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Global impact of somatic structural variation on the DNA methylome of human cancers. | LitMetric

AI Article Synopsis

  • Genomic rearrangements significantly impact the molecular characteristics of cancer, and integrating somatic structural variants (SSVs) with gene features helps identify key genes related to cancer.
  • Through analysis of genomic data from over 1400 human cancers, researchers found that nearby SSV breakpoints are linked to changes in gene expression and DNA methylation, independent of other alterations.
  • The study reveals that SSVs contribute to changes in DNA methylation patterns, affecting gene expression and influencing the overall cancer landscape, suggesting that genomic rearrangements should be considered alongside other factors like histone modifications and DNA methyltransferase activity.

Article Abstract

Background: Genomic rearrangements exert a heavy influence on the molecular landscape of cancer. New analytical approaches integrating somatic structural variants (SSVs) with altered gene features represent a framework by which we can assign global significance to a core set of genes, analogous to established methods that identify genes non-randomly targeted by somatic mutation or copy number alteration. While recent studies have defined broad patterns of association involving gene transcription and nearby SSV breakpoints, global alterations in DNA methylation in the context of SSVs remain largely unexplored.

Results: By data integration of whole genome sequencing, RNA sequencing, and DNA methylation arrays from more than 1400 human cancers, we identify hundreds of genes and associated CpG islands (CGIs) for which the nearby presence of a somatic structural variant (SSV) breakpoint is recurrently associated with altered expression or DNA methylation, respectively, independently of copy number alterations. CGIs with SSV-associated increased methylation are predominantly promoter-associated, while CGIs with SSV-associated decreased methylation are enriched for gene body CGIs. Rearrangement of genomic regions normally having higher or lower methylation is often involved in SSV-associated CGI methylation alterations. Across cancers, the overall structural variation burden is associated with a global decrease in methylation, increased expression in methyltransferase genes and DNA damage response genes, and decreased immune cell infiltration.

Conclusion: Genomic rearrangement appears to have a major role in shaping the cancer DNA methylome, to be considered alongside commonly accepted mechanisms including histone modifications and disruption of DNA methyltransferases.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6792267PMC
http://dx.doi.org/10.1186/s13059-019-1818-9DOI Listing

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