4.7 Article

Evolving neoantigen profiles in colorectal cancers with DNA repair defects

期刊

GENOME MEDICINE
卷 11, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/s13073-019-0654-6

关键词

Colorectal cancer; Neoantigen; DNA repair; Immune response; Mutational signature

资金

  1. AIRC IG program: FONDAZIONE AIRC IG [21923]
  2. FONDAZIONE AIRC IG [18532, 21407, 20697]
  3. FONDAZIONE AIRC under 5 per Mille [21091]
  4. Fondazione Piemontese per la Ricerca sul Cancro-ONLUS
  5. Ministero della Salute (AB, LT, FDN and EM)
  6. Fondo per la Ricerca Locale
  7. Universita di Torino
  8. European Community [602901 MErCurRIC]
  9. European Research Council [724748]
  10. European Research Council (ERC) [724748] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

BackgroundNeoantigens that arise as a consequence of tumor-specific mutations can be recognized by T lymphocytes leading to effective immune surveillance. In colorectal cancer (CRC) and other tumor types, a high number of neoantigens is associated with patient response to immune therapies. The molecular processes governing the generation of neoantigens and their turnover in cancer cells are poorly understood. We exploited CRC as a model system to understand how alterations in DNA repair pathways modulate neoantigen profiles over time.MethodsWe performed whole exome sequencing (WES) and RNA sequencing (RNAseq) in CRC cell lines, in vitro and in vivo, and in CRC patient-derived xenografts (PDXs) to track longitudinally genomic profiles, clonal evolution, mutational signatures, and predicted neoantigens.ResultsThe majority of CRC models showed remarkably stable mutational and neoantigen profiles; however, those carrying defects in DNA repair genes continuously diversified. Rapidly evolving and evolutionary stable CRCs displayed characteristic genomic signatures and transcriptional profiles. Downregulation of molecules implicated in antigen presentation occurred selectively in highly mutated and rapidly evolving CRC.ConclusionsThese results indicate that CRCs carrying alterations in DNA repair pathways display dynamic neoantigen patterns that fluctuate over time. We define CRC subsets characterized by slow and fast evolvability and link this phenotype to downregulation of antigen-presenting cellular mechanisms. Longitudinal monitoring of the neoantigen landscape could be relevant in the context of precision medicine.

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