首页> 美国卫生研究院文献>Nucleic Acids Research >RecJ-like protein from Pyrococcus furiosus has 3′–5′ exonuclease activity on RNA: implications for proofreading of 3′-mismatched RNA primers in DNA replication
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RecJ-like protein from Pyrococcus furiosus has 3′–5′ exonuclease activity on RNA: implications for proofreading of 3′-mismatched RNA primers in DNA replication

机译:激烈热球菌的RecJ样蛋白对RNA具有3–5核酸外切酶活性:对DNA复制中3-错配的RNA引物的校对有影响

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摘要

Replicative DNA polymerases require an RNA primer for leading and lagging strand DNA synthesis, and primase is responsible for the de novo synthesis of this RNA primer. However, the archaeal primase from Pyrococcus furiosus (Pfu) frequently incorporates mismatched nucleoside monophosphate, which stops RNA synthesis. Pfu DNA polymerase (PolB) cannot elongate the resulting 3′-mismatched RNA primer because it cannot remove the 3′-mismatched ribonucleotide. This study demonstrates the potential role of a RecJ-like protein from P. furiosus (PfRecJ) in proofreading 3′-mismatched ribonucleotides. PfRecJ hydrolyzes single-stranded RNA and the RNA strand of RNA/DNA hybrids in the 3′–5′ direction, and the kinetic parameters (Km and Kcat) of PfRecJ during RNA strand digestion are consistent with a role in proofreading 3′-mismatched RNA primers. Replication protein A, the single-stranded DNA–binding protein, stimulates the removal of 3′-mismatched ribonucleotides of the RNA strand in RNA/DNA hybrids, and Pfu DNA polymerase can extend the 3′-mismatched RNA primer after the 3′-mismatched ribonucleotide is removed by PfRecJ. Finally, we reconstituted the primer-proofreading reaction of a 3′-mismatched ribonucleotide RNA/DNA hybrid using PfRecJ, replication protein A, Proliferating cell nuclear antigen (PCNA) and PolB. Given that PfRecJ is associated with the GINS complex, a central nexus in archaeal DNA replication fork, we speculate that PfRecJ proofreads the RNA primer in vivo.
机译:复制性DNA聚合酶需要RNA引物来引导和落后链DNA的合成,而引发酶则负责该RNA引物的从头合成。但是,激烈热球菌(Pfuroccuscus furiosus,Pfu)的古细菌引发酶经常掺入错配的一磷酸核苷,从而停止了RNA的合成。 Pfu DNA聚合酶(PolB)无法延长所得3'-错配的RNA引物,因为它无法去除3'-错配的核糖核苷酸。这项研究证明了来自P. furiosus的RecJ样蛋白(PfRecJ)在校对3'不匹配核糖核苷酸方面的潜在作用。 PfRecJ在3'–5'方向上水解单链RNA和RNA / DNA杂合体的RNA链,RNA链消化过程中PfRecJ的动力学参数(Km和Kcat)与校正3'-错配的作用一致RNA引物。复制蛋白A是单链DNA结合蛋白,可刺激RNA / DNA杂合体中RNA链中3'-错配的核糖核苷酸的去除,而Pfu DNA聚合酶可以在3'-后延伸3'-错配的RNA引物。 PfRecJ去除了错配的核糖核苷酸。最后,我们使用PfRecJ,复制蛋白A,增殖细胞核抗原(PCNA)和PolB重建了3'-错配的核糖核苷酸RNA / DNA杂交体的引物校对反应。考虑到PfRecJ与古细菌DNA复制叉中的中心联系GINS复杂相关,我们推测PfRecJ在体内校对了RNA引物。

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