mRNA vaccination boosts S-specific T cell memory and promotes expansion of CD45RA<sub>int</sub> T<sub>EMRA</sub>-like CD8<sup>+</sup> T cells in COVID-19 recovered individuals.

Mayer-Blackwell, Koshlan; Ryu, Heeju; Codd, Amy S; Parks, K Rachael; MacMillan, Hugh R; Cohen, Kristen W; Stewart, Terri L; Seese, Aaron et al. · Cell Rep Med · 2023

prospective_cohort · Level II

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Abstract

SARS-CoV-2 infection and mRNA vaccination both elicit spike (S)-specific T cell responses. To analyze how T cell memory from prior infection influences T cell responses to vaccination, we evaluated functional T cell responses in naive and previously infected vaccine recipients. Pre-vaccine S-specific responses are predictive of subsequent CD8<sup>+</sup> T cell vaccine-response magnitudes. Comparing baseline with post-vaccination TCRβ repertoires, we observed large clonotypic expansions correlated with the frequency of spike-specific T cells. Epitope mapping the largest CD8<sup>+</sup> T cell responses confirms that an HLA-A∗03:01 epitope was highly immunodominant. Peptide-MHC tetramer staining together with mass cytometry and single-cell sequencing permit detailed phenotyping and clonotypic tracking of these S-specific CD8<sup>+</sup> T cells. Our results demonstrate that infection-induced S-specific CD8<sup>+</sup> T cell memory plays a significant role in shaping the magnitude and clonal composition of the circulating T cell repertoire after vaccination, with mRNA vaccination promoting CD8<sup>+</sup> memory T cells to a T<sub>EMRA</sub>-like phenotype.

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