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PMID: 24008669 Published · ppublish English

Resolving branched DNA intermediates with structure-specific nucleases during replication in eukaryotes.

Chromosoma ·Vol. 122 ·No. 6 ·2014-06-26

Rass Ulrich

Abstract

Genome duplication requires that replication forks track the entire length of every chromosome. When complications occur, homologous recombination-mediated repair supports replication fork movement and recovery. This leads to physical connections between the nascent sister chromatids in the form of Holliday junctions and other branched DNA intermediates. A key role in the removal of these recombination intermediates falls to structure-specific nucleases such as the Holliday junction resolvase RuvC in Escherichia coli. RuvC is also known to cut branched DNA intermediates that originate directly from blocked replication forks, targeting them for origin-independent replication restart. In eukaryotes, multiple structure-specific nucleases, including Mus81-Mms4/MUS81-EME1, Yen1/GEN1, and Slx1-Slx4/SLX1-SLX4 (FANCP) have been implicated in the resolution of branched DNA intermediates. It is becoming increasingly clear that, as a group, they reflect the dual function of RuvC in cleaving recombination intermediates and failing replication forks to assist the DNA replication process.

Article Info
Journal
Chromosoma
Abbr.
Chromosoma
Published
2014-06-26
Indexed
2013-11-15
Updated
2015-04-23
Language
English
Country/Region
Austria
NLM ID
2985138R
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