| Literature DB >> 35174859 |
Ahmed S Fahad1, Cheng-Yu Chung1, Sheila N Lopez Acevedo1, Nicoleen Boyle1, Bharat Madan1, Matias F Gutiérrez-González1, Rodrigo Matus-Nicodemos2, Amy D Laflin1, Rukmini R Ladi1, John Zhou1, Jacy Wolfe1, Sian Llewellyn-Lacey3, Richard A Koup2, Daniel C Douek2, Henry H Balfour4,5, David A Price3,6, Brandon J DeKosky1,7,8,9.
Abstract
Functional analyses of the T cell receptor (TCR) landscape can reveal critical information about protection from disease and molecular responses to vaccines. However, it has proven difficult to combine advanced next-generation sequencing technologies with methods to decode the peptide-major histocompatibility complex (pMHC) specificity of individual TCRs. We developed a new high-throughput approach to enable repertoire-scale functional evaluations of natively paired TCRs. In particular, we leveraged the immortalized nature of physically linked TCRα:β amplicon libraries to analyze binding against multiple recombinant pMHCs on a repertoire scale, and to exemplify the utility of this approach, we also performed affinity-based functional mapping in conjunction with quantitative next-generation sequencing to track antigen-specific TCRs. These data successfully validated a new immortalization and screening platform to facilitate detailed molecular analyses of disease-relevant antigen interactions with human TCRs.Entities:
Keywords: T cell receptor (TCR); affinity-based screening; high-throughput TCRα:β sequencing; library immortalization
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Year: 2022 PMID: 35174859 PMCID: PMC9005053 DOI: 10.1093/protein/gzab034
Source DB: PubMed Journal: Protein Eng Des Sel ISSN: 1741-0126 Impact factor: 1.650