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首页> 外文期刊>Journal of molecular cell biology >SUMO-1 modification of FEN1 facilitates its interaction with Rad9–Rad1–Hus1 to counteract DNA replication stress
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SUMO-1 modification of FEN1 facilitates its interaction with Rad9–Rad1–Hus1 to counteract DNA replication stress

机译:FEN1的SUMO-1修饰促进其与Rad9–Rad1–Hus1的相互作用以抵消DNA复制压​​力

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Human flap endonuclease 1 (FEN1) is a structure-specific, multi-functional endonuclease essential for DNA replication and repair. We and others have shown that during DNA replication, FEN1 processes Okazaki fragments via its interaction with the proliferating cell nuclear antigen (PCNA). Alternatively, in response to DNA damage, FEN1 interacts with the PCNA-like Rad9–Rad1–Hus1 complex instead of PCNA to engage in DNA repair activities, such as homology-directed repair of stalled DNA replication forks. However, it is unclear how FEN1 is able to switch between these interactions and its roles in DNA replication and DNA repair. Here, we report that FEN1 undergoes SUMOylation by SUMO-1 in response to DNA replication fork-stalling agents, such as UV irradiation, hydroxyurea, and mitomycin C. This DNA damage-induced SUMO-1 modification promotes the interaction of FEN1 with the Rad9–Rad1–Hus1 complex. Furthermore, we found that FEN1 mutations that prevent its SUMO-1 modification also impair its ability to interact with HUS1 and to rescue stalled replication forks. These impairments lead to the accumulation of DNA damage and heightened sensitivity to fork-stalling agents. Altogether, our findings suggest an important role of the SUMO-1 modification of FEN1 in regulating its roles in DNA replication and repair.
机译:人瓣内切核酸酶1(FEN1)是DNA复制和修复必不可少的结构特异性多功能核酸内切酶。我们和其他人已经表明,在DNA复制过程中,FEN1通过其与增殖细胞核抗原(PCNA)的相互作用来处理Okazaki片段。另外,作为对DNA损伤的响应,FEN1与PCNA样的Rad9–Rad1–Hus1复合物相互作用,而不是与PCNA相互作用,从而参与DNA修复活动,例如对停滞的DNA复制叉进行同源性指导的修复。但是,尚不清楚FEN1如何在这些相互作用之间及其在DNA复制和DNA修复中的作用之间进行切换。在这里,我们报告说,FEN1通过SUMO-1响应DNA复制叉固定剂(例如紫外线,羟基脲和丝裂霉素C)经历SUMOylation。这种DNA损伤诱导的SUMO-1修饰促进FEN1与Rad9的相互作用。 –Rad1–Hus1复合体。此外,我们发现阻止其SUMO-1修饰的FEN1突变也削弱了其与HUS1相互作用和营救停滞的复制叉的能力。这些损伤导致DNA损伤的积累,并增强了对前叉保鲜剂的敏感性。总之,我们的发现表明FEN1的SUMO-1修饰在调节其在DNA复制和修复中的作用很重要。

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