Somatic rearrangements contribute to the mutagenized landscape of cancer genomes. Here, we systematically interrogated rearrangements in 560 breast cancers by using a piecewise constant fitting approach. We identified 33 hotspots of large (>100 kb) tandem duplications, a mutational signature associated with homologous-recombination-repair deficiency. Notably, these tandem-duplication hotspots were enriched in breast cancer germline susceptibility loci (odds ratio (OR) = 4.28) and breast-specific 'super-enhancer' regulatory elements (OR = 3.54). These hotspots may be sites of selective susceptibility to double-strand-break damage due to high transcriptional activity or, through incrementally increasing copy number, may be sites of secondary ...
We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver muta...
We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver muta...
We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver muta...
Somatic rearrangements contribute to the mutagenized landscape of cancer genomes. Here, we systemati...
We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver muta...
We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver muta...
We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver muta...
Somatic rearrangements contribute to the mutagenized landscape of cancer genomes. Here, we systemati...
We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver muta...
We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver muta...
We analysed whole-genome sequences of 560 breast cancers to advance understanding of the driver muta...