Literature DB >> 32841603

Large-Scale Topological Changes Restrain Malignant Progression in Colorectal Cancer.

Sarah E Johnstone1, Alejandro Reyes2, Yifeng Qi3, Carmen Adriaens1, Esmat Hegazi1, Karin Pelka4, Jonathan H Chen1, Luli S Zou2, Yotam Drier5, Vivian Hecht6, Noam Shoresh6, Martin K Selig7, Caleb A Lareau8, Sowmya Iyer7, Son C Nguyen9, Eric F Joyce9, Nir Hacohen4, Rafael A Irizarry2, Bin Zhang3, Martin J Aryee10, Bradley E Bernstein11.   

Abstract

Widespread changes to DNA methylation and chromatin are well documented in cancer, but the fate of higher-order chromosomal structure remains obscure. Here we integrated topological maps for colon tumors and normal colons with epigenetic, transcriptional, and imaging data to characterize alterations to chromatin loops, topologically associated domains, and large-scale compartments. We found that spatial partitioning of the open and closed genome compartments is profoundly compromised in tumors. This reorganization is accompanied by compartment-specific hypomethylation and chromatin changes. Additionally, we identify a compartment at the interface between the canonical A and B compartments that is reorganized in tumors. Remarkably, similar shifts were evident in non-malignant cells that have accumulated excess divisions. Our analyses suggest that these topological changes repress stemness and invasion programs while inducing anti-tumor immunity genes and may therefore restrain malignant progression. Our findings call into question the conventional view that tumor-associated epigenomic alterations are primarily oncogenic.
Copyright © 2020 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  DNA methylation; chromatin; colon cancer; compartment; epigenetics; genome topology; nuclear architecture

Mesh:

Substances:

Year:  2020        PMID: 32841603      PMCID: PMC7575124          DOI: 10.1016/j.cell.2020.07.030

Source DB:  PubMed          Journal:  Cell        ISSN: 0092-8674            Impact factor:   41.582


  103 in total

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4.  Comprehensive mapping of long-range interactions reveals folding principles of the human genome.

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4.  Hi-C Analysis to Identify Genome-Wide Chromatin Structural Aberration in Cancer.

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5.  Epigenetic-structural changes in X chromosomes promote Xic pairing during early differentiation of mouse embryonic stem cells.

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6.  Compartmental reorganization suppresses tumours.

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Review 8.  Epigenetic Regulation of Intestinal Stem Cells and Disease: A Balancing Act of DNA and Histone Methylation.

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