4.7 Article

DNA methylation patterns identify subgroups of pancreatic neuroendocrine tumors with clinical association

Journal

COMMUNICATIONS BIOLOGY
Volume 4, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s42003-020-01469-0

Keywords

-

Funding

  1. Associazione Italiana Ricerca Cancro [12182, 18718]
  2. Fondazione Italiana Malattie Pancreas-Ministero Salute [FIMPCUP_J38D19000690001]
  3. Fondazione Cariverona: Oncology Biobank Project Antonio Schiavi
  4. European Community ERANET PMTR-pNET [D18TR5, B46C17000260001]
  5. National Health and Medical Research Council of Australia (NHMRC) [631701, 535903, CDF 1112113, PRF 1025427, SRF 455857]
  6. Queensland State Government Smart State National and International Research Alliances Program (NIRAP)
  7. Institute for Molecular Bioscience/University of Queensland
  8. Australian Government: Department of Innovation, Industry, Science and Research (DIISR)
  9. Australian Cancer Research Foundation (ACRF)
  10. Cancer Council NSW [SRP11-01]
  11. (ICGC)
  12. Cancer Institute NSW [06/ECF/1-24, 09/CDF/2-40, 07/CDF/1-03, 10/CRF/1-01, 08/RSA/1-15, 07/CDF/1-28, 10/CDF/2-26,10/FRL/2-03, 06/RSA/1-05, 09/RIG/1-02, 10/TPG/1-04, 11/REG/1-10, 11/CDF/3-26]
  13. Garvan Institute of Medical Research
  14. Avner Nahmani Pancreatic Cancer Research Foundation
  15. R.T. Hall Trust
  16. Petre Foundation
  17. Philip Hemstritch Foundation
  18. Gastroenterological Society of Australia
  19. Royal Australasian College of Surgeons (RACS)
  20. Royal Australasian College of Physicians (RACP)
  21. Royal College of Pathologists of Australasia (RCPA)
  22. QIMR Berghofer Medical Research
  23. NHGRI [U54 HG003273]
  24. CPRIT grant [RP101353-P7]
  25. Wellcome Trust [103721/Z/14/Z]
  26. CRUK Programme [C29717/A17263, C29717/A18484]
  27. CRUK Glasgow Centre [C596/A18076]
  28. CRUK Clinical Training Award [C596/A20921]
  29. Pancreatic Cancer UK Future Research Leaders Fund
  30. Howat Foundation
  31. University of Glasgow
  32. National Health and Medical Research Council of Australia [SRF 1139071]

Ask authors/readers for more resources

The study identified three subgroups of PanNETs with distinct methylation patterns and genotype characteristics. The T1 subgroup was enriched for functional tumors and wild-type genotypes, the T2 subgroup had mutations and recurrent chromosomal losses, while the T3 subgroup harbored MEN1 mutations and histological parameters associated with better prognosis.
Here we report the DNA methylation profile of 84 sporadic pancreatic neuroendocrine tumors (PanNETs) with associated clinical and genomic information. We identified three subgroups of PanNETs, termed T1, T2 and T3, with distinct patterns of methylation. The T1 subgroup was enriched for functional tumors and ATRX, DAXX and MEN1 wild-type genotypes. The T2 subgroup contained tumors with mutations in ATRX, DAXX and MEN1 and recurrent patterns of chromosomal losses in half of the genome with no association between regions with recurrent loss and methylation levels. T2 tumors were larger and had lower methylation in the MGMT gene body, which showed positive correlation with gene expression. The T3 subgroup harboured mutations in MEN1 with recurrent loss of chromosome 11, was enriched for grade G1 tumors and showed histological parameters associated with better prognosis. Our results suggest a role for methylation in both driving tumorigenesis and potentially stratifying prognosis in PanNETs.

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