| Literature DB >> 29914888 |
William S DeWitt1,2,3, Krystle K Q Yu4, Damien B Wilburn3, Anna Sherwood1, Marissa Vignali1, Cheryl L Day5,6, Thomas J Scriba7,8, Harlan S Robins1,9, Willie J Swanson3, Ryan O Emerson1, Philip H Bradley10,11, Chetan Seshadri12.
Abstract
Human T cells that recognize lipid Ags presented by highly conserved CD1 proteins often express semi-invariant TCRs, but the true diversity of lipid Ag-specific TCRs remains unknown. We use CD1b tetramers and high-throughput immunosequencing to analyze thousands of TCRs from ex vivo-sorted or in vitro-expanded T cells specific for the mycobacterial lipid Ag, glucose monomycolate. Our results reveal a surprisingly diverse repertoire resulting from editing of germline-encoded gene rearrangements analogous to MHC-restricted TCRs. We used a distance-based metric (TCRDist) to show how this diverse TCR repertoire builds upon previously reported conserved motifs by including subject-specific TCRs. In a South African cohort, we show that TCRDist can identify clonal expansion of diverse glucose monomycolate-specific TCRs and accurately distinguish patients with active tuberculosis from control subjects. These data suggest that similar mechanisms govern the selection and expansion of peptide and lipid Ag-specific T cells despite the nonpolymorphic nature of CD1.Entities:
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Year: 2018 PMID: 29914888 PMCID: PMC6057832 DOI: 10.4049/jimmunol.1800186
Source DB: PubMed Journal: J Immunol ISSN: 0022-1767 Impact factor: 5.422