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Efforts are being directed to systematically analyze the non-coding regions of the genome for cancer-driving mutations1-6. cis-regulatory elements (CREs) represent a highly enriched subset of the non-coding regions of the genome in which to search for such mutations. Here we use high-throughput chromosome conformation capture techniques (Hi-C) for 19,023 promoter fragments to catalog the regulatory landscape of colorectal cancer in cell lines, mapping CREs and integrating these with whole-genome sequence and expression data from The Cancer Genome Atlas7,8. We identify a recurrently mutated CRE interacting with the ETV1 promoter affecting gene expression. ETV1 expression influences cell viability and is associated with patient survival. We further refine our understanding of the regulatory effects of copy-number variations, showing that RASL11A is targeted by a previously identified enhancer amplification1. This study reveals new insights into the complex genetic alterations driving tumor development, providing a paradigm for employing chromosome conformation capture to decipher non-coding CREs relevant to cancer biology.

Original publication

DOI

10.1038/s41588-018-0211-z

Type

Journal article

Journal

Nat Genet

Publication Date

10/2018

Volume

50

Pages

1375 - 1380

Keywords

Caco-2 Cells, Cell Transformation, Neoplastic, Chromosomes, Human, Codon, Nonsense, Colorectal Neoplasms, Computational Biology, DNA, Neoplasm, Databases, Genetic, Gene Frequency, HT29 Cells, HeLa Cells, Hep G2 Cells, High-Throughput Nucleotide Sequencing, Humans, K562 Cells, MCF-7 Cells, Nucleic Acid Conformation, Promoter Regions, Genetic, Regulatory Sequences, Nucleic Acid, Tumor Cells, Cultured