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首页> 外文期刊>Nucleic Acids Research >Human PrimPol is a highly error-prone polymerase regulated by single-stranded DNA binding proteins
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Human PrimPol is a highly error-prone polymerase regulated by single-stranded DNA binding proteins

机译:人PrimPol是一种高度易错的聚合酶,受单链DNA结合蛋白调控

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摘要

PrimPol is a recently identified polymerase involved in eukaryotic DNA damage tolerance, employed in both re-priming and translesion synthesis mechanisms to bypass nuclear and mitochondrial DNA lesions. In this report, we investigate how the enzymatic activities of human PrimPol are regulated. We show that, unlike other TLS polymerases, PrimPol is not stimulated by PCNA and does not interact with it in vivo. We identify that PrimPol interacts with both of the major single-strand binding proteins, RPA and mtSSB in vivo. Using NMR spectroscopy, we characterize the domains responsible for the PrimPol-RPA interaction, revealing that PrimPol binds directly to the N-terminal domain of RPA70. In contrast to the established role of SSBs in stimulating replicative polymerases, we find that SSBs significantly limit the primase and polymerase activities of PrimPol. To identify the requirement for this regulation, we employed two forward mutation assays to characterize PrimPol's replication fidelity. We find that PrimPol is a mutagenic polymerase, with a unique error specificity that is highly biased towards insertion-deletion errors. Given the error-prone disposition of PrimPol, we propose a mechanism whereby SSBs greatly restrict the contribution of this enzyme to DNA replication at stalled forks, thus reducing the mutagenic potential of PrimPol during genome replication.
机译:PrimPol是最近发现的一种涉及真核DNA损伤耐受性的聚合酶,可用于重引发和跨损伤合成机制,以绕过核和线粒体DNA损伤。在此报告中,我们调查了人类PrimPol的酶促活性如何被调节。我们显示,与其他TLS聚合酶不同,PrimPol不受PCNA刺激,并且在体内不会与其相互作用。我们确定PrimPol与体内的两个主要的单链结合蛋白RPA和mtSSB相互作用。使用核磁共振波谱,我们表征负责PrimPol-RPA相互作用的域,揭示PrimPol直接结合到RPA70的N末端域。与SSB在刺激复制型聚合酶中已确立的作用相反,我们发现SSB显着限制了PrimPol的启动酶和聚合酶活性。为了确定该法规的要求,我们采用了两种正向突变测定法来表征PrimPol的复制保真度。我们发现PrimPol是一种诱变聚合酶,具有独特的错误特异性,高度偏向于插入缺失错误。考虑到PrimPol易于出错的倾向,我们提出了一种机制,SSB极大地限制了该酶在停滞的叉子上对DNA复制的贡献,从而降低了基因组复制期间PrimPol的诱变潜力。

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