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PMID: 19595721 Published · ppublish English

Coordination of structure-specific nucleases by human SLX4/BTBD12 is required for DNA repair.

Molecular cell ·Vol. 35 ·No. 1 ·2009-09-25

Muñoz Ivan M, Hain Karolina, Déclais Anne-Cécile, Gardiner Mary, Toh Geraldine W, Sanchez-Pulido Luis, Heuckmann Johannes M, Toth Rachel, Macartney Thomas, Eppink Berina, Kanaar Roland, Ponting Chris P, Lilley David M J, Rouse John

Abstract

Budding yeast Slx4 interacts with the structure-specific endonuclease Slx1 to ensure completion of ribosomal DNA replication. Slx4 also interacts with the Rad1-Rad10 endonuclease to control cleavage of 3' flaps during repair of double-strand breaks (DSBs). Here we describe the identification of human SLX4, a scaffold for DNA repair nucleases XPF-ERCC1, MUS81-EME1, and SLX1. SLX4 immunoprecipitates show SLX1-dependent nuclease activity toward Holliday junctions and MUS81-dependent activity toward other branched DNA structures. Furthermore, SLX4 enhances the nuclease activity of SLX1, MUS81, and XPF. Consistent with a role in processing recombination intermediates, cells depleted of SLX4 are hypersensitive to genotoxins that cause DSBs and show defects in the resolution of interstrand crosslink-induced DSBs. Depletion of SLX4 causes a decrease in DSB-induced homologous recombination. These data show that SLX4 is a regulator of structure-specific nucleases and that SLX4 and SLX1 are important regulators of genome stability in human cells.

Article Info
Journal
Molecular cell
Abbr.
Mol Cell
Published
2009-09-25
Indexed
2009-07-14
Updated
2016-11-22
Language
English
Country/Region
United States
NLM ID
9802571
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