Xue Xiaoyu, Papusha Alma, Choi Koyi, Bonner Jacob N, Kumar Sandeep, Niu Hengyao, Kaur Hardeep, Zheng Xiao-Feng, Donnianni Roberto A, Lu Lucy, Lichten Michael, Zhao Xiaolan, Ira Grzegorz, Sung Patrick
Department of Molecular Biophysics and Biochemistry, Yale University School of Medicine, New Haven, Connecticut 06520, USA;
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas 77030, USA;
Genes Dev. 2016 Mar 15;30(6):687-99. doi: 10.1101/gad.276139.115. Epub 2016 Mar 10.
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 and DNA species that resemble a DNA replication fork and the D loop 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.
我们鉴定出Mte1(Mph1相关端粒维持蛋白1)是酿酒酵母Mph1的多功能调节因子,Mph1是FANCM家族DNA运动蛋白的成员,对同源重组过程中的DNA复制叉修复和交叉抑制很重要。我们发现Mte1与Mph1以及类似于DNA复制叉和重组过程中形成的D环的DNA物种相互作用。在生化方面,Mte1在模型底物中刺激Mph1介导的DNA复制叉倒退和分支迁移。与此活性一致,遗传分析表明Mte1在复制叉修复中与Mph1和相关的MHF复合物一起发挥作用。令人惊讶的是,Mte1拮抗Mph1-MHF的D环解离活性,并在有丝分裂重组中发挥促进交叉的作用。我们进一步表明,Mte1对Mph1活性的影响需要其与Mph1和DNA结合。因此,Mte1差异性地调节Mph1活性,以在重组和复制叉修复中实现不同的结果。