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PMID: 26113155 Published · ppublish English

Assembly of Slx4 signaling complexes behind DNA replication forks.

The EMBO journal ·Vol. 34 ·No. 16 ·2015-10-28

Balint Attila, Kim TaeHyung, Gallo David, Cussiol Jose Renato, Bastos de Oliveira Francisco M, Yimit Askar, Ou Jiongwen, Nakato Ryuichiro, Gurevich Alexey, Shirahige Katsuhiko, Smolka Marcus B, Zhang Zhaolei, Brown Grant W

Abstract

Obstructions to replication fork progression, referred to collectively as DNA replication stress, challenge genome stability. In Saccharomyces cerevisiae, cells lacking RTT107 or SLX4 show genome instability and sensitivity to DNA replication stress and are defective in the completion of DNA replication during recovery from replication stress. We demonstrate that Slx4 is recruited to chromatin behind stressed replication forks, in a region that is spatially distinct from that occupied by the replication machinery. Slx4 complex formation is nucleated by Mec1 phosphorylation of histone H2A, which is recognized by the constitutive Slx4 binding partner Rtt107. Slx4 is essential for recruiting the Mec1 activator Dpb11 behind stressed replication forks, and Slx4 complexes are important for full activity of Mec1. We propose that Slx4 complexes promote robust checkpoint signaling by Mec1 by stably recruiting Dpb11 within a discrete domain behind the replication fork, during DNA replication stress.

Keywords
DNA damage response Dpb11 Slx4 checkpoint kinase replication stress
Article Info
Journal
The EMBO journal
Abbr.
EMBO J
Published
2015-10-28
Indexed
2015-08-14
Updated
2016-10-19
Language
English
Country/Region
England
NLM ID
8208664
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