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Simultaneous Immunoglobulin A and G Glycopeptide Profiling for High-Throughput Applications

[Image: see text] Immunoglobulin (Ig) glycosylation is recognized for its influence on Ig turnover and effector functions. However, the large-scale profiling of Ig glycosylation in a biomedical setting is challenged by the existence of different Ig isotypes and subclasses, their varying serum concen...

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Autores principales: Momčilović, Ana, de Haan, Noortje, Hipgrave Ederveen, Agnes L., Bondt, Albert, Koeleman, Carolien A. M., Falck, David, de Neef, Louise A., Mesker, Wilma E., Tollenaar, Rob, de Ru, Arnoud, van Veelen, Peter, Wuhrer, Manfred, Dotz, Viktoria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7252899/
https://www.ncbi.nlm.nih.gov/pubmed/32091889
http://dx.doi.org/10.1021/acs.analchem.9b05722
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author Momčilović, Ana
de Haan, Noortje
Hipgrave Ederveen, Agnes L.
Bondt, Albert
Koeleman, Carolien A. M.
Falck, David
de Neef, Louise A.
Mesker, Wilma E.
Tollenaar, Rob
de Ru, Arnoud
van Veelen, Peter
Wuhrer, Manfred
Dotz, Viktoria
author_facet Momčilović, Ana
de Haan, Noortje
Hipgrave Ederveen, Agnes L.
Bondt, Albert
Koeleman, Carolien A. M.
Falck, David
de Neef, Louise A.
Mesker, Wilma E.
Tollenaar, Rob
de Ru, Arnoud
van Veelen, Peter
Wuhrer, Manfred
Dotz, Viktoria
author_sort Momčilović, Ana
collection PubMed
description [Image: see text] Immunoglobulin (Ig) glycosylation is recognized for its influence on Ig turnover and effector functions. However, the large-scale profiling of Ig glycosylation in a biomedical setting is challenged by the existence of different Ig isotypes and subclasses, their varying serum concentrations, and the presence of multiple glycosylation sites per Ig. Here, a high-throughput nanoliquid chromatography (LC)- mass spectrometry (MS)-based method for simultaneous analysis of IgG and IgA glycopeptides was developed and applied on a serum sample set from 185 healthy donors. Sample preparation from minute amounts of serum was performed in 96-well plate format. Prior to trypsin digestion, IgG and IgA were enriched simultaneously, followed by a one-step denaturation, reduction, and alkylation. The obtained nanoLC-MS data were subjected to semiautomated, targeted feature integration and quality control. The combined and simplified protocol displayed high overall method repeatability, as assessed using pooled plasma and serum standards. Taking all samples together, 143 individual N- and O-glycopeptides were reliably quantified. These glycopeptides were attributable to 11 different peptide backbones, derived from IgG1, IgG2/3, IgG4, IgA1, IgA2, and the joining chain from dimeric IgA. Using this method, novel associations were found between IgA N- and O-glycosylation and age. Furthermore, previously reported associations of IgG Fc glycosylation with age in healthy individuals were confirmed. In conclusion, the new method paves the way for high-throughput multiprotein plasma glycoproteomics.
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spelling pubmed-72528992020-05-29 Simultaneous Immunoglobulin A and G Glycopeptide Profiling for High-Throughput Applications Momčilović, Ana de Haan, Noortje Hipgrave Ederveen, Agnes L. Bondt, Albert Koeleman, Carolien A. M. Falck, David de Neef, Louise A. Mesker, Wilma E. Tollenaar, Rob de Ru, Arnoud van Veelen, Peter Wuhrer, Manfred Dotz, Viktoria Anal Chem [Image: see text] Immunoglobulin (Ig) glycosylation is recognized for its influence on Ig turnover and effector functions. However, the large-scale profiling of Ig glycosylation in a biomedical setting is challenged by the existence of different Ig isotypes and subclasses, their varying serum concentrations, and the presence of multiple glycosylation sites per Ig. Here, a high-throughput nanoliquid chromatography (LC)- mass spectrometry (MS)-based method for simultaneous analysis of IgG and IgA glycopeptides was developed and applied on a serum sample set from 185 healthy donors. Sample preparation from minute amounts of serum was performed in 96-well plate format. Prior to trypsin digestion, IgG and IgA were enriched simultaneously, followed by a one-step denaturation, reduction, and alkylation. The obtained nanoLC-MS data were subjected to semiautomated, targeted feature integration and quality control. The combined and simplified protocol displayed high overall method repeatability, as assessed using pooled plasma and serum standards. Taking all samples together, 143 individual N- and O-glycopeptides were reliably quantified. These glycopeptides were attributable to 11 different peptide backbones, derived from IgG1, IgG2/3, IgG4, IgA1, IgA2, and the joining chain from dimeric IgA. Using this method, novel associations were found between IgA N- and O-glycosylation and age. Furthermore, previously reported associations of IgG Fc glycosylation with age in healthy individuals were confirmed. In conclusion, the new method paves the way for high-throughput multiprotein plasma glycoproteomics. American Chemical Society 2020-02-24 2020-03-17 /pmc/articles/PMC7252899/ /pubmed/32091889 http://dx.doi.org/10.1021/acs.analchem.9b05722 Text en Copyright © 2020 American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes.
spellingShingle Momčilović, Ana
de Haan, Noortje
Hipgrave Ederveen, Agnes L.
Bondt, Albert
Koeleman, Carolien A. M.
Falck, David
de Neef, Louise A.
Mesker, Wilma E.
Tollenaar, Rob
de Ru, Arnoud
van Veelen, Peter
Wuhrer, Manfred
Dotz, Viktoria
Simultaneous Immunoglobulin A and G Glycopeptide Profiling for High-Throughput Applications
title Simultaneous Immunoglobulin A and G Glycopeptide Profiling for High-Throughput Applications
title_full Simultaneous Immunoglobulin A and G Glycopeptide Profiling for High-Throughput Applications
title_fullStr Simultaneous Immunoglobulin A and G Glycopeptide Profiling for High-Throughput Applications
title_full_unstemmed Simultaneous Immunoglobulin A and G Glycopeptide Profiling for High-Throughput Applications
title_short Simultaneous Immunoglobulin A and G Glycopeptide Profiling for High-Throughput Applications
title_sort simultaneous immunoglobulin a and g glycopeptide profiling for high-throughput applications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7252899/
https://www.ncbi.nlm.nih.gov/pubmed/32091889
http://dx.doi.org/10.1021/acs.analchem.9b05722
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