Abstract
Antibody-antigen interaction–at antigenic local environments called B-cell epitopes–is a prominent mechanism for neutralization of infection. Effective mimicry, and display, of B-cell epitopes is key to vaccine design. Here, a physical approach is evaluated for the discovery of epitopes which evolve slowly over closely related pathogens (conserved epitopes). The approach is 1) protein flexibility-based and 2) demonstrated with clinically relevant enveloped viruses, simulated via molecular dynamics. The approach is validated against 1) seven structurally characterized enveloped virus epitopes which evolved the least (out of thirty-nine enveloped virus-antibody structures), 2) two structurally characterized non-enveloped virus epitopes which evolved slowly (out of eight non-enveloped virus-antibody structures), and 3) eight preexisting epitope and peptide discovery algorithms. Rationale for a new benchmarking scheme is presented. A data-driven epitope clustering algorithm is introduced. The prediction of five Zika virus epitopes (for future exploration on recombinant vaccine technologies) is demonstrated. For the first time, protein flexibility is shown to outperform solvent accessible surface area as an epitope discovery metric.
Funder
National Center for Advancing Translational Sciences
National Science Foundation
Lilly Endowment
International Business Machines Corporation
Publisher
Public Library of Science (PLoS)
Reference107 articles.
1. Antibody-antigen complexes;DR Davies;Journal of Biological Chemistry,1988
2. Approaching rational epitope vaccine design for hepatitis C virus with meta-server and multivalent scaffolding;L He;Scientific reports,2015
3. Chimeric L1-L2 virus-like particles as potential broad-spectrum human papillomavirus vaccines;C Schellenbacher;Journal of virology,2009
4. HIV vaccine design to target germline precursors of glycan-dependent broadly neutralizing antibodies;JM Steichen;Immunity,2016
5. A review of important discontinuous B-cell epitope prediction tools;M. Mukonyora;Journal of Clinical & Cellular Immunology,2015
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