Revealing factors determining immunodominant responses against dominant epitopes.

Wannisa Ritmahan, Can Kesmir, Renske M A Vroomans

Journal: Immunogenetics 2020;72(1-2):109-118

PMID: 31811313

Abstract

Upon recognition of peptide-MHC complexes by T cell receptors (TCR), the cognate T cells expand and differentiate into effector T cells to generate protective immunity. Despite the fact that any immune response generates a diverse set of TCR clones against a particular epitope, only a few clones are highly expanded in any immune response. Previous studies observed that the highest frequency clones usually control viral infections better than subdominant clones, but the reasons for this dominance among T cell clones are still unclear. Here, we used publicly available TCR amino acid sequences to study which factors determine whether a response becomes immunodominance (ID) per donor; we classified the largest T cell clone as the epitope-specific dominant clone and all the other clones as subdominant responses (SD). We observed a distinctively hydrophobic CDR3 in ID responses against a dominant epitope from influenza A virus, compared to the SD responses. The common V-J combinations were shared between ID and SD responses, suggesting that the biased V-J recombination events are restricted by epitope specificity; thus, the immunodominance is not directly determined by a bias combination of V and J genetic segments. Our findings reveal a close similarity of global sequence properties between dominant and subdominant clones of epitope-specific responses but detectable distinctive amino acid enrichments in ID. Taken together, we believe this first comparative study of immunodominant and subdominant TCR sequences can guide further studies to resolve factors determining the immunodominance of antiviral as well as tumor-specific T cell responses.

Address: The Centre for Integrative Bioinformatics VU, Vrije Universiteit, Amsterdam, The Netherlands. [email protected].; Theoretical Biology, Utrecht University, Utrecht, The Netherlands. [email protected].; Theoretical Biology, Utrecht University, Utrecht, The Netherlands.; Institute for Advanced Study, University of Amsterdam, Amsterdam, The Netherlands.
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