DNA damage responses and their many interactions with the replication fork
Open Access
- 20 February 2006
- journal article
- review article
- Published by Oxford University Press (OUP) in Carcinogenesis: Integrative Cancer Research
- Vol. 27 (5) , 883-892
- https://doi.org/10.1093/carcin/bgi319
Abstract
The cellular response to DNA damage is composed of cell cycle checkpoint and DNA repair mechanisms that serve to ensure proper replication of the genome prior to cell division. The function of the DNA damage response during DNA replication in S-phase is critical to this process. Recent evidence has suggested a number of interrelationships of DNA replication and cellular DNA damage responses. These include S-phase checkpoints which suppress replication initiation or elongation in response to DNA damage. Also, many components of the DNA damage response are required either for the stabilization of, or for restarting, stalled replication forks. Further, translesion synthesis permits DNA replication to proceed in the presence of DNA damage and can be coordinated with subsequent repair by homologous recombination (HR). Finally, cohesion of sister chromatids is established coincident with DNA replication and is required for subsequent DNA repair by homologous recombination. Here we review these processes, all of which occur at, or are related to, the advancing replication fork. We speculate that these multiple interdependencies of DNA replication and DNA damage responses integrate the many steps necessary to ensure accurate duplication of the genome.Keywords
This publication has 136 references indexed in Scilit:
- Checking on DNA damage in S phaseNature Reviews Molecular Cell Biology, 2004
- Dynamic targeting of the replication machinery to sites of DNA damageThe Journal of cell biology, 2004
- Separase-mediated cleavage of cohesin at interphase is required for DNA repairNature, 2004
- The mechanism of sister chromatid cohesionExperimental Cell Research, 2004
- Switching from high-fidelity replicases to low-fidelity lesion-bypass polymerasesCurrent Opinion in Genetics & Development, 2004
- Post‐replication repair in DT40 cells: translesion polymerases versus recombinasesBioEssays, 2004
- Interaction of FANCD2 and NBS1 in the DNA damage responseNature Cell Biology, 2002
- RAD6-dependent DNA repair is linked to modification of PCNA by ubiquitin and SUMONature, 2002
- Chromosome breakage syndromes and cancerAmerican Journal of Medical Genetics, 2002
- Sensitivity of Roberts syndrome cells to gamma radiation, mitomycin C, and protein synthesis inhibitorsSomatic Cell and Molecular Genetics, 1993