4.8 Article

Atypical acute myeloid leukemia-specific transcripts generate shared and immunogenic MHC class-I-associated epitopes

期刊

IMMUNITY
卷 54, 期 4, 页码 737-+

出版社

CELL PRESS
DOI: 10.1016/j.immuni.2021.03.001

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资金

  1. Canadian Cancer Society [705604]
  2. AbbVie
  3. Leukemia and Lymphoma Society of Canada
  4. Oncopole
  5. IRIC
  6. FRQS
  7. Cole Foundation
  8. Canadian Government through Genome Canada
  9. Cancer Research Network of the Fonds de Recherche du Quebec -Sante (FRQS)
  10. Common Fund of the Office of the Director of the National Institutes of Health
  11. NCI
  12. NHGRI
  13. NHLBI
  14. NIDA
  15. NIMH
  16. NINDS

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An analysis of the immunopeptidome in AML patients identified tumor-specific antigens (TSAs) which were derived from non-coding genomic regions and associated with intron retention and epigenetic changes. These TSAs may serve as attractive targets for AML immunotherapy.
Acute myeloid leukemia (AML) has not benefited from innovative immunotherapies, mainly because of the lack of actionable immune targets. Using an original proteogenomic approach, we analyzed the major histocompatibility complex class I (MHC class I)-associated immunopeptidome of 19 primary AML samples and identified 58 tumor-specific antigens (TSAs). These TSAs bore no mutations and derived mainly (86%) from supposedly non-coding genomic regions. Two AML-specific aberrations were instrumental in the biogenesis of TSAs, intron retention, and epigenetic changes. Indeed, 48% of TSAs resulted from intron retention and translation, and their RNA expression correlated with mutations of epigenetic modifiers (e.g., DNMT3A). AML TSA-coding transcripts were highly shared among patients and were expressed in both blasts and leukemic stem cells. In AML patients, the predicted number of TSAs correlated with spontaneous expansion of cognate T cell receptor clonotypes, accumulation of activated cytotoxic T cells, immunoediting, and improved survival. These TSAs represent attractive targets for AML immunotherapy.

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