The genome-wide mutational consequences of DNA hypomethylation
Besselink, N.; Keijer, J.; Vermeulen, C.; Boymans, S.; de Ridder, J.; van Hoeck, A.; Cuppen, E.; Kuijk, E.
Show abstract
DNA methylation is important for establishing and maintaining cell identity and for genomic stability. This is achieved by regulating the accessibility of regulatory and transcriptional elements and the compaction of subtelomeric, centromeric, and other inactive genomic regions. Carcinogenesis is accompanied by a global loss in DNA methylation, which facilitates the transformation of cells. Cancer hypomethylation may also cause genomic instability, for example through interference with the protective function of telomeres and centromeres. However, understanding the role(s) of hypomethylation in tumor evolution is incomplete because the precise mutational consequences of global hypomethylation have thus far not been systematically assessed. Here we made genome-wide inventories of all possible genetic variation that accumulates in single cells upon the long-term global hypomethylation by CRISPR/CAS9-mediated conditional knockdown of DNMT1. Depletion of DNMT1 results in a genomewide reduction in DNA methylation levels. Hypomethylated cells show reduced proliferation rates, reactivation of the inactive X-chromosome and abnormal nuclear morphologies. Prolonged hypomethylation is accompanied by increased chromosomal instability. However, there is no increase in mutational burden, enrichment for certain mutational signatures or structural changes to the genome. We conclude that the primary consequence of global hypomethylation is chromosomal instability and does not necessarily lead to other small-scale or structural mutational effects.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Genomic features underlie the co-option of SVA transposons as cis-regulatory elements in human pluripotent stem cells 96%
- TFAP2 paralogs facilitate chromatin access for MITF at pigmentation genes but inhibit expression of cell-cell adhesion genes independently of MITF 94%
- A survey of human cancer-germline genes: linking X chromosome localization, DNA methylation and sex-biased expression in early embryos 94%
Similar papers in this journal
- Cell sorting based on single nucleotide variation enables characterization of mutation-dependent transcriptome and chromatin states. 95%
- Optimized nickase- and nuclease-based prime editing in human and mouse cells 94%
- CRISPR-based dissection of miRNA binding sites using isogenic cell lines is hampered by pervasive noise. 94%
Similar papers in this journal
- CRISPR/Cas9-induced double-strand breaks in huntingtin locus lead to CAG repeat contraction through the extensive DNA end resection and homology-mediated repair 94%
- Epigenetic machinery is functionally conserved in cephalopods 94%
- Single-cell DNA and RNA sequencing reveals the dynamics of intra-tumor heterogeneity in a colorectal cancer model 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.