Human CtIP promotes DNA end resection
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Summary
These findings establish evolutionarily conserved roles for CtIP-like proteins in controlling DSB resection, checkpoint signalling and homologous recombination.
- Type
- article
- Published
- 2007-10-28
- Cited by
- 1,446
- References
- 52
- Access
- Open access
- OpenAlex
- https://openalex.org/W1979385111
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4414401
Keywords
Homologous recombination, Biology, Cell biology, Rad50, DNA repair
References
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- Initiating cellular stress responses.
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Cited by
- Cell cycle-dependent processing of DNA lesions controls localization of Rad9 to sites of genotoxic stress
- Working hard for recovery: mitotic kinases in the DNA damage checkpoint
- Curcumin suppresses multiple DNA damage response pathways and has potency as a sensitizer to PARP inhibitor.
- Damage-induced BRCA1 phosphorylation by Chk2 contributes to the timing of end resection
- Biochemical Mechanism of DSB End Resection and its Regulation
- ATM-dependent phosphorylation of MRE11 controls extent of resection during homology directed repair by signalling through Exonuclease 1
- Sharpening the ends for repair: mechanisms and regulation of DNA resection.
- RB localizes to DNA double-strand breaks and promotes DNA end resection and homologous recombination through the recruitment of BRG1
- Main steps in DNA double-strand break repair: an introduction to homologous recombination and related processes
- Novel function of HATs and HDACs in homologous recombination through acetylation of human RAD52 at double-strand break sites
- ZmCom1 Is Required for Both Mitotic and Meiotic Recombination in Maize
- Investigating the molecular mechanisms of meiotic recombination
- High resolution mapping of protein-chromatin interactions during meiotic recombination in S. cerevisiae
- BRIT1/MCPH1 MEDIATES THE DNA DAMAGE RESPONSE BY INDUCING P53 STABILITY AND PROMOTING ATR SIGNALING
- Investigating the role of CK2 in the DNA damage response
- A Genome-Wide Study of Homologous Recombination in Mammalian Cells Identifies RBMX, a Novel Component of the DNA Damage Response
- Eukaryotic single-stranded DNA binding proteins: central factors in genome stability.
- Mécanismes impliqués dans la formation des anomalies chromosomiques lors de la meiose en absence de brca2 chez la plante arabidopsis thaliana
- A Regulatory Role for ATM in Suppression of Mre11-Dependent DNA Degradation and Microhomology-Mediated End Joining
- The RAG2 C terminus participates in repair pathway choice in vivo and suppresses lymphomagenesis
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