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June 3, 20260 citationsOpen Access

Unconventional CD8+ T cell surveillance of cytomegalovirus via Qa-1/HLA-E–restricted epitope recognition

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SRShanelle P. ReillyMSMadison L. SmithSBSamantha Borys

Key Points

  • To investigate the role of nonclassical CD8+ T cells in the immune response to cytomegalovirus.
  • Used motif-based discovery and predictive algorithms to identify peptides binding to Qa-1 and HLA-E.
  • Conducted biological assays to demonstrate the activation of Qa-1-restricted CD8+ T cells with MCMV peptides.
  • Utilized single-cell RNA sequencing and single-cell T cell receptor sequencing to analyze T cell expansion.
  • Qa-1-restricted CD8+ T cells proliferated in response to identified MCMV peptides.
  • Adoptive transfer of Qa-1 tetramer+ CD8+ T cells into RAG-1-deficient mice increased survival rates.
  • Single-cell analyses indicated the presence of unique TCR αβ clonotypes showing convergent specificity.

Abstract

Nonclassical CD8 + T cells can compensate for classical CD8 + T cell effector responses during murine cytomegalovirus (MCMV) infection. Through a combination of motif-based discovery, predictive algorithms, AlphaFold3 structural modeling, and biological assays, we identified multiple MCMV and human cytomegalovirus (HCMV) peptides that bind to Qa-1 and HLA-E, respectively. In the mouse system, we demonstrated that these virally encoded antigens stimulate Qa-1–restricted CD8 + T cells ex vivo, which can be tracked using MCMV peptide–loaded Qa-1 tetramers. Adoptive transfer of predominantly Qa-1 tetramer + CD8 + T cells into RAG-1–deficient mice protects them from mortality, underscoring the critical role of these cells in host defense. Single-cell RNA (scRNA)/TotalSeq and single-cell T cell receptor sequencing (scTCR-seq) reveal the expansion of unique TCR αβ clonotypes, indicating convergent antigen specificity. Together, our findings uncover a conserved and functionally important nonclassical CD8 + T cell axis mediated by Qa-1/HLA-E modulating adaptive immunity independent of classical major histocompatibility complex class I (MHC-I) pathways and present previously unidentified opportunities for vaccine development.

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Cite This Study

Reilly et al. (2025) studied this question.

synapsesocial.com/papers/6a1fc730dee9eb8c0dce807fhttps://doi.org/10.6082/7br78-pga89
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