DNA Repair Protein Rad55 Is a Terminal Substrate of the DNA Damage Checkpoints

Author:

Bashkirov Vladimir I.123,King Jeff S.1,Bashkirova Elena V.3,Schmuckli-Maurer Jacqueline1,Heyer Wolf-Dietrich134

Affiliation:

1. Institute of General Microbiology, CH-3012 Bern, Switzerland 1 ;

2. Institute of Gene Biology, Russian Academy of Sciences, Moscow 117 334, Russia 2 ; and

3. Sections of Microbiology 3 and

4. Molecular and Cellular Biology, 4 Division of Biological Sciences, University of California, Davis, Davis, California 95616

Abstract

ABSTRACT Checkpoints, which are integral to the cellular response to DNA damage, coordinate transient cell cycle arrest and the induced expression of DNA repair genes after genotoxic stress. DNA repair ensures cellular survival and genomic stability, utilizing a multipathway network. Here we report evidence that the two systems, DNA damage checkpoint control and DNA repair, are directly connected by demonstrating that the Rad55 double-strand break repair protein of the recombinational repair pathway is a terminal substrate of DNA damage and replication block checkpoints. Rad55p was specifically phosphorylated in response to DNA damage induced by the alkylating agent methyl methanesulfonate, dependent on an active DNA damage checkpoint. Rad55p modification was also observed after gamma ray and UV radiation. The rapid time course of phosphorylation and the recombination defects identified in checkpoint-deficient cells are consistent with a role of the DNA damage checkpoint in activating recombinational repair. Rad55p phosphorylation possibly affects the balance between different competing DNA repair pathways.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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