Scinovex
article Open AccessTop 1% cited

Deciphering Signatures of Mutational Processes Operative in Human Cancer

Cell Reports · 2013 · Vol. 3(1) · pp. 246–259
Ludmil B. AlexandrovSerena Nik‐ZainalDavid C. WedgePeter J. CampbellMichael R. Stratton

Abstract

The genome of a cancer cell carries somatic mutations that are the cumulative consequences of the DNA damage and repair processes operative during the cellular lineage between the fertilized egg and the cancer cell. Remarkably, these mutational processes are poorly characterized. Global sequencing initiatives are yielding catalogs of somatic mutations from thousands of cancers, thus providing the unique opportunity to decipher the signatures of mutational processes operative in human cancer. However, until now there have been no theoretical models describing the signatures of mutational processes operative in cancer genomes and no systematic computational approaches are available to decipher these mutational signatures. Here, by modeling mutational processes as a blind source separation problem, we introduce a computational framework that effectively addresses these questions. Our approach provides a basis for characterizing mutational signatures from cancer-derived somatic mutational catalogs, paving the way to insights into the pathogenetic mechanism underlying all cancers.

Cancer Genomics and DiagnosticsGenomics and Phylogenetic StudiesGenomics and Rare DiseasesDECIPHERBiologySomatic cellComputational biologyGenomeCancerGeneticsMutationMechanism (biology)DNA repair

MeSH terms

Base SequenceBreast NeoplasmsFemaleHumansModels, GeneticMolecular Sequence DataMutationNeoplasmsGenome, HumanSequence Analysis, DNAExome

Funding

  • Wellcome Trust
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.