (2006) Mucosal vaccines: the promise and the challenge. Nat Rev Immunol 6:148–158PubMed
121.
Zurück zum Zitat Niedergang F, Kweon MN (2005) New trends in antigen uptake in the gut mucosa. Trends Microbiol 13:485–490PubMed Niedergang F, Kweon MN (2005) New trends in antigen uptake in the gut mucosa. Trends Microbiol 13:485–490PubMed
122.
Zurück zum Zitat Ogra PL (2003) Mucosal immunity: some historical perspective on host–pathogen interactions and implications for mucosal vaccines. Immunol Cell Biol 81:23–33PubMed Ogra PL (2003) Mucosal immunity: some historical perspective on host–pathogen interactions and implications for mucosal vaccines. Immunol Cell Biol 81:23–33PubMed
123.
Zurück zum Zitat Onorato IM, Modlin JF, McBean AM, Thoms ML, Losonsky GA, Bernier RH (1991) Mucosal immunity induced by enhance-potency inactivated and oral polio vaccines. J Infect Dis 163:1–6PubMed Onorato IM, Modlin JF, McBean AM, Thoms ML, Losonsky GA, Bernier RH (1991) Mucosal immunity induced by enhance-potency inactivated and oral polio vaccines. J Infect Dis 163:1–6PubMed
124.
Zurück zum Zitat Tamura S, Kurata H, Funato H, Nagamine T, Aizawa C, Kurata T (1989) Protection against influenza virus infection by a two-dose regimen of nasal vaccination using vaccines combined with cholera toxin B subunit. Vaccine 7:314–320PubMed Tamura S, Kurata H, Funato H, Nagamine T, Aizawa C, Kurata T (1989) Protection against influenza virus infection by a two-dose regimen of nasal vaccination using vaccines combined with cholera toxin B subunit. Vaccine 7:314–320PubMed
125.
Zurück zum Zitat Corthesy B, Kaufmann M, Phalipon A, Peitsch M, Neutra MR, Kraehenbuhl JP (1996) A pathogen-specific epitope inserted into recombinant secretory immunoglobulin A is immunogenic by the oral route. J Biol Chem 271:33670–33677PubMed Corthesy B, Kaufmann M, Phalipon A, Peitsch M, Neutra MR, Kraehenbuhl JP (1996) A pathogen-specific epitope inserted into recombinant secretory immunoglobulin A is immunogenic by the oral route. J Biol Chem 271:33670–33677PubMed
Metadaten
Titel
IgA and IgA-specific receptors in human disease: structural and functional insights into pathogenesis and therapeutic potential
verfasst von
Michelle M. Gomes
Andrew B. Herr
Publikationsdatum
01.12.2006
Verlag
Springer-Verlag
Erschienen in
Seminars in Immunopathology / Ausgabe 4/2006
Print ISSN: 1863-2297
Elektronische ISSN: 1863-2300
DOI
https://doi.org/10.1007/s00281-006-0048-x

Weitere Artikel der Ausgabe 4/2006

Seminars in Immunopathology 4/2006 Zur Ausgabe

Leitlinien kompakt für die Innere Medizin

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

„Jeder Fall von plötzlichem Tod muss obduziert werden!“

17.05.2024 Plötzlicher Herztod Nachrichten

Ein signifikanter Anteil der Fälle von plötzlichem Herztod ist genetisch bedingt. Um ihre Verwandten vor diesem Schicksal zu bewahren, sollten jüngere Personen, die plötzlich unerwartet versterben, ausnahmslos einer Autopsie unterzogen werden.

Hirnblutung unter DOAK und VKA ähnlich bedrohlich

17.05.2024 Direkte orale Antikoagulanzien Nachrichten

Kommt es zu einer nichttraumatischen Hirnblutung, spielt es keine große Rolle, ob die Betroffenen zuvor direkt wirksame orale Antikoagulanzien oder Marcumar bekommen haben: Die Prognose ist ähnlich schlecht.

Schlechtere Vorhofflimmern-Prognose bei kleinem linken Ventrikel

17.05.2024 Vorhofflimmern Nachrichten

Nicht nur ein vergrößerter, sondern auch ein kleiner linker Ventrikel ist bei Vorhofflimmern mit einer erhöhten Komplikationsrate assoziiert. Der Zusammenhang besteht nach Daten aus China unabhängig von anderen Risikofaktoren.

Semaglutid bei Herzinsuffizienz: Wie erklärt sich die Wirksamkeit?

17.05.2024 Herzinsuffizienz Nachrichten

Bei adipösen Patienten mit Herzinsuffizienz des HFpEF-Phänotyps ist Semaglutid von symptomatischem Nutzen. Resultiert dieser Benefit allein aus der Gewichtsreduktion oder auch aus spezifischen Effekten auf die Herzinsuffizienz-Pathogenese? Eine neue Analyse gibt Aufschluss.

Update Innere Medizin

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.