A new role of the Mus81 nuclease for replication completion after fork restart
Pardo, B.; Moriel-Carretero, M.; Vicat, T.; Aguilera, A.; Pasero, P.
Show abstract
Impediments to DNA replication threaten genome stability. The homologous recombination (HR) pathway is involved in the restart of blocked replication forks. Here, we used a new method to study at the molecular level the restart of replication in response to DNA topoisomerase I poisoning by camptothecin (CPT). We show that HR-mediated restart at the global genomic level occurs by a BIR-like mechanism that requires Rad52, Rad51 and Pol32. The Mus81 endonuclease, previously proposed to cleave blocked forks, is not required for replication restart in S phase but appears to be essential to resolve fork-associated recombination intermediates in G2/M as a step necessary to complete replication. We confirmed our results using an independent system that allowed us to conclude that this mechanism is independent of the accumulation of DNA supercoiling and DNA-protein crosslinks normally caused by CPT. Thus, we describe here a specific function for Mus81 in the processing of HR-restarted forks required to complete DNA replication.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Rrp1 translocase and ubiquitin ligase activities restrict the genome destabilising effects of Rad51 in fission yeast 97%
- Separable functions of Tof1/Timeless in intra-S-checkpoint signalling, replisome stability and DNA topological stress. 97%
- Multifaceted roles of H2B mono-ubiquitylation in D-loop metabolism during homologous recombination repair 97%
Similar papers in this journal
- The Shu Complex Prevents Mutagenesis and Cytotoxicity of Single-Strand Specific Alkylation Lesions 97%
- Rdh54/Tid1 Inhibits Rad51-Rad54-Mediated D-loop Formation and Limits D-loop Length 97%
- Prolonged Cell Cycle Arrest in Response to DNA damage in Yeast Requires the Maintenance of DNA Damage Signaling and the Spindle Assembly Checkpoint 97%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Mechanisms preventing Break-Induced Replication during repair of two-ended DNA double-strand breaks 97%
- Ubx5-Cdc48 assists the protease Wss1 at DNA-protein crosslink sites in yeast 97%
- Human CST complex protects replication fork stability by directly blocking MRE11 degradation of nascent strand DNA 96%
"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.