Recruitment of Mec1 and Ddc1 Checkpoint Proteins to Double-Strand Breaks Through Distinct Mechanisms
- 26 October 2001
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 294 (5543) , 867-870
- https://doi.org/10.1126/science.1063827
Abstract
In response to DNA damage, eukaryotic cells activate checkpoint pathways that arrest cell cycle progression and induce the expression of genes required for DNA repair. In budding yeast, the homothallic switching (HO) endonuclease creates a site-specific double-strand break at the mating type (MAT) locus. Continuous HOexpression results in the phosphorylation of Rad53, which is dependent on products of the ataxia telangiectasia mutated–related MEC1 gene and other checkpoint genes, including DDC1, RAD9, andRAD24. Chromatin immunoprecipitation experiments revealed that the Ddc1 protein associates with a region near the MATlocus after HO expression. Ddc1 association required Rad24 but not Mec1 or Rad9. Mec1 also associated with a region near the cleavage site after HO expression, but this association is independent of Ddc1, Rad9, and Rad24. Thus, Mec1 and Ddc1 are recruited independently to sites of DNA damage, suggesting the existence of two separate mechanisms involved in recognition of DNA damage.Keywords
This publication has 25 references indexed in Scilit:
- The DNA damage response: putting checkpoints in perspectiveNature, 2000
- The DNA Damage Checkpoint Signal in Budding Yeast Is Nuclear LimitedMolecular Cell, 2000
- Lucky breaks: analysis of recombination in SaccharomycesMutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, 2000
- DNA damage checkpoint in budding yeastThe EMBO Journal, 1998
- Saccharomyces Ku70, Mre11/Rad50, and RPA Proteins Regulate Adaptation to G2/M Arrest after DNA DamagePublished by Elsevier ,1998
- Requirement for End-Joining and Checkpoint Functions, but NotRAD52-Mediated Recombination, after EcoRI Endonuclease Cleavage of Saccharomyces cerevisiaeDNAMolecular and Cellular Biology, 1998
- CDC5 and CKII Control Adaptation to the Yeast DNA Damage CheckpointPublished by Elsevier ,1997
- Cell Cycle Checkpoints: Preventing an Identity CrisisScience, 1996
- Loss of a yeast telomere: Arrest, recovery, and chromosome lossCell, 1993
- [8] Putting the HO gene to work: Practical uses for mating-type switchingPublished by Elsevier ,1991