PLoS Genetics · 2014 · 102 citations · 35 references
EngineeringGeneticsCancer BiologyTumor BiologyTumor HeterogeneityCancer Evolutionary ProcessCancer ResearchEvolutionary ProcessPervasive Positive SelectionCancer GeneticsCell BiologyFunctional GenomicsTumor MicroenvironmentLineage PlasticityEvolutionary BiologyComputational BiologyCancer GenomicsBreast CancerSystems BiologyMedicine
Cancer is an evolutionary process in which cells acquire new transformative, proliferative and metastatic capabilities. A full understanding of cancer requires learning the dynamics of the cancer evolutionary process. We present here a large-scale analysis of the dynamics of this evolutionary process within tumors, with a focus on breast cancer. We show that the cancer evolutionary process differs greatly from organismal (germline) evolution. Organismal evolution is dominated by purifying selection (that removes mutations that are harmful to fitness). In contrast, in the cancer evolutionary process the dominance of purifying selection is much reduced, allowing for a much easier detection of the signals of positive selection (adaptation). We further show that, as a group, genes that are globally expressed across human tissues show a very strong signal of positive selection within tumors. Indeed, known cancer genes are enriched for global expression patterns. Yet, positive selection is prevalent even on globally expressed genes that have not yet been associated with cancer, suggesting that globally expressed genes are enriched for yet undiscovered cancer related functions. We find that the increased positive selection on globally expressed genes within tumors is not due to their expression in the tissue relevant to the cancer. Rather, such increased adaptation is likely due to globally expressed genes being enriched in important housekeeping and essential functions. Thus, our results suggest that tumor adaptation is most often mediated through somatic changes to those genes that are important for the most basic cellular functions. Together, our analysis reveals the uniqueness of the cancer evolutionary process and the particular importance of globally expressed genes in driving cancer initiation and progression.
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Comprehensive molecular portraits of human breast tumours
Nature · 2012 · 12.1K citations · Full text
Breast Oncology, Comprehensive Molecular Portraits, Tumor Heterogeneity +6
A program for annotating and predicting the effects of single nucleotide polymorphisms, SnpEff
Pablo Cingolani, Adrian E. Platts, Le Lily Wang et al. · Fly · 2012 · 12.1K citations · Full text
An integrated map of genetic variation from 1,092 human genomes