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Peptide Scanning-assisted Identification of a Monoclonal Antibody-recognized Linear B-cell Epitope
Published on: March 24, 2017
Antibody recognition of a unique tumor-specific glycopeptide antigen
Cory L Brooks1, Andrea Schietinger, Svetlana N Borisova
1Department of Biochemistry and Microbiology, University of Victoria, Victoria, BC, Canada V8P 3P6.
Abstract:
Aberrant glycosylation and the overexpression of certain carbohydrate moieties is a consistent feature of cancers, and tumor-associated oligosaccharides are actively investigated as targets for immunotherapy. One of the most common aberrations in glycosylation patterns is the presentation of a single O-linked N-acetylgalactosamine on a threonine or serine residue known as the "Tn antigen." Whereas the ubiquitous nature of Tn antigens on cancers has made them a natural focus of vaccine research, such carbohydrate moieties are not always tumor-specific and have been observed on embryonic and nonmalignant adult tissue. Here we report the structural basis of binding of a complex of a monoclonal antibody (237mAb) with a truly tumor-specific glycopeptide containing the Tn antigen. In contrast to glycopeptide-specific antibodies in complex with simple peptides, 237mAb does not recognize a conformational epitope induced in the peptide by sugar substitution. Instead, 237mAb uses a pocket coded by germ-line genes to completely envelope the carbohydrate moiety itself while interacting with the peptide moiety in a shallow groove. Thus, 237mAb achieves its striking tumor specificity, with no observed physiological cross-reactivity to the unglycosylated peptide or the free glycan, by a combination of multiple weak but specific interactions to both the peptide and to the glycan portions of the antigen.
Insights
A novel monoclonal antibody (237mAb) targets tumor-specific Tn antigens by enveloping the carbohydrate moiety. This antibody achieves high tumor specificity without cross-reactivity to normal tissues, offering a promising avenue for cancer immunotherapy.
Area of Science:
- Immunology
- Glycobiology
- Structural Biology
Background:
- Aberrant glycosylation, including Tn antigen overexpression, is common in cancers.
- Tumor-associated carbohydrate antigens are investigated as immunotherapy targets.
- Tn antigens are not always tumor-specific, limiting their therapeutic potential.
Purpose of the Study:
- To elucidate the structural basis of a monoclonal antibody (237mAb) binding to a tumor-specific Tn antigen glycopeptide.
- To understand how 237mAb achieves high tumor specificity.
Main Methods:
- Structural analysis of the complex between 237mAb and the tumor-specific glycopeptide.
- Comparison with antibodies binding simple peptides.
Main Results:
- 237mAb binds the Tn antigen glycopeptide without inducing a conformational epitope in the peptide.
- The antibody utilizes a germ-line encoded pocket to envelop the carbohydrate moiety.
- Specific interactions with both glycan and peptide portions contribute to high tumor specificity.
Conclusions:
- 237mAb achieves remarkable tumor specificity through a unique binding mechanism.
- This mechanism involves complete envelopment of the carbohydrate and specific interactions with both glycan and peptide.
- The findings provide a structural basis for developing highly specific cancer immunotherapies targeting aberrant glycosylation.
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