Docking onto chromatin via the Saccharomyces cerevisiae Rad9 Tudor domain
Open Access
- 23 January 2007
- Vol. 24 (2) , 105-119
- https://doi.org/10.1002/yea.1441
Abstract
An integrated cellular response to DNA damage is essential for the maintenance of genome integrity. Recently, post‐translational modifications to histone proteins have been implicated in DNA damage responses involving the Rad9 family of checkpoint proteins. In budding yeast, methylation of histone H3 on lysine 79 (H3‐K79me) has been shown to be required for efficient checkpoint signalling and Rad9 localization on chromatin. Here, we have used a rad9 Tudor mutant allele and cells mutated for Dot1, the H3‐K79 methylase, to analyse the epistatic relationship between RAD9 and DOT1 genes regarding the DNA damage resistance and checkpoint activation pathways. Our results show that RAD9 is epistatic to DOT1 and suggest that it acts downstream of the Dot1 methylase in the damage resistance and checkpoint response. We have also found that the Tudor domain of Rad9 is necessary for in vitro binding to H3‐K79me as well as Rad9 focal accumulation in response to DNA damage in vivo. In summary, our study demonstrates that the interaction between Rad9, via its Tudor domain, and methylated H3‐K79 is required at two different steps of the DNA damage response, an early step corresponding to checkpoint activation, and a late step corresponding to DNA repair. The study further shows that the function of this interaction is cell cycle‐regulated; the role in checkpoint activation is restricted to the G1 phase and its role in DNA repair is restricted to G2. Copyright © 2007 John Wiley & Sons, Ltd.Keywords
This publication has 49 references indexed in Scilit:
- The RAD6/BRE1 Histone Modification Pathway in Saccharomyces Confers Radiation Resistance Through a RAD51-Dependent Process That Is Independent of RAD18Genetics, 2006
- Histone modification-dependent and -independent pathways for recruitment of checkpoint protein Crb2 to double-strand breaksGenes & Development, 2006
- Histone H2A phosphorylation and H3 methylation are required for a novel Rad9 DSB repair function following checkpoint activationDNA Repair, 2006
- Dynamics of Chromatin during the Repair of DNA Double-Strand BreaksCell Cycle, 2005
- X-Ray Survival Characteristics and Genetic Analysis for Nine Saccharomyces Deletion Mutants That Show Altered Radiation SensitivityGenetics, 2005
- Methylation of Histone H4 Lysine 20 Controls Recruitment of Crb2 to Sites of DNA DamagePublished by Elsevier ,2004
- Distribution and Dynamics of Chromatin Modification Induced by a Defined DNA Double-Strand BreakCurrent Biology, 2004
- 53BP1, an activator of ATM in response to DNA damageDNA Repair, 2004
- Association of Rad9 with Double-Strand Breaks through a Mec1-Dependent MechanismMolecular and Cellular Biology, 2004
- Lcd1p Recruits Mec1p to DNA Lesions In Vitro and In VivoMolecular Cell, 2002