4.8 Article

Signatures of accelerated somatic evolution in gene promoters in multiple cancer types

Journal

NUCLEIC ACIDS RESEARCH
Volume 43, Issue 11, Pages 5307-5317

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkv419

Keywords

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Funding

  1. American Cancer Society [ACS-IRG57-001-53]
  2. Lung cancer SPORE [2P50-CA058187]
  3. United Against Lung Cancer (Elliot's Legacy)
  4. Boettecher Foundation
  5. Gladstone Institutes
  6. Starr Cancer Consortium [SCC-IA A608]
  7. University of Colorado School of Medicine
  8. United Against Lung Cancer (Joan's Legacy)
  9. [5R01-CA164780]

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Cancer-associated somatic mutations outside protein-coding regions remain largely unexplored. Analyses of the TERT locus have indicated that noncoding regulatory mutations can be more frequent than previously suspected and play important roles in oncogenesis. Using a computational method called SASE-hunter, developed here, we identified a novel signature of accelerated somatic evolution (SASE) marked by a significant excess of somatic mutations localized in a genomic locus, and prioritized those loci that carried the signature in multiple cancer patients. Interestingly, even when an affected locus carried the signature in multiple individuals, the mutations contributing to SASE themselves were rarely recurrent at the base-pair resolution. In a pan-cancer analysis of 906 samples from 12 tumor types, we detected SASE in the promoters of several genes, including known cancer genes such as MYC, BCL2, RBM5 and WWOX. Nucleotide substitution patterns consistent with oxidative DNA damage and local somatic hypermutation appeared to contribute to this signature in selected gene promoters (e.g. MYC). SASEs in selected cancer gene promoters were associated with over-expression, and also correlated with the age of onset of cancer, aggressiveness of the disease and survival. Taken together, our work detects a hitherto under-appreciated and clinically important class of regulatory changes in cancer genomes.

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