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Promotion of RAD51-Mediated Homologous DNA Pairing by the RAD51AP1-UAF1 Complex

机译:RAD51AP1-UAF1复合体促进RAD51介导的同源DNA配对

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The UAF1-USP1 complex deubiquitinates FANCD2 during execution of the Fanconi anemia DNA damage response pathway. As such, UAF1 depletion results in persistent FANCD2 ubiquitination and DNA damage hypersensitivity. UAF1-deficient cells are also impaired for DNA repair by homologous recombination. Herein, we show that UAF1 binds DNA and forms a dimeric complex with RAD51AP1, an accessory factor of the RAD51 recombinase, and a trimeric complex with RAD51 through RAD51AP1. Two small ubiquitin-like modifier (SUMO)-like domains in UAF1 and a SUMO-interacting motif in RAD51AP1 mediate complex formation. Importantly, UAF1 enhances RAD51-mediated homologous DNA pairing in a manner that is dependent on complex formation with RAD51AP1 but independent of USP1. Mechanistically, RAD51AP1-UAF1 co-operates with RAD51 to assemble the synaptic complex, a critical nucleoprotein intermediate in homologous recombination, and cellular studies reveal the biological significance of the RAD51AP1-UAF1 protein complex. Our findings provide insights into an apparently USP1-independent role of UAF1 in genome maintenance.
机译:在执行Fanconi贫血DNA损伤反应途径期间,UAF1-USP1复合物使FANCD2去泛素化。这样,UAF1耗竭会导致FANCD2持续泛素化和DNA损伤超敏反应。缺乏UAF1的细胞也因同源重组而受损,无法进行DNA修复。在本文中,我们显示UAF1与DNA结合并与RAD51AP1,RAD51重组酶的辅助因子形成二聚体复合物,并通过RAD51AP1与RAD51形成三聚体复合物。 UAF1中的两个小泛素样修饰子(SUMO)类结构域和RAD51AP1中的SUMO相互作用基序介导复合物的形成。重要的是,UAF1以依赖于与RAD51AP1形成复合物但不依赖USP1的方式增强RAD51介导的同源DNA配对。从机理上讲,RAD51AP1-UAF1与RAD51协同组装突触复合物,这是同源重组中的关键核蛋白中间体,细胞研究揭示了RAD51AP1-UAF1蛋白质复合物的生物学意义。我们的发现为UAF1在基因组维持中与USP1无关的作用提供了见识。

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