Literature DB >> 25079323

Putative cis-regulatory drivers in colorectal cancer.

Halit Ongen1, Claus L Andersen2, Jesper B Bramsen2, Bodil Oster2, Mads H Rasmussen2, Pedro G Ferreira1, Juan Sandoval3, Enrique Vidal3, Nicola Whiffin4, Alexandra Planchon1, Ismael Padioleau1, Deborah Bielser1, Luciana Romano1, Ian Tomlinson5, Richard S Houlston4, Manel Esteller6, Torben F Orntoft2, Emmanouil T Dermitzakis1.   

Abstract

The cis-regulatory effects responsible for cancer development have not been as extensively studied as the perturbations of the protein coding genome in tumorigenesis. To better characterize colorectal cancer (CRC) development we conducted an RNA-sequencing experiment of 103 matched tumour and normal colon mucosa samples from Danish CRC patients, 90 of which were germline-genotyped. By investigating allele-specific expression (ASE) we show that the germline genotypes remain important determinants of allelic gene expression in tumours. Using the changes in ASE in matched pairs of samples we discover 71 genes with excess of somatic cis-regulatory effects in CRC, suggesting a cancer driver role. We correlate genotypes and gene expression to identify expression quantitative trait loci (eQTLs) and find 1,693 and 948 eQTLs in normal samples and tumours, respectively. We estimate that 36% of the tumour eQTLs are exclusive to CRC and show that this specificity is partially driven by increased expression of specific transcription factors and changes in methylation patterns. We show that tumour-specific eQTLs are more enriched for low CRC genome-wide association study (GWAS) P values than shared eQTLs, which suggests that some of the GWAS variants are tumour specific regulatory variants. Importantly, tumour-specific eQTL genes also accumulate more somatic mutations when compared to the shared eQTL genes, raising the possibility that they constitute germline-derived cancer regulatory drivers. Collectively the integration of genome and the transcriptome reveals a substantial number of putative somatic and germline cis-regulatory cancer changes that may have a role in tumorigenesis.

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Year:  2014        PMID: 25079323     DOI: 10.1038/nature13602

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  20 in total

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  78 in total

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Review 4.  The role of regulatory variation in complex traits and disease.

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5.  Cancer: Directions for the drivers.

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6.  Cancer genomics: Non-coding mutations in the driver seat.

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