Molecular deconvolution of the monoclonal antibodies that comprise the polyclonal serum response
Open Access
- 4 February 2013
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 110 (8) , 2993-2998
- https://doi.org/10.1073/pnas.1213737110
Abstract
We have developed and validated a methodology for determining the antibody composition of the polyclonal serum response after immunization. Pepsin-digested serum IgGs were subjected to standard antigen-affinity chromatography, and resulting elution, wash, and flow-through fractions were analyzed by bottom-up, liquid chromatography–high-resolution tandem mass spectrometry. Identification of individual monoclonal antibodies required the generation of a database of IgG variable gene (V-gene) sequences constructed by NextGen sequencing of mature B cells. Antibody V-gene sequences are characterized by short complementarity determining regions (CDRs) of high diversity adjacent to framework regions shared across thousands of IgGs, greatly complicating the identification of antigen-specific IgGs from proteomically observed peptides. By mapping peptides marking unique VH CDRH3 sequences, we identified a set of V-genes heavily enriched in the affinity chromatography elution, constituting the serum polyclonal response. After booster immunization in a rabbit, we find that the antigen-specific serum immune response is oligoclonal, comprising antibodies encoding 34 different CDRH3s that group into 30 distinct antibody VH clonotypes. Of these 34 CDRH3s, 12 account for ∼60% of the antigen-specific CDRH3 peptide mass spectral counts. For comparison, antibodies with 18 different CDRH3s (12 clonotypes) were represented in the antigen-specific IgG fraction from an unimmunized rabbit that fortuitously displayed a moderate titer for BSA. Proteomically identified antibodies were synthesized and shown to display subnanomolar affinities. The ability to deconvolute the polyclonal serum response is likely to be of key importance for analyzing antibody responses after vaccination and for more completely understanding adaptive immune responses in health and disease.Keywords
This publication has 34 references indexed in Scilit:
- Proteomics-directed cloning of circulating antiviral human monoclonal antibodiesNature Biotechnology, 2012
- A proteomics approach for the identification and cloning of monoclonal antibodies from serumNature Biotechnology, 2012
- Asymmetric B Cell Division in the Germinal Center ReactionScience, 2012
- H3N2 Influenza Infection Elicits More Cross-Reactive and Less Clonally Expanded Anti-Hemagglutinin Antibodies Than Influenza VaccinationPLOS ONE, 2011
- Broad neutralization coverage of HIV by multiple highly potent antibodiesNature, 2011
- A Neutralizing Antibody Selected from Plasma Cells That Binds to Group 1 and Group 2 Influenza A HemagglutininsScience, 2011
- Post-translational Modifications Differentially Affect IgG1 Conformation and Receptor BindingMolecular & Cellular Proteomics, 2010
- Competence and competition: the challenge of becoming a long-lived plasma cellNature Reviews Immunology, 2006
- A centennial review; the 1890 tetanus antitoxin paper of von Behring and Kitasato and the related developments.The Keio Journal of Medicine, 1991
- Molecular basis of the allelic inheritance of rabbit immunoglobulin VH allotypes: Implications for the generation of antibody diversityCell, 1990