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The absence of Ku but not defects in classical non-homologous end-joining is required to trigger PARP1-dependent end-joining
- Source :
- DNA repair. 12(12)
- Publication Year :
- 2013
-
Abstract
- Classical-non-homologous end-joining (C-NHEJ) is considered the main pathway for repairing DNA double strand breaks (DSB) in mammalian cells. When C-NHEJ is defective, cells may switch DSB repair to an alternative-end-joining, which depends on PARP1 and is more erroneous. This PARP1-EJ is suggested to be active especially in tumor cells contributing to their genomic instability. Here, we define conditions under which cells would switch the repair to PARP1-EJ. Using the end jining repair substrate pEJ, we revealed that PARP1-EJ is solely used when Ku is deficient but not when either DNA-PKcs or Xrcc4 is lacking. In the latter case, DSB repair, however, could be shuttled to PARP1-EJ after additional Ku80 down-regulation, which partly rescued the DSB repair in these mutants. We demonstrate here that PARP-EJ may work on DSB ends at high fidelity manner, as evident from the unchanged efficiency upon blocking end resection by either roscovitin or mirin. Furthermore, we demonstrate for that PARP-EJ is likewise involved in the repair of multiple DSBs (I-PpoI- and IR-induced). Importantly, we identified a chromatin signature associated with the switch to PARP1-EJ which is characterized by a strong enrichment of both PARP1 and LigIII at damaged chromatin. Together, these data indicate that Ku is the main regulator for the hierarchal organization between C-NHEJ and PARP1-EJ.
- Subjects :
- Genome instability
Ku80
DNA End-Joining Repair
Mutant
Regulator
CHO Cells
Pyrimidinones
Biology
Biochemistry
PARP1
Cricetulus
Roscovitine
Animals
Humans
DNA Breaks, Double-Stranded
Molecular Biology
Ku Autoantigen
Genetics
fungi
Nuclear Proteins
Thiones
Antigens, Nuclear
Cell Biology
DNA repair protein XRCC4
Chromatin
Cell biology
Non-homologous end joining
DNA-Binding Proteins
enzymes and coenzymes (carbohydrates)
Gene Expression Regulation
Purines
Mutation
Poly(ADP-ribose) Polymerases
Subjects
Details
- ISSN :
- 15687856
- Volume :
- 12
- Issue :
- 12
- Database :
- OpenAIRE
- Journal :
- DNA repair
- Accession number :
- edsair.doi.dedup.....b09313ec16dab61e399c1bc8f34ad08a