The genomic and transcriptomic architecture of 2,000 breast tumours reveals novel subgroups

2012 Nature 6,061 citations

Abstract

The elucidation of breast cancer subgroups and their molecular drivers requires integrated views of the genome and transcriptome from representative numbers of patients. We present an integrated analysis of copy number and gene expression in a discovery and validation set of 997 and 995 primary breast tumours, respectively, with long-term clinical follow-up. Inherited variants (copy number variants and single nucleotide polymorphisms) and acquired somatic copy number aberrations (CNAs) were associated with expression in ∼40% of genes, with the landscape dominated by cis- and trans-acting CNAs. By delineating expression outlier genes driven in cis by CNAs, we identified putative cancer genes, including deletions in PPP2R2A, MTAP and MAP2K4. Unsupervised analysis of paired DNA–RNA profiles revealed novel subgroups with distinct clinical outcomes, which reproduced in the validation cohort. These include a high-risk, oestrogen-receptor-positive 11q13/14 cis-acting subgroup and a favourable prognosis subgroup devoid of CNAs. Trans-acting aberration hotspots were found to modulate subgroup-specific gene networks, including a TCR deletion-mediated adaptive immune response in the ‘CNA-devoid’ subgroup and a basal-specific chromosome 5 deletion-associated mitotic network. Our results provide a novel molecular stratification of the breast cancer population, derived from the impact of somatic CNAs on the transcriptome.

Keywords

BiologyTranscriptomeBreast cancerGeneCopy-number variationGeneticsComparative genomic hybridizationCopy number analysisGenomeComputational biologyGene expression profilingPopulationCancerGene expressionMedicine

MeSH Terms

Breast NeoplasmsDNA Copy Number VariationsFemaleGene Expression ProfilingGene Expression RegulationNeoplasticGene Regulatory NetworksGenesNeoplasmGenomeHumanGenomicsHumansKaplan-Meier EstimateMAP Kinase Kinase 4PolymorphismSingle NucleotidePrognosisProtein Phosphatase 2Treatment Outcome

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Publication Info

Year
2012
Type
article
Volume
486
Issue
7403
Pages
346-352
Citations
6061
Access
Closed

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6061
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4959
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Cite This

Christina Curtis, Sohrab P. Shah, Suet‐Feung Chin et al. (2012). The genomic and transcriptomic architecture of 2,000 breast tumours reveals novel subgroups. Nature , 486 (7403) , 346-352. https://doi.org/10.1038/nature10983

Identifiers

DOI
10.1038/nature10983
PMID
22522925
PMCID
PMC3440846

Data Quality

Data completeness: 86%