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Functional regulation of FEN1 nuclease and its link to cancer

机译:FEN1核酸酶的功能调节及其与癌症的联系

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摘要

Flap endonuclease-1 (FEN1) is a member of the Rad2 structure-specific nuclease family. FEN1 possesses FEN, 5'-exonuclease and gap-endonuclease activities. The multiple nuclease activities of FEN1 allow it to participate in numerous DNA metabolic pathways, including Okazaki fragment maturation, stalled replication fork rescue, telomere maintenance, long-patch base excision repair and apoptotic DNA fragmentation. Here, we summarize the distinct roles of the different nuclease activities of FEN1 in these pathways. Recent biochemical and genetic studies indicate that FEN1 interacts with more than 30 proteins and undergoes post-translational modifications. We discuss how FEN1 is regulated via these mechanisms. Moreover, FEN1 interacts with five distinct groups of DNA metabolic proteins, allowing the nuclease to be recruited to a specific DNA metabolic complex, such as the DNA replication machinery for RNA primer removal or the DNA degradosome for apoptotic DNA fragmentation. Some FEN1 interaction partners also stimulate FEN1 nuclease activities to further ensure efficient action in processing of different DNA structures. Post-translational modifications, on the other hand, may be critical to regulate protein-protein interactions and cellular localizations of FEN1. Lastly, we also review the biological significance of FEN1 as a tumor suppressor, with an emphasis on studies of human mutations and mouse models.
机译:瓣内切核酸酶-1(FEN1)是Rad2结构特异性核酸酶家族的成员。 FEN1具有FEN,5'核酸外切酶和缺口核酸内切酶活性。 FEN1的多种核酸酶活性使其可以参与许多DNA代谢途径,包括Okazaki片段成熟,停滞的复制叉拯救,端粒维持,长补丁碱基切除修复和凋亡DNA片段化。在这里,我们总结了FEN1的不同核酸酶活性在这些途径中的独特作用。最近的生化和遗传研究表明,FEN1与30多种蛋白质相互作用并经历翻译后修饰。我们讨论如何通过这些机制调节FEN1。此外,FEN1与五组不同的DNA代谢蛋白相互作用,使核酸酶可以募集到特定的DNA代谢复合物上,例如用于RNA引物去除的DNA复制机制或用于凋亡DNA片段化的DNA降解体。一些FEN1相互作用伙伴还刺激FEN1核酸酶活性,以进一步确保在处理不同DNA结构中的有效作用。另一方面,翻译后修饰对于调节蛋白-蛋白相互作用和FEN1的细胞定位可能至关重要。最后,我们还回顾了FEN1作为肿瘤抑制因子的生物学意义,重点研究了人类突变和小鼠模型。

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