FAN1-mediated translesion synthesis and POLQ/HELQ-mediated end joining generate interstrand crosslink-induced mutations
Publication date
2025-03-13
Authors
Verschuren, Jip
van Schendel, Robin
van Bostelen, Ivo
Verkennis, Alex E.E.
Knipscheer, Puck
Tijsterman, Marcel
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Advisors
Supervisors
Document Type
Article
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License
cc_by_nc_nd
Abstract
To counteract the damaging effects of DNA interstrand crosslinks (ICLs), cells have evolved various specialized ICL repair pathways. However, how ICL repair impacts genetic integrity remains incompletely understood. Here, we determined the mutagenic consequences of psoralen ICL repair in the animal model C. elegans and identify two mutagenic repair mechanisms: (i) translesion synthesis through POLH and REV1/3-mediated bypass, leading to single nucleotide polymorphisms (SNVs), and (ii) end joining via POLQ or HELQ action resulting in deletions. While we found no role for the Fanconi anemia genes FANCD2 and FANCI, disruption of TRAIP, which triggers unloading of the CMG helicase at sites of blocked replication, led to a strikingly altered repair profile, suggesting a role for DNA replication in the etiology of ICL-induced deletions. TRAIP deficiency did not affect SNV formation; instead, we found these SNVs to depend on the functionality of the Fanconi anemia-associated nuclease FAN1.
Keywords
General Chemistry, General Biochemistry,Genetics and Molecular Biology, General Physics and Astronomy
Citation
Verschuren, J, van Schendel, R, van Bostelen, I, Verkennis, A E E, Knipscheer, P & Tijsterman, M 2025, 'FAN1-mediated translesion synthesis and POLQ/HELQ-mediated end joining generate interstrand crosslink-induced mutations', Nature Communications, vol. 16, no. 1, 2495. https://doi.org/10.1038/s41467-025-57764-z