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Biochemical analyses indicate that binding and cleavage specificities define the ordered processing of human Okazaki fragments by Dna2 and FEN1

机译:生化分析表明结合和裂解特异性定义了由Dna2和FEN1对人Okazaki片段的有序加工

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摘要

In eukaryotic Okazaki fragment processing, the RNA primer is displaced into a single-stranded flap prior to removal. Evidence suggests that some flaps become long before they are cleaved, and that this cleavage involves the sequential action of two nucleases. Strand displacement characteristics of the polymerase show that a short gap precedes the flap during synthesis. Using biochemical techniques, binding and cleavage assays presented here indicate that when the flap is ∼30 nt long the nuclease Dna2 can bind with high affinity to the flap and downstream double strand and begin cleavage. When the polymerase idles or dissociates the Dna2 can reorient for additional contacts with the upstream primer region, allowing the nuclease to remain stably bound as the flap is further shortened. The DNA can then equilibrate to a double flap that can bind Dna2 and flap endonuclease (FEN1) simultaneously. When Dna2 shortens the flap even more, FEN1 can displace the Dna2 and cleave at the flap base to make a nick for ligation.
机译:在真核冈崎片段加工中,RNA引物在移出前先移入单链瓣中。有证据表明,一些皮瓣在被切割之前就已经很久了,并且这种切割涉及两个核酸酶的顺序作用。聚合酶的链置换特性表明,在合成过程中,襟翼之前有一个短缝隙。使用生物化学技术,此处介绍的结合和裂解测定表明,当皮瓣约30 nt长时,核酸酶Dna2可以与皮瓣和下游双链高亲和力结合并开始裂解。当聚合酶闲置或解离时,Dna2可以重新定向以与上游引物区域进行额外接触,从而随着皮瓣的进一步缩短,核酸酶得以稳定结合。然后,DNA可以平衡为可同时结合Dna2和皮瓣内切核酸酶(FEN1)的双皮瓣。当Dna2进一步缩短皮瓣时,FEN1可以移位Dna2并在皮瓣底部劈开以形成结扎切口。

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