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首页> 外文期刊>Nature Communications >DNA requirement in FANCD2 deubiquitination by USP1-UAF1-RAD51AP1 in the Fanconi anemia DNA damage response
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DNA requirement in FANCD2 deubiquitination by USP1-UAF1-RAD51AP1 in the Fanconi anemia DNA damage response

机译:通过USP1-UAF1-RAD51AP1在FANCONI贫血DNA损伤反应中的DNA要求在FANDD2 DNAIMITOPITION

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Fanconi anemia (FA) is a multigenic disease of bone marrow failure and cancer susceptibility stemming from a failure to remove DNA crosslinks and other chromosomal lesions. Within the FA DNA damage response pathway, DNA-dependent monoubiquitinaton of FANCD2 licenses downstream events, while timely FANCD2 deubiquitination serves to extinguish the response. Here, we show with reconstituted biochemical systems, which we developed, that efficient FANCD2 deubiquitination by the USP1-UAF1 complex is dependent on DNA and DNA binding by UAF1. Surprisingly, we find that the DNA binding activity of the UAF1-associated protein RAD51AP1 can substitute for that of UAF1 in FANCD2 deubiquitination in our biochemical system. We also reveal the importance of DNA binding by UAF1 and RAD51AP1 in FANCD2 deubiquitination in the cellular setting. Our results provide insights into a key step in the FA pathway and help define the multifaceted role of the USP1-UAF1-RAD51AP1 complex in DNA damage tolerance and genome repair.
机译:FANCONI贫血(FA)是一种骨髓衰竭的多染性疾病,患有患者的癌症敏感性,从未发生去除DNA交联和其他染色体病变。在FA DNA损伤障碍途径内,FANDD2依赖于下游事件的DNA依赖于诺布里替尼蛋白,而时尚FANCD2脱硫酸化用于熄灭响应。在这里,我们展示了我们开发的重构生化系统,USP1-UAF1复合物的有效的Fancd2脱水率取决于UAF1的DNA和DNA结合。令人惊讶的是,我们发现UAF1相关蛋白质Rad51AP1的DNA结合活性可以替代我们在生化系统中的FANCD2脱氮中的UAF1。我们还揭示了UAF1和Rad51AP1在细胞凝固中的FANDD2脱水中的DNA结合的重要性。我们的结果提供了对FA途径中的关键步骤的见解,并有助于在DNA损伤耐受性和基因组修复中定义USP1-UAF1-RAD51AP1复合物的多方面作用。

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