Cargando…

Generating Informative Sequence Tags from Antigen-Binding Regions of Heavily Glycosylated IgA1 Antibodies by Native Top-Down Electron Capture Dissociation

[Image: see text] Immunoglobulins A (IgA) include some of the most abundant human antibodies and play an important role in defending mucosal surfaces against pathogens. The unique structural features of the heavy chain of IgA subclasses (called IgA1 and IgA2) enable them to polymerize via the joinin...

Descripción completa

Detalles Bibliográficos
Autores principales: Greisch, Jean-Francois, den Boer, Maurits A., Beurskens, Frank, Schuurman, Janine, Tamara, Sem, Bondt, Albert, Heck, Albert J. R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8176452/
https://www.ncbi.nlm.nih.gov/pubmed/33570406
http://dx.doi.org/10.1021/jasms.0c00461
_version_ 1783703262501797888
author Greisch, Jean-Francois
den Boer, Maurits A.
Beurskens, Frank
Schuurman, Janine
Tamara, Sem
Bondt, Albert
Heck, Albert J. R.
author_facet Greisch, Jean-Francois
den Boer, Maurits A.
Beurskens, Frank
Schuurman, Janine
Tamara, Sem
Bondt, Albert
Heck, Albert J. R.
author_sort Greisch, Jean-Francois
collection PubMed
description [Image: see text] Immunoglobulins A (IgA) include some of the most abundant human antibodies and play an important role in defending mucosal surfaces against pathogens. The unique structural features of the heavy chain of IgA subclasses (called IgA1 and IgA2) enable them to polymerize via the joining J-chain, resulting in IgA dimers but also higher oligomers. While secretory sIgA oligomers are dominant in milk and saliva, IgAs exist primarily as monomers in serum. No method currently allows disentangling the millions of unique IgAs potentially present in the human antibody repertoire. Obtaining unambiguous sequence reads of their hypervariable antigen-binding regions is a prerequisite for IgA identification. We here report a mass spectrometric method that uses electron capture dissociation (ECD) to produce straightforward-to-read sequence ladders of the variable parts of both the light and heavy chains of IgA1s, in particular, of the functionally critical CDR3 regions. We directly compare the native top-down ECD spectra of a heavily and heterogeneously N- and O-glycosylated anti-CD20 IgA1, the corresponding N-glycosylated anti-CD20 IgG1, and their Fab parts. We show that while featuring very different MS1 spectra, the native top-down ECD MS2 spectra of all four species are nearly identical, with cleavages occurring specifically within the CDR3 and FR4 regions of both the heavy and light chain. From the sequence-informative ECD data of an intact glycosylated IgA1, we foresee that native top-down ECD will become a valuable complementary tool for the de novo sequencing of IgA1s from milk, saliva, or serum.
format Online
Article
Text
id pubmed-8176452
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-81764522021-06-07 Generating Informative Sequence Tags from Antigen-Binding Regions of Heavily Glycosylated IgA1 Antibodies by Native Top-Down Electron Capture Dissociation Greisch, Jean-Francois den Boer, Maurits A. Beurskens, Frank Schuurman, Janine Tamara, Sem Bondt, Albert Heck, Albert J. R. J Am Soc Mass Spectrom [Image: see text] Immunoglobulins A (IgA) include some of the most abundant human antibodies and play an important role in defending mucosal surfaces against pathogens. The unique structural features of the heavy chain of IgA subclasses (called IgA1 and IgA2) enable them to polymerize via the joining J-chain, resulting in IgA dimers but also higher oligomers. While secretory sIgA oligomers are dominant in milk and saliva, IgAs exist primarily as monomers in serum. No method currently allows disentangling the millions of unique IgAs potentially present in the human antibody repertoire. Obtaining unambiguous sequence reads of their hypervariable antigen-binding regions is a prerequisite for IgA identification. We here report a mass spectrometric method that uses electron capture dissociation (ECD) to produce straightforward-to-read sequence ladders of the variable parts of both the light and heavy chains of IgA1s, in particular, of the functionally critical CDR3 regions. We directly compare the native top-down ECD spectra of a heavily and heterogeneously N- and O-glycosylated anti-CD20 IgA1, the corresponding N-glycosylated anti-CD20 IgG1, and their Fab parts. We show that while featuring very different MS1 spectra, the native top-down ECD MS2 spectra of all four species are nearly identical, with cleavages occurring specifically within the CDR3 and FR4 regions of both the heavy and light chain. From the sequence-informative ECD data of an intact glycosylated IgA1, we foresee that native top-down ECD will become a valuable complementary tool for the de novo sequencing of IgA1s from milk, saliva, or serum. American Chemical Society 2021-02-11 2021-06-02 /pmc/articles/PMC8176452/ /pubmed/33570406 http://dx.doi.org/10.1021/jasms.0c00461 Text en © 2021 American Society for Mass Spectrometry. Published by American Chemical Society. All rights reserved. Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Greisch, Jean-Francois
den Boer, Maurits A.
Beurskens, Frank
Schuurman, Janine
Tamara, Sem
Bondt, Albert
Heck, Albert J. R.
Generating Informative Sequence Tags from Antigen-Binding Regions of Heavily Glycosylated IgA1 Antibodies by Native Top-Down Electron Capture Dissociation
title Generating Informative Sequence Tags from Antigen-Binding Regions of Heavily Glycosylated IgA1 Antibodies by Native Top-Down Electron Capture Dissociation
title_full Generating Informative Sequence Tags from Antigen-Binding Regions of Heavily Glycosylated IgA1 Antibodies by Native Top-Down Electron Capture Dissociation
title_fullStr Generating Informative Sequence Tags from Antigen-Binding Regions of Heavily Glycosylated IgA1 Antibodies by Native Top-Down Electron Capture Dissociation
title_full_unstemmed Generating Informative Sequence Tags from Antigen-Binding Regions of Heavily Glycosylated IgA1 Antibodies by Native Top-Down Electron Capture Dissociation
title_short Generating Informative Sequence Tags from Antigen-Binding Regions of Heavily Glycosylated IgA1 Antibodies by Native Top-Down Electron Capture Dissociation
title_sort generating informative sequence tags from antigen-binding regions of heavily glycosylated iga1 antibodies by native top-down electron capture dissociation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8176452/
https://www.ncbi.nlm.nih.gov/pubmed/33570406
http://dx.doi.org/10.1021/jasms.0c00461
work_keys_str_mv AT greischjeanfrancois generatinginformativesequencetagsfromantigenbindingregionsofheavilyglycosylatediga1antibodiesbynativetopdownelectroncapturedissociation
AT denboermauritsa generatinginformativesequencetagsfromantigenbindingregionsofheavilyglycosylatediga1antibodiesbynativetopdownelectroncapturedissociation
AT beurskensfrank generatinginformativesequencetagsfromantigenbindingregionsofheavilyglycosylatediga1antibodiesbynativetopdownelectroncapturedissociation
AT schuurmanjanine generatinginformativesequencetagsfromantigenbindingregionsofheavilyglycosylatediga1antibodiesbynativetopdownelectroncapturedissociation
AT tamarasem generatinginformativesequencetagsfromantigenbindingregionsofheavilyglycosylatediga1antibodiesbynativetopdownelectroncapturedissociation
AT bondtalbert generatinginformativesequencetagsfromantigenbindingregionsofheavilyglycosylatediga1antibodiesbynativetopdownelectroncapturedissociation
AT heckalbertjr generatinginformativesequencetagsfromantigenbindingregionsofheavilyglycosylatediga1antibodiesbynativetopdownelectroncapturedissociation