Cumulative haploinsufficiency and triplosensitivity drive aneuploidy patterns and shape the cancer genome.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 24183448.
- Also identified by DOI 10.1016/j.cell.2013.10.011 and PMC identifier 3891052.
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Abstract
Aneuploidy has been recognized as a hallmark of cancer for more than 100 years, yet no general theory to explain the recurring patterns of aneuploidy in cancer has emerged. Here, we develop Tumor Suppressor and Oncogene (TUSON) Explorer, a computational method that analyzes the patterns of mutational signatures in tumors and predicts the likelihood that any individual gene functions as a tumor suppressor (TSG) or oncogene (OG). By analyzing >8,200 tumor-normal pairs, we provide statistical evidence suggesting that many more genes possess cancer driver properties than anticipated, forming a continuum of oncogenic potential. Integrating our driver predictions with information on somatic copy number alterations, we find that the distribution and potency of TSGs (STOP genes), OGs, and essential genes (GO genes) on chromosomes can predict the complex patterns of aneuploidy and copy number variation characteristic of cancer genomes. We propose that the cancer genome is shaped through a process of cumulative haploinsufficiency and triplosensitivity.
Medical subject headings
- Algorithms
- Aneuploidy
- Genes, Tumor Suppressor
- Neoplasms
- Oncogenes