Cargando…

Characterization of Endogenous Human FcγRIII by Mass Spectrometry Reveals Site, Allele and Sequence Specific Glycosylation*

The importance of IgG glycosylation, Fc-gamma receptor (FcγR) single nucleotide polymorphisms and FcγR copy number variations in fine tuning the immune response has been well established. There is a growing appreciation of the importance of glycosylation of FcγRs in modulating the FcγR-IgG interacti...

Descripción completa

Detalles Bibliográficos
Autores principales: Washburn, Nathaniel, Meccariello, Robin, Duffner, Jay, Getchell, Kristen, Holte, Kimberly, Prod'homme, Thomas, Srinivasan, Karunya, Prenovitz, Robert, Lansing, Jonathan, Capila, Ishan, Kaundinya, Ganesh, Manning, Anthony M., Bosques, Carlos J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society for Biochemistry and Molecular Biology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6398215/
https://www.ncbi.nlm.nih.gov/pubmed/30559323
http://dx.doi.org/10.1074/mcp.RA118.001142
_version_ 1783399541021605888
author Washburn, Nathaniel
Meccariello, Robin
Duffner, Jay
Getchell, Kristen
Holte, Kimberly
Prod'homme, Thomas
Srinivasan, Karunya
Prenovitz, Robert
Lansing, Jonathan
Capila, Ishan
Kaundinya, Ganesh
Manning, Anthony M.
Bosques, Carlos J.
author_facet Washburn, Nathaniel
Meccariello, Robin
Duffner, Jay
Getchell, Kristen
Holte, Kimberly
Prod'homme, Thomas
Srinivasan, Karunya
Prenovitz, Robert
Lansing, Jonathan
Capila, Ishan
Kaundinya, Ganesh
Manning, Anthony M.
Bosques, Carlos J.
author_sort Washburn, Nathaniel
collection PubMed
description The importance of IgG glycosylation, Fc-gamma receptor (FcγR) single nucleotide polymorphisms and FcγR copy number variations in fine tuning the immune response has been well established. There is a growing appreciation of the importance of glycosylation of FcγRs in modulating the FcγR-IgG interaction based on the association between the glycosylation of recombinant FcγRs and the kinetics and affinity of the FcγR-IgG interaction. Although glycosylation of recombinant FcγRs has been recently characterized, limited knowledge exists on the glycosylation of endogenous human FcγRs. In order to improve the structural understanding of FcγRs expressed on human cells we characterized the site specific glycosylation of native human FcγRIII from neutrophils of 50 healthy donors and from matched plasma for 43 of these individuals. Through this analysis we have confirmed site specific glycosylation patterns previously reported for soluble FcγRIII from a single donor, identified FcγRIIIb specific Asn45 glycosylation and an allelic effect on glycosylation at Asn162 of FcγRIIIb. Identification of FcγRIIIb specific glycosylation allows for assignment of FcγRIIIb alleles and relative copy number of the two alleles where DNA/RNA is not available. Intriguingly the types of structures found to be elevated at Asn162 in the NA2 allele have been shown to destabilize the Fc:FcγRIII interaction resulting in a faster dissociation rate. These differences in glycosylation may in part explain the differential activity reported for the two alleles which have similar in vitro affinity for IgG.
format Online
Article
Text
id pubmed-6398215
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher The American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-63982152019-03-05 Characterization of Endogenous Human FcγRIII by Mass Spectrometry Reveals Site, Allele and Sequence Specific Glycosylation* Washburn, Nathaniel Meccariello, Robin Duffner, Jay Getchell, Kristen Holte, Kimberly Prod'homme, Thomas Srinivasan, Karunya Prenovitz, Robert Lansing, Jonathan Capila, Ishan Kaundinya, Ganesh Manning, Anthony M. Bosques, Carlos J. Mol Cell Proteomics Research The importance of IgG glycosylation, Fc-gamma receptor (FcγR) single nucleotide polymorphisms and FcγR copy number variations in fine tuning the immune response has been well established. There is a growing appreciation of the importance of glycosylation of FcγRs in modulating the FcγR-IgG interaction based on the association between the glycosylation of recombinant FcγRs and the kinetics and affinity of the FcγR-IgG interaction. Although glycosylation of recombinant FcγRs has been recently characterized, limited knowledge exists on the glycosylation of endogenous human FcγRs. In order to improve the structural understanding of FcγRs expressed on human cells we characterized the site specific glycosylation of native human FcγRIII from neutrophils of 50 healthy donors and from matched plasma for 43 of these individuals. Through this analysis we have confirmed site specific glycosylation patterns previously reported for soluble FcγRIII from a single donor, identified FcγRIIIb specific Asn45 glycosylation and an allelic effect on glycosylation at Asn162 of FcγRIIIb. Identification of FcγRIIIb specific glycosylation allows for assignment of FcγRIIIb alleles and relative copy number of the two alleles where DNA/RNA is not available. Intriguingly the types of structures found to be elevated at Asn162 in the NA2 allele have been shown to destabilize the Fc:FcγRIII interaction resulting in a faster dissociation rate. These differences in glycosylation may in part explain the differential activity reported for the two alleles which have similar in vitro affinity for IgG. The American Society for Biochemistry and Molecular Biology 2019-03 2018-12-17 /pmc/articles/PMC6398215/ /pubmed/30559323 http://dx.doi.org/10.1074/mcp.RA118.001142 Text en © 2019 Washburn et al. Published by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version open access under the terms of the Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Research
Washburn, Nathaniel
Meccariello, Robin
Duffner, Jay
Getchell, Kristen
Holte, Kimberly
Prod'homme, Thomas
Srinivasan, Karunya
Prenovitz, Robert
Lansing, Jonathan
Capila, Ishan
Kaundinya, Ganesh
Manning, Anthony M.
Bosques, Carlos J.
Characterization of Endogenous Human FcγRIII by Mass Spectrometry Reveals Site, Allele and Sequence Specific Glycosylation*
title Characterization of Endogenous Human FcγRIII by Mass Spectrometry Reveals Site, Allele and Sequence Specific Glycosylation*
title_full Characterization of Endogenous Human FcγRIII by Mass Spectrometry Reveals Site, Allele and Sequence Specific Glycosylation*
title_fullStr Characterization of Endogenous Human FcγRIII by Mass Spectrometry Reveals Site, Allele and Sequence Specific Glycosylation*
title_full_unstemmed Characterization of Endogenous Human FcγRIII by Mass Spectrometry Reveals Site, Allele and Sequence Specific Glycosylation*
title_short Characterization of Endogenous Human FcγRIII by Mass Spectrometry Reveals Site, Allele and Sequence Specific Glycosylation*
title_sort characterization of endogenous human fcγriii by mass spectrometry reveals site, allele and sequence specific glycosylation*
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6398215/
https://www.ncbi.nlm.nih.gov/pubmed/30559323
http://dx.doi.org/10.1074/mcp.RA118.001142
work_keys_str_mv AT washburnnathaniel characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation
AT meccariellorobin characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation
AT duffnerjay characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation
AT getchellkristen characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation
AT holtekimberly characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation
AT prodhommethomas characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation
AT srinivasankarunya characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation
AT prenovitzrobert characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation
AT lansingjonathan characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation
AT capilaishan characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation
AT kaundinyaganesh characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation
AT manninganthonym characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation
AT bosquescarlosj characterizationofendogenoushumanfcgriiibymassspectrometryrevealssitealleleandsequencespecificglycosylation