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首页> 外文期刊>Nucleic Acids Research >Sulfolobus solfataricus P2 DNA polymerase IV (Dpo4): an archaeal DinB-like DNA polymerase with lesion-bypass properties akin to eukaryotic polη
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Sulfolobus solfataricus P2 DNA polymerase IV (Dpo4): an archaeal DinB-like DNA polymerase with lesion-bypass properties akin to eukaryotic polη

机译:Sulfolobus solfataricus P2 DNA聚合酶IV(Dpo4):一种古细菌DinB样DNA聚合酶,具有类似于真核polmn的病变旁通特性

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Phylogenetic analysis of Y-family DNA polymerases suggests that it can be subdivided into several discrete branches consisting of UmuC/DinB/Rev1/Rad30/Rad30A and Rad30B. The most diverse is the DinB family that is found in all three kingdoms of life. Searches of the complete genome of the crenarchaeon Sulfolobus solfataricus P2 reveal that it possesses a DinB homolog that has been termed DNA polymerase IV (Dpo4). We have overproduced and purified native Dpo4 protein and report here its enzymatic characterization. Dpo4 is thermostable, but can also synthesize DNA at 37 ℃. Under these conditions, the enzyme exhibits misinsertion fidelities in the range of 8 * 10~(-3) to 3 * 10~(-4). Dpo4 is distributive but at high enzyme to template ratios can synthesize long stretches of DNA and can substitute for Taq polymerase in PCR. On damaged DNA templates, Dop4 can facilitate translesion replication of an abasic site, a cis-syn thymine-thymine dimer, as well as acetyl aminofluorene adduced- and cisplatinated-guanine residues. Thus, although phylogenetically related to DinB polymerases, our studies suggest that the archaeal Dpo4 enzyme exhibits lesion-bypass properties that are, in fact, more akin to those of eukaryotic polη.
机译:Y家族DNA聚合酶的系统发育分析表明,它可以细分为几个离散的分支,其中包括UmuC / DinB / Rev1 / Rad30 / Rad30A和Rad30B。最多样化的是在生活的所有三个王国中发现的DinB家庭。搜索鱼腥草S2的完整基因组表明,它具有DinB同系物,被称为DNA聚合酶IV(Dpo4)。我们已经过量生产和纯化了天然Dpo4蛋白,并在此报告其酶学表征。 Dpo4具有热稳定性,但也可以在37℃合成DNA。在这些条件下,该酶表现出8 * 10〜(-3)至3 * 10〜(-4)的错误插入保真度。 Dpo4是分布性的,但酶与模板的比率高时,可以合成长链DNA,并可以替代PCR中的Taq聚合酶。在受损的DNA模板上,Dop4可以促进无碱基位点,顺式-胸腺嘧啶-胸腺嘧啶二聚体以及乙酰氨基芴加成的和顺铂化的鸟嘌呤残基的反转录复制。因此,尽管在系统发育上与DinB聚合酶相关,但我们的研究表明,古细菌Dpo4酶表现出病损旁通特性,实际上更类似于真核polη。

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