Differential regulation of the anti-crossover and replication fork regression activities of Mph1 by Mte1 Journal Article


Authors: Xue, X.; Papusha, A.; Choi, K.; Bonner, J. N.; Kumar, S.; Niu, H.; Kaur, H.; Zheng, X. F.; Donnianni, R. A.; Lu, L.; Lichten, M.; Zhao, X.; Ira, G.; Sung, P.
Article Title: Differential regulation of the anti-crossover and replication fork regression activities of Mph1 by Mte1
Abstract: We identified Mte1 (Mph1-associated telomere maintenance protein 1) as a multifunctional regulator of Saccharomyces cerevisiae Mph1, a member of the FANCM family of DNA motor proteins important for DNA replication fork repair and crossover suppression during homologous recombination. We show that Mte1 interacts with Mph1 andDNAspecies that resemble aDNAreplication fork and theDloop formed during recombination. Biochemically, Mte1 stimulates Mph1-mediated DNA replication fork regression and branch migration in a model substrate. Consistent with this activity, genetic analysis reveals that Mte1 functions with Mph1 and the associated MHF complex in replication fork repair. Surprisingly, Mte1 antagonizes the D-loop-dissociative activity of Mph1–MHF and exerts a procrossover role in mitotic recombination. We further show that the influence of Mte1 on Mph1 activities requires its binding to Mph1 and DNA. Thus, Mte1 differentially regulates Mph1 activities to achieve distinct outcomes in recombination and replication fork repair. © 2016 Xue et al.
Keywords: homologous recombination; mph1; crossover formation; genome replication; mhf; mte1
Journal Title: Genes and Development
Volume: 30
Issue: 6
ISSN: 0890-9369
Publisher: Cold Spring Harbor Laboratory Press  
Date Published: 2016-03-15
Start Page: 687
End Page: 699
Language: English
DOI: 10.1101/gad.276139.115
PROVIDER: scopus
PMCID: PMC4803054
PUBMED: 26966246
DOI/URL:
Notes: Article -- Export Date: 1 July 2016 -- Source: Scopus
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MSK Authors
  1. Xiaolan Zhao
    77 Zhao
  2. Koyi Choi
    9 Choi
  3. Jaclyn N Bonner
    5 Bonner