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Missed cleavage opportunities by FEN1 lead to Okazaki fragment maturation via the long-flap pathway

机译:FEN1错过的裂解机会导致长崎途经的冈崎片段成熟

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摘要

RNA–DNA hybrid primers synthesized by low fidelity DNA polymerase α to initiate eukaryotic lagging strand synthesis must be removed efficiently during Okazaki fragment (OF) maturation to complete DNA replication. In this process, each OF primer is displaced and the resulting 5′-single-stranded flap is cleaved by structure-specific 5′-nucleases, mainly Flap Endonuclease 1 (FEN1), to generate a ligatable nick. At least two models have been proposed to describe primer removal, namely short- and long-flap pathways that involve FEN1 or FEN1 along with Replication Protein A (RPA) and Dna2 helicaseuclease, respectively. We addressed the question of pathway choice by studying the kinetic mechanism of FEN1 action on short- and long-flap DNA substrates. Using single molecule FRET and rapid quench-flow bulk cleavage assays, we showed that unlike short-flap substrates, which are bound, bent and cleaved within the first encounter between FEN1 and DNA, long-flap substrates can escape cleavage even after DNA binding and bending. Notably, FEN1 can access both substrates in the presence of RPA, but bending and cleavage of long-flap DNA is specifically inhibited. We propose that FEN1 attempts to process both short and long flaps, but occasional missed cleavage of the latter allows RPA binding and triggers the long-flap OF maturation pathway.
机译:由低保真度DNA聚合酶α合成以启动真核生物落后链合成的RNA–DNA杂交引物必须在冈崎片段(OF)成熟期间有效去除,以完成DNA复制。在此过程中,每个OF引物均被置换,所得的5'单链襟翼被结构特异性5'核酸酶(主要是Flap核酸内切酶1(FEN1))裂解,从而产生可连接的切口。已经提出了至少两个模型来描述引物的去除,即分别涉及FEN1或FEN1以及复制蛋白A(RPA)和Dna2解旋酶/核酸酶的短瓣和长瓣途径。我们通过研究FEN1作用于短和长瓣DNA底物的动力学机制来解决途径选择的问题。使用单分子FRET和快速淬灭流批量裂解测定法,我们显示出与短瓣底物不同,后者在FEN1与DNA的首次接触中被结合,弯曲和裂解,即使在DNA结合和结合后,长瓣底物也能逃脱裂解作用。弯曲。值得注意的是,在存在RPA的情况下,FEN1可以进入两个底物,但是长瓣DNA的弯曲和切割受到了特异性抑制。我们建议FEN1试图处理短和长的皮瓣,但偶尔错过后者的切割允许RPA绑定并触发长皮瓣的成熟途径。

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