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Hinge-Region O-Glycosylation of Human Immunoglobulin G3 (IgG3)

Immunoglobulin G (IgG) is one of the most abundant proteins present in human serum and a fundamental component of the immune system. IgG3 represents ∼8% of the total amount of IgG in human serum and stands out from the other IgG subclasses because of its elongated hinge region and enhanced effector...

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Autores principales: Plomp, Rosina, Dekkers, Gillian, Rombouts, Yoann, Visser, Remco, Koeleman, Carolien A.M., Kammeijer, Guinevere S.M., Jansen, Bas C., Rispens, Theo, Hensbergen, Paul J., Vidarsson, Gestur, Wuhrer, Manfred
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Biochemistry and Molecular Biology 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4424406/
https://www.ncbi.nlm.nih.gov/pubmed/25759508
http://dx.doi.org/10.1074/mcp.M114.047381
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author Plomp, Rosina
Dekkers, Gillian
Rombouts, Yoann
Visser, Remco
Koeleman, Carolien A.M.
Kammeijer, Guinevere S.M.
Jansen, Bas C.
Rispens, Theo
Hensbergen, Paul J.
Vidarsson, Gestur
Wuhrer, Manfred
author_facet Plomp, Rosina
Dekkers, Gillian
Rombouts, Yoann
Visser, Remco
Koeleman, Carolien A.M.
Kammeijer, Guinevere S.M.
Jansen, Bas C.
Rispens, Theo
Hensbergen, Paul J.
Vidarsson, Gestur
Wuhrer, Manfred
author_sort Plomp, Rosina
collection PubMed
description Immunoglobulin G (IgG) is one of the most abundant proteins present in human serum and a fundamental component of the immune system. IgG3 represents ∼8% of the total amount of IgG in human serum and stands out from the other IgG subclasses because of its elongated hinge region and enhanced effector functions. This study reports partial O-glycosylation of the IgG3 hinge region, observed with nanoLC-ESI-IT-MS(/MS) analysis after proteolytic digestion. The repeat regions within the IgG3 hinge were found to be in part O-glycosylated at the threonine in the triple repeat motif. Non-, mono- and disialylated core 1-type O-glycans were detected in various IgG3 samples, both poly- and monoclonal. NanoLC-ESI-IT-MS/MS with electron transfer dissociation fragmentation and CE-MS/MS with CID fragmentation were used to determine the site of IgG3 O-glycosylation. The O-glycosylation site was further confirmed by the recombinant production of mutant IgG3 in which potential O-glycosylation sites had been knocked out. For IgG3 samples from six donors we found similar O-glycan structures and site occupancies, whereas for the same samples the conserved N-glycosylation of the Fc CH2 domain showed considerable interindividual variation. The occupancy of each of the three O-glycosylation sites was found to be ∼10% in six serum-derived IgG3 samples and ∼13% in two monoclonal IgG3 allotypes.
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spelling pubmed-44244062015-05-18 Hinge-Region O-Glycosylation of Human Immunoglobulin G3 (IgG3) Plomp, Rosina Dekkers, Gillian Rombouts, Yoann Visser, Remco Koeleman, Carolien A.M. Kammeijer, Guinevere S.M. Jansen, Bas C. Rispens, Theo Hensbergen, Paul J. Vidarsson, Gestur Wuhrer, Manfred Mol Cell Proteomics Research Immunoglobulin G (IgG) is one of the most abundant proteins present in human serum and a fundamental component of the immune system. IgG3 represents ∼8% of the total amount of IgG in human serum and stands out from the other IgG subclasses because of its elongated hinge region and enhanced effector functions. This study reports partial O-glycosylation of the IgG3 hinge region, observed with nanoLC-ESI-IT-MS(/MS) analysis after proteolytic digestion. The repeat regions within the IgG3 hinge were found to be in part O-glycosylated at the threonine in the triple repeat motif. Non-, mono- and disialylated core 1-type O-glycans were detected in various IgG3 samples, both poly- and monoclonal. NanoLC-ESI-IT-MS/MS with electron transfer dissociation fragmentation and CE-MS/MS with CID fragmentation were used to determine the site of IgG3 O-glycosylation. The O-glycosylation site was further confirmed by the recombinant production of mutant IgG3 in which potential O-glycosylation sites had been knocked out. For IgG3 samples from six donors we found similar O-glycan structures and site occupancies, whereas for the same samples the conserved N-glycosylation of the Fc CH2 domain showed considerable interindividual variation. The occupancy of each of the three O-glycosylation sites was found to be ∼10% in six serum-derived IgG3 samples and ∼13% in two monoclonal IgG3 allotypes. The American Society for Biochemistry and Molecular Biology 2015-05 2015-03-10 /pmc/articles/PMC4424406/ /pubmed/25759508 http://dx.doi.org/10.1074/mcp.M114.047381 Text en © 2015 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/3.0) .
spellingShingle Research
Plomp, Rosina
Dekkers, Gillian
Rombouts, Yoann
Visser, Remco
Koeleman, Carolien A.M.
Kammeijer, Guinevere S.M.
Jansen, Bas C.
Rispens, Theo
Hensbergen, Paul J.
Vidarsson, Gestur
Wuhrer, Manfred
Hinge-Region O-Glycosylation of Human Immunoglobulin G3 (IgG3)
title Hinge-Region O-Glycosylation of Human Immunoglobulin G3 (IgG3)
title_full Hinge-Region O-Glycosylation of Human Immunoglobulin G3 (IgG3)
title_fullStr Hinge-Region O-Glycosylation of Human Immunoglobulin G3 (IgG3)
title_full_unstemmed Hinge-Region O-Glycosylation of Human Immunoglobulin G3 (IgG3)
title_short Hinge-Region O-Glycosylation of Human Immunoglobulin G3 (IgG3)
title_sort hinge-region o-glycosylation of human immunoglobulin g3 (igg3)
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4424406/
https://www.ncbi.nlm.nih.gov/pubmed/25759508
http://dx.doi.org/10.1074/mcp.M114.047381
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