The co-evolution of the genome and epigenome in colorectal cancer

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Authors

Sottoriva, A
Heide, T
Cresswell, G
Spiteri, I
Lynn, C
Fernandez-Mateos, J
Chen, B
Zapata, L
Chkhaidze, K
Nichol, D
Caravagna, G
James, C
Mossner, M
Kimberley, C
Househam, J
Berner, A
Schmidt, M
Lakatos, E
Baker, A-M
Graham, T
Barozzi, I
Costa, H
Mitchinson, M
Jansen, M
Bridgewater, J
Rodriguez-Justo, M
Magnani, L
Ramazzotti, D
Shibata, D

Document Type

Journal Article

Date

2021-07-12

Date Accepted

2022-05-30

Date Available

2022-06-01T13:04:16Z

Abstract

Colorectal malignancies are a leading cause of cancer death. Despite large-scale genomic efforts, DNA mutations do not fully explain malignant evolution. Here we study the co-evolution of the genome and epigenome of colorectal tumours at single-clone resolution using spatial multi-omic profiling of individual glands. We collected 1,373 samples from 30 primary cancers and 9 concomitant adenomas and generated 1,212 chromatin accessibility profiles, 527 whole-genomes and 297 whole-transcriptomes. We found positive selection for DNA mutations in chromatin modifier genes and recurrent chromatin changes in regulatory regions of cancer drivers with otherwise no mutation. Genome-wide alterations in transcription factor binding accessibility involved CTCF, downregulation of interferon, and increased accessibility for SOX and HOX, indicating developmental genes reactivation. Epigenetic aberrations were heritable, distinguishing adenomas from cancers. Mutational signature analysis showed the epigenome influencing DNA mutation accumulation. This study provides a map of (epi)genetic tumour heterogeneity, with fundamental implications for understanding colorectal cancer biology.

Citation

Source Title

Publisher

ISSN

eISSN

Research Team

Genomics and evolutionary dynamics

Notes