Related Experiment Video
Updated: Feb 7, 2026

Direct Observation of Enzymes Replicating DNA Using a Single-molecule DNA Stretching Assay
Published on: March 23, 2010
DNA replication stress triggers rapid DNA replication fork breakage by Artemis and XPF
Rémy Bétous1, Théo Goullet de Rugy1, Alessandra Luiza Pelegrini1,2
1CRCT, Université de Toulouse, Inserm, CNRS, UPS; Equipe labellisée Ligue Contre le Cancer, Laboratoire d'excellence Toulouse Cancer, Toulouse, France.
Abstract:
DNA replication stress (DRS) leads to the accumulation of stalled DNA replication forks leaving a fraction of genomic loci incompletely replicated, a source of chromosomal rearrangements during their partition in mitosis. MUS81 is known to limit the occurrence of chromosomal instability by processing these unresolved loci during mitosis. Here, we unveil that the endonucleases ARTEMIS and XPF-ERCC1 can also induce stalled DNA replication forks cleavage through non-epistatic pathways all along S and G2 phases of the cell cycle. We also showed that both nucleases are recruited to chromatin to promote replication fork restart. Finally, we found that rapid chromosomal breakage controlled by ARTEMIS and XPF is important to prevent mitotic segregation defects. Collectively, these results reveal that Rapid Replication Fork Breakage (RRFB) mediated by ARTEMIS and XPF in response to DRS contributes to DNA replication efficiency and limit chromosomal instability.
Related Concept Videos
The DNA Replication Fork
The DNA Replication Fork
DNA Replication
Replication in Prokaryotes
DNA replication...
Restarting Stalled Replication Forks
Replication in Eukaryotes
Replication in Prokaryotes

