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Large clones of pre-existing T cells drive early immunity against SARS-COV-2 and LCMV infection.


ABSTRACT: T cell responses precede antibody and may provide early control of infection. We analyzed the clonal basis of this rapid response following SARS-COV-2 infection. We applied T cell receptor (TCR) sequencing to define the trajectories of individual T cell clones immediately. In SARS-COV-2 PCR+ individuals, a wave of TCRs strongly but transiently expand, frequently peaking the same week as the first positive PCR test. These expanding TCR CDR3s were enriched for sequences functionally annotated as SARS-COV-2 specific. Epitopes recognized by the expanding TCRs were highly conserved between SARS-COV-2 strains but not with circulating human coronaviruses. Many expanding CDR3s were present at high frequency in pre-pandemic repertoires. Early response TCRs specific for lymphocytic choriomeningitis virus epitopes were also found at high frequency in the preinfection naive repertoire. High-frequency naive precursors may allow the T cell response to respond rapidly during the crucial early phases of acute viral infection.

SUBMITTER: Milighetti M 

PROVIDER: S-EPMC10201888 | biostudies-literature | 2023 Jun

REPOSITORIES: biostudies-literature

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Large clones of pre-existing T cells drive early immunity against SARS-COV-2 and LCMV infection.

Milighetti Martina M   Peng Yanchun Y   Tan Cedric C   Mark Michal M   Nageswaran Gayathri G   Byrne Suzanne S   Ronel Tahel T   Peacock Tom T   Mayer Andreas A   Chandran Aneesh A   Rosenheim Joshua J   Whelan Matthew M   Yao Xuan X   Liu Guihai G   Felce Suet Ling SL   Dong Tao T   Mentzer Alexander J AJ   Knight Julian C JC   Balloux Francois F   Greenstein Erez E   Reich-Zeliger Shlomit S   Pade Corinna C   Gibbons Joseph M JM   Semper Amanda A   Brooks Tim T   Otter Ashley A   Altmann Daniel M DM   Boyton Rosemary J RJ   Maini Mala K MK   McKnight Aine A   Manisty Charlotte C   Treibel Thomas A TA   Moon James C JC   Noursadeghi Mahdad M   Chain Benny B  

iScience 20230522 6


T cell responses precede antibody and may provide early control of infection. We analyzed the clonal basis of this rapid response following SARS-COV-2 infection. We applied T cell receptor (TCR) sequencing to define the trajectories of individual T cell clones immediately. In SARS-COV-2 PCR+ individuals, a wave of TCRs strongly but transiently expand, frequently peaking the same week as the first positive PCR test. These expanding TCR CDR3s were enriched for sequences functionally annotated as S  ...[more]

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