4.7 Article

Somatic structural variant formation is guided by and influences genome architecture

Journal

GENOME RESEARCH
Volume 32, Issue 4, Pages 643-655

Publisher

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1101/gr.275790.121

Keywords

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Funding

  1. Independent Research Fund Denmark [0134-00265B]
  2. European Research Council (ERC) [336045]
  3. European Research Council (ERC) [336045] Funding Source: European Research Council (ERC)

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The study reveals that the occurrence and formation of genomic structural variants are influenced by 3D chromatin architecture, with SVs having a tendency to occur between similar chromatin compartments and replication timing regions, and impacting gene regulation.
The occurrence and formation of genomic structural variants (SVs) is known to be influenced by the 3D chromatin architecture, but the extent and magnitude have been challenging to study. Here, we apply Hi-C to study chromatin organization before and after induction of chromothripsis in human cells. We use Hi-C to manually assemble the derivative chromosomes following the occurrence of massive complex rearrangements, which allows us to study the sources of SV formation and their consequences on gene regulation. We observe an action-reaction interplay whereby the 3D chromatin architecture directly impacts the location and formation of SVs. In turn, the SVs reshape the chromatin organization to alter the local topologies, replication timing, and gene regulation in cis. We show that SVs have a strong tendency to occur between similar chromatin compartments and replication timing regions. Moreover, we find that SVs frequently occur at 3D loop anchors, that SVs can cause a switch in chromatin compartments and replication timing, and that this is a major source of SV-mediated effects on nearby gene expression changes. Finally, we provide evidence for a general mechanistic bias of the 3D chromatin on SV occurrence using data from more than 2700 patient-derived cancer genomes.

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