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SARS-CoV-2 infection establishes a stable and age-independent CD8+ T cell response against a dominant nucleocapsid epitope using restricted T cell receptors.
Choy, Cecily; Chen, Joseph; Li, Jiangyuan; Gallagher, D Travis; Lu, Jian; Wu, Daichao; Zou, Ainslee; Hemani, Humza; Baptiste, Beverly A; Wichmann, Emily; Yang, Qian; Ciffelo, Jeffrey; Yin, Rui; McKelvy, Julia; Melvin, Denise; Wallace, Tonya; Dunn, Christopher; Nguyen, Cuong; Chia, Chee W; Fan, Jinshui; Ruffolo, Jeannie; Zukley, Linda; Shi, Guixin; Amano, Tomokazu; An, Yang; Meirelles, Osorio; Wu, Wells W; Chou, Chao-Kai; Shen, Rong-Fong; Willis, Richard A; Ko, Minoru S H; Liu, Yu-Tsueng; De, Supriyo; Pierce, Brian G; Ferrucci, Luigi; Egan, Josephine; Mariuzza, Roy; Weng, Nan-Ping.
Afiliação
  • Choy C; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Chen J; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Li J; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Gallagher DT; National Institute of Standards and Technology (NIST), Gaithersburg, MD, USA.
  • Lu J; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Wu D; W.M. Keck Laboratory for Structural Biology, University of Maryland Institute for Bioscience and Biotechnology Research, Rockville, MD, USA.
  • Zou A; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Hemani H; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Baptiste BA; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Wichmann E; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Yang Q; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Ciffelo J; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Yin R; W.M. Keck Laboratory for Structural Biology, University of Maryland Institute for Bioscience and Biotechnology Research, Rockville, MD, USA.
  • McKelvy J; Laboratory of Clinical Investigation, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Melvin D; Laboratory of Clinical Investigation, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Wallace T; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Dunn C; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Nguyen C; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Chia CW; Laboratory of Clinical Investigation, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Fan J; Computational Biology and Genomics Core, Laboratory of Genetics and Genomics, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Ruffolo J; Translational Gerontology Branch, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Zukley L; Translational Gerontology Branch, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Shi G; Diagnologix LLC, San Diego, CA, USA.
  • Amano T; Elixirgen Therapeutics, Inc, Baltimore, MD, USA.
  • An Y; Laboratory of Behavioral Neuroscience, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Meirelles O; Laboratory of Epidemiology & Population Sciences, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Wu WW; Facility for Biotechnology Resources, CBER, Food and Drug Administration, Silver Spring, MD, USA.
  • Chou CK; Facility for Biotechnology Resources, CBER, Food and Drug Administration, Silver Spring, MD, USA.
  • Shen RF; Facility for Biotechnology Resources, CBER, Food and Drug Administration, Silver Spring, MD, USA.
  • Willis RA; NIH Tetramer Core Facility at Emory University, Atlanta, GA, USA.
  • Ko MSH; Elixirgen Therapeutics, Inc, Baltimore, MD, USA.
  • Liu YT; Diagnologix LLC, San Diego, CA, USA.
  • De S; Computational Biology and Genomics Core, Laboratory of Genetics and Genomics, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Pierce BG; W.M. Keck Laboratory for Structural Biology, University of Maryland Institute for Bioscience and Biotechnology Research, Rockville, MD, USA.
  • Ferrucci L; Translational Gerontology Branch, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Egan J; Laboratory of Clinical Investigation, National Institute on Aging, NIH, Baltimore, MD, USA.
  • Mariuzza R; W.M. Keck Laboratory for Structural Biology, University of Maryland Institute for Bioscience and Biotechnology Research, Rockville, MD, USA.
  • Weng NP; Laboratory of Molecular Biology and Immunology, National Institute on Aging, NIH, Baltimore, MD, USA. wengn@mail.nih.gov.
Nat Commun ; 14(1): 6725, 2023 10 23.
Article em En | MEDLINE | ID: mdl-37872153
ABSTRACT
The resolution of SARS-CoV-2 replication hinges on cell-mediated immunity, wherein CD8+ T cells play a vital role. Nonetheless, the characterization of the specificity and TCR composition of CD8+ T cells targeting non-spike protein of SARS-CoV-2 before and after infection remains incomplete. Here, we analyzed CD8+ T cells recognizing six epitopes from the SARS-CoV-2 nucleocapsid (N) protein and found that SARS-CoV-2 infection slightly increased the frequencies of N-recognizing CD8+ T cells but significantly enhanced activation-induced proliferation compared to that of the uninfected donors. The frequencies of N-specific CD8+ T cells and their proliferative response to stimulation did not decrease over one year. We identified the N222-230 peptide (LLLDRLNQL, referred to as LLL thereafter) as a dominant epitope that elicited the greatest proliferative response from both convalescent and uninfected donors. Single-cell sequencing of T cell receptors (TCR) from LLL-specific CD8+ T cells revealed highly restricted Vα gene usage (TRAV12-2) with limited CDR3α motifs, supported by structural characterization of the TCR-LLL-HLA-A2 complex. Lastly, transcriptome analysis of LLL-specific CD8+ T cells from donors who had expansion (expanders) or no expansion (non-expanders) after in vitro stimulation identified increased chromatin modification and innate immune functions of CD8+ T cells in non-expanders. These results suggests that SARS-CoV-2 infection induces LLL-specific CD8+ T cell responses with a restricted TCR repertoire.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Linfócitos T CD8-Positivos / COVID-19 Limite: Humans Idioma: En Revista: Nat Commun Assunto da revista: BIOLOGIA / CIENCIA Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Linfócitos T CD8-Positivos / COVID-19 Limite: Humans Idioma: En Revista: Nat Commun Assunto da revista: BIOLOGIA / CIENCIA Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Estados Unidos