| Literature DB >> 26296891 |
Caitlin A Kowalsky1, Matthew S Faber2, Aritro Nath3, Hailey E Dann1, Vince W Kelly1, Li Liu4, Purva Shanker1, Ellen K Wagner5, Jennifer A Maynard5, Christina Chan6, Timothy A Whitehead7.
Abstract
Knowledge of the fine location of neutralizing and non-neutralizing epitopes on human pathogens affords a better understanding of the structural basis of antibody efficacy, which will expedite rational design of vaccines, prophylactics, and therapeutics. However, full utilization of the wealth of information from single cell techniques and antibody repertoire sequencing awaits the development of a high throughput, inexpensive method to map the conformational epitopes for antibody-antigen interactions. Here we show such an approach that combines comprehensive mutagenesis, cell surface display, and DNA deep sequencing. We develop analytical equations to identify epitope positions and show the method effectiveness by mapping the fine epitope for different antibodies targeting TNF, pertussis toxin, and the cancer target TROP2. In all three cases, the experimentally determined conformational epitope was consistent with previous experimental datasets, confirming the reliability of the experimental pipeline. Once the comprehensive library is generated, fine conformational epitope maps can be prepared at a rate of four per day.Entities:
Keywords: Bordetella pertussis; TROP2; antibody; antibody engineering; conformational epitope mapping; epitope mapping; protein-protein interaction; tumor necrosis factor (TNF)
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Year: 2015 PMID: 26296891 PMCID: PMC4646304 DOI: 10.1074/jbc.M115.676635
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157