bioRxiv · 10.1101/2020.07.27.223354
Human thymopoiesis selects unconventional CD8+ α/β T cells that respond to multiple viruses.
Abstract
T cell receptors (TCRs) are formed by stochastic gene rearrangements, theoretically generating >1019 sequences. They are selected during thymopoiesis, which releases a repertoire of about 108 unique TCRs per individual. How evolution shaped a process that produces TCRs that can effectively handle a countless and evolving set of infectious agents is a central question of immunology. The paradigm is that a diverse enough repertoire of TCRs should always provide a proper, though rare, specificity for any given need. Expansion of such rare T cells would provide enough fighters for an effective immune response and enough antigen-experienced cells for memory. We show here that human thymopoiesis releases a large population of CD8+ T cells harboring /{beta} paired TCRs that (i) have high generation probabilities and (ii) a preferential usage of some V and J genes, (iii) are shared between individuals and (iv) can each recognize and be activated by multiple unrelated viral peptides, notably from EBV, CMV and influenza. These polyspecific T cells may represent a first line of defense that is mobilized in response to infections before a more specific response subsequently ensures viral elimination. Our results support an evolutionary selection of polyspecific /{beta} TCRs for broad antiviral responses and heterologous immunity.
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Quiniou, V., Barennes, P., Martina, F., Mhanna, V., Vantomme, H., Pham, H. P., Shugay, M., Six, A., Mariotti-Ferrandiz, E., Klatzmann, D.. 2020-07-29. Human thymopoiesis selects unconventional CD8+ α/β T cells that respond to multiple viruses.. https://doi.org/10.1101/2020.07.27.223354
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