bioRxiv · 10.1101/2024.05.24.595718
Intra- and inter-chain contacts determine TCR specificity: applying protein co-evolution methods to TCRαβ pairing
Abstract
The six complementarity determining regions (CDRs) of the T cell receptor (TCR) form multiple contacts with cognate peptide and major histocompatibility complex, thus determining antigen specificity. However, the contacts between the CDRs themselves are less understood. We perform a systematic study of all available TCR structures, and identify consistent patterns of intra- and inter-chain CDR contacts. We further show that the sequences of paired TCR and TCR{beta} are not independent within sets of antigen-specific TCRs, for most epitopes. We quantify this sequence restriction using a mutual information framework. Co-evolution models can achieve some de novo prediction of TCR/TCR{beta} pairing, without using a training set of known pairs. The conserved pattern of CDR amino acid contacts, and the mutual sequence constraints between antigen-specific sets of T cell receptor and {beta} chains could play an important role in shaping the antigen-specific T cell repertoire.
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Milighetti, M., Nagano, Y., Henderson, J., Hershberg, U., Tiffeau-Mayer, A., Bitbol, A.-F., Chain, B.. 2024-05-29. Intra- and inter-chain contacts determine TCR specificity: applying protein co-evolution methods to TCRαβ pairing. https://doi.org/10.1101/2024.05.24.595718
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