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The wonders of flap endonucleases: structure, function, mechanism and regulation

机译:瓣内切核酸酶的奇迹:结构,功能,机制和调控

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摘要

Processing of Okazaki fragments to complete lagging strand DNA synthesis requires coordination among several proteins. RNA primers and DNA synthesised by DNA polymerase α are displaced by DNA polymerase δ to create bifurcated nucleic acid structures known as 5′-flaps. These 5′-flaps are removed by Flap Endonuclease 1 (FEN), a structure-specific nuclease whose divalent metal ion-dependent phosphodiesterase activity cleaves 5′-flaps with exquisite specificity. FENs are paradigms for the 5′ nuclease superfamily, whose members perform a wide variety of roles in nucleic acid metabolism using a similar nuclease core domain that displays common biochemical properties and structural features. A detailed review of FEN structure is undertaken to show how DNA substrate recognition occurs and how FEN achieves cleavage at a single phosphate diester. A proposed double nucleotide unpairing trap (DoNUT) is discussed with regards to FEN and has relevance to the wider 5′ nuclease superfamily. The homotrimeric proliferating cell nuclear antigen protein (PCNA) coordinates the actions of DNA polymerase, FEN and DNA ligase by facilitating the hand-off intermediates between each protein during Okazaki fragment maturation to maximise through-put and minimise consequences of intermediates being released into the wider cellular environment. FEN has numerous partner proteins that modulate and control its action during DNA replication and is also controlled by several post-translational modification events, all acting in concert to maintain precise and appropriate cleavage of Okazaki fragment intermediates during DNA replication.
机译:冈崎片段的加工以完成滞后链DNA合成需要几种蛋白质之间的协调。由DNA聚合酶δ置换的RNA引物和DNA被DNA聚合酶δ置换,形成分叉的核酸结构,称为5'-襟翼。这些5'-襟翼被Flap Endonuclease 1(FEN)去除,FEN是一种结构特异性核酸酶,其二价金属离子依赖性磷酸二酯酶活性以极高的特异性裂解5'-襟翼。 FEN是5'核酸酶超家族的范例,其成员使用相似的核酸酶核心结构域在核酸代谢中发挥多种作用,该核酸结构域显示出共同的生化特性和结构特征。对FEN结构进行了详细的综述,以显示DNA底物识别是如何发生的,以及FEN如何在单个磷酸二酯上实现裂解。拟议的双核苷酸不配对陷阱(DoNUT)关于FEN进行了讨论,并且与更广泛的5'核酸酶超家族有关。同源三聚体增殖细胞核抗原蛋白(PCNA)通过在冈崎片段成熟过程中促进每种蛋白之间的交接中间产物来协调DNA聚合酶,FEN和DNA连接酶的作用,以最大化吞吐量并最小化中间产物释放到更广泛的区域蜂窝环境。 FEN有许多伴侣蛋白,它们可以调节和控制DNA复制过程中的作用,还可以通过几个翻译后修饰事件来控制,所有这些蛋白协同作用,以在DNA复制过程中维持Okazaki片段中间体的精确和适当裂解。

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    Atack, John Michael;

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  • 年度 2012
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