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Inactivated Tick-borne Encephalitis Vaccine Elicits Several Overlapping Waves of T Cell Response

Abstract

The development and implementation of vaccines have been growing exponentially, remaining one of the major successes of healthcare over the last century. Nowadays, active regular immunizations prevent epidemics of many viral diseases, including tick-borne encephalitis (TBE). Along with the generation of virus-specific antibodies, a highly effective vaccine should induce T cell responses providing long-term immune defense. In this study, we performed longitudinal high-throughput T cell receptor (TCR) sequencing to characterize changes in individual T cell repertoires of 11 donors immunized with an inactivated TBE vaccine. After two-step immunization, we found significant clonal expansion of both CD4 and CD8 T cells, ranging from 302 to 1706 vaccine-associated TCRβ clonotypes in different donors. We detected several waves of T cell clonal expansion generated by distinct groups of vaccine-responding clones. Both CD4 and CD8 vaccine-responding T cell clones formed 17 motifs in TCRβ sequences shared by donors with identical HLA alleles. Our results indicate that TBE vaccination leads to a robust T cell response due to the production of a variety of T cell clones with a memory phenotype, which recognize a large set of epitopes.

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References
1.
Chu T, Berner J, Zehn D . Two parallel worlds of memory T cells. Nat Immunol. 2020; 21(12):1484-1485. DOI: 10.1038/s41590-020-00815-y. View

2.
Shyer J, Flavell R, Bailis W . Metabolic signaling in T cells. Cell Res. 2020; 30(8):649-659. PMC: 7395146. DOI: 10.1038/s41422-020-0379-5. View

3.
Qi Q, Cavanagh M, Le Saux S, Namkoong H, Kim C, Turgano E . Diversification of the antigen-specific T cell receptor repertoire after varicella zoster vaccination. Sci Transl Med. 2016; 8(332):332ra46. PMC: 4878824. DOI: 10.1126/scitranslmed.aaf1725. View

4.
Galletti G, De Simone G, Mazza E, Puccio S, Mezzanotte C, Bi T . Two subsets of stem-like CD8 memory T cell progenitors with distinct fate commitments in humans. Nat Immunol. 2020; 21(12):1552-1562. PMC: 7610790. DOI: 10.1038/s41590-020-0791-5. View

5.
Mamedov I, Britanova O, Zvyagin I, Turchaninova M, Bolotin D, Putintseva E . Preparing unbiased T-cell receptor and antibody cDNA libraries for the deep next generation sequencing profiling. Front Immunol. 2014; 4:456. PMC: 3870325. DOI: 10.3389/fimmu.2013.00456. View