AI Article Synopsis

  • Human endogenous retroviruses (HERV), which are mostly silent in the genome, can potentially be activated in myeloid malignancies, making them targets for immune response.
  • Researchers created a library of potential HERV-derived peptides and identified T cell recognition of 29 peptides from 18 HERV loci, with stronger responses in specific HERVs.
  • The study suggests that HERVs could be targeted in immunotherapy for cancer, as enhanced transcription of these elements is observed in patients compared to healthy individuals.

Article Abstract

Human endogenous retroviruses (HERV) form a substantial part of the human genome, but mostly remain transcriptionally silent under strict epigenetic regulation, yet can potentially be reactivated by malignant transformation or epigenetic therapies. Here, we evaluate the potential for T cell recognition of HERV elements in myeloid malignancies by mapping transcribed HERV genes and generating a library of 1169 potential antigenic HERV-derived peptides predicted for presentation by 4 HLA class I molecules. Using DNA barcode-labeled MHC-I multimers, we find CD8 T cell populations recognizing 29 HERV-derived peptides representing 18 different HERV loci, of which HERVH-5, HERVW-1, and HERVE-3 have more profound responses; such HERV-specific T cells are present in 17 of the 34 patients, but less frequently in healthy donors. Transcriptomic analyses reveal enhanced transcription of the HERVs in patients; meanwhile DNA-demethylating therapy causes a small and heterogeneous enhancement in HERV transcription without altering T cell recognition. Our study thus uncovers T cell recognition of HERVs in myeloid malignancies, thereby implicating HERVs as potential targets for immunotherapeutic therapies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7653045PMC
http://dx.doi.org/10.1038/s41467-020-19464-8DOI Listing

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