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PMID: 25030699 Published · ppublish English

A cell cycle-regulated Slx4-Dpb11 complex promotes the resolution of DNA repair intermediates linked to stalled replication.

Genes & development ·Vol. 28 ·No. 14 ·2014-09-05

Gritenaite Dalia, Princz Lissa N, Szakal Barnabas, Bantele Susanne C S, Wendeler Lina, Schilbach Sandra, Habermann Bianca H, Matos Joao, Lisby Michael, Branzei Dana, Pfander Boris

Abstract

A key function of the cellular DNA damage response is to facilitate the bypass of replication fork-stalling DNA lesions. Template switch reactions allow such a bypass and involve the formation of DNA joint molecules (JMs) between sister chromatids. These JMs need to be resolved before cell division; however, the regulation of this process is only poorly understood. Here, we identify a regulatory mechanism in yeast that critically controls JM resolution by the Mus81-Mms4 endonuclease. Central to this regulation is a conserved complex comprising the scaffold proteins Dpb11 and Slx4 that is under stringent control. Cell cycle-dependent phosphorylation of Slx4 by Cdk1 promotes the Dpb11-Slx4 interaction, while in mitosis, phosphorylation of Mms4 by Polo-like kinase Cdc5 promotes the additional association of Mus81-Mms4 with the complex, thereby promoting JM resolution. Finally, the DNA damage checkpoint counteracts Mus81-Mms4 binding to the Dpb11-Slx4 complex. Thus, Dpb11-Slx4 integrates several cellular inputs and participates in the temporal program for activation of the JM-resolving nuclease Mus81.

Keywords
DNA damage response cell cycle homologous recombination joint molecule resolution post-replicative repair
Article Info
Journal
Genes & development
Abbr.
Genes Dev
Published
2014-09-05
Indexed
2014-07-17
Updated
2015-08-05
Language
English
Country/Region
United States
NLM ID
8711660
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