4.8 Article

Landscape of somatic mutations in 560 breast cancer whole-genome sequences

Journal

NATURE
Volume 534, Issue 7605, Pages 47-+

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/nature17676

Keywords

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Funding

  1. ICGC Breast Cancer Working group by the Breast Cancer Somatic Genetics Study (BASIS), a European research project - European Community's Seventh Framework Programme [242006]
  2. Triple Negative project - Wellcome Trust [077012/Z/05/Z]
  3. HER2+ project - Institut National du Cancer (INCa) in France [226-2009, 02-2011, 41-2012, 144-2008, 06-2012]
  4. Korean Health Technology R& D Project, Ministry of Health and Welfare, Republic of Korea [A111218-SC01]
  5. BASIS
  6. ICGC breast cancer projects
  7. CRUK
  8. University of Dundee
  9. Chief Scientist Office
  10. Breast Cancer Campaign
  11. Wellcome Trust [WT100183MA]
  12. Los Alamos National Laboratory
  13. Dana-Farber/Harvard Cancer Center SPORE in Breast Cancer [NIH/NCI 5 P50 CA168504-02]
  14. EU-FP7-SUPPRESSTEM project
  15. Cancer Genomics Netherlands through a grant from the Netherlands Organisation of Scientific research (NWO)
  16. EU-FP7-DDR response project
  17. Breast Cancer Research Foundation
  18. EMBL
  19. FNRS (Fonds National de la Recherche Scientifique)
  20. Leading Foreign Research Institute Recruitment Program through the National Research Foundation of Republic Korea [NRF 2011-0030105]
  21. National Research Foundation of Korea (NRF) - Korean government [NRF 2015R1A2A1A10052578]
  22. ERC Advanced grant [322737]
  23. US Department of Energy National Nuclear Security Administration [DE-AC52-06NA25396]
  24. National Nuclear Security Administration of the United States Department of Energy
  25. European Research Council (ERC) [322737] Funding Source: European Research Council (ERC)
  26. Cancer Research UK [20952, 16942] Funding Source: researchfish
  27. National Institute for Health Research [NF-SI-0611-10154, NF-SI-0515-10090] Funding Source: researchfish
  28. The Francis Crick Institute [10202] Funding Source: researchfish

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We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver mutations conferring clonal advantage and the mutational processes generating somatic mutations. We found that 93 protein-coding cancer genes carried probable driver mutations. Some non-coding regions exhibited high mutation frequencies, but most have distinctive structural features probably causing elevated mutation rates and do not contain driver mutations. Mutational signature analysis was extended to genome rearrangements and revealed twelve base substitution and six rearrangement signatures. Three rearrangement signatures, characterized by tandem duplications or deletions, appear associated with defective homologous-recombination-based DNA repair: one with deficient BRCA1 function, another with deficient BRCA1 or BRCA2 function, the cause of the third is unknown. This analysis of all classes of somatic mutation across exons, introns and intergenic regions highlights the repertoire of cancer genes and mutational processes operating, and progresses towards a comprehensive account of the somatic genetic basis of breast cancer.

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