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A Unique B-Family DNA Polymerase Facilitating Error-Prone DNA Damage Tolerance in Crenarchaeota

机译:一种独特的B家族DNA聚合酶,促进Crenarchaota的易于易于易患的DNA损伤耐受性

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摘要

Sulfolobus islandicus codes for four DNA polymerases: three are of the B-family (Dpo1, Dpo2, and Dpo3), and one is of the Y-family (Dpo4). Western analysis revealed that among the four polymerases, only Dpo2 exhibited DNA damage-inducible expression. To investigate how these DNA polymerases could contribute to DNA damage tolerance in S. islandicus, we conducted genetic analysis of their encoding genes in this archaeon. Plasmid-borne gene expression revealed that Dpo2 increases cell survival upon DNA damage at the expense of mutagenesis. Gene deletion studies showed although dpo1 is essential, the remaining three genes are dispensable. Furthermore, although Dpo4 functions in housekeeping translesion DNA synthesis (TLS), Dpo2, a B-family DNA polymerase once predicted to be inactive, functions as a damage-inducible TLS enzyme solely responsible for targeted mutagenesis, facilitating GC to AT/TA conversions in the process. Together, our data indicate that Dpo2 is the main DNA polymerase responsible for DNA damage tolerance and is the primary source of targeted mutagenesis. Given that crenarchaea encoding a Dpo2 also have a low-GC composition genome, the Dpo2-dependent DNA repair pathway may be conserved in this archaeal lineage.
机译:四种DNA聚合酶的苏洛枯草岛码:三个是B家族(DPO1,DPO2和DPO3),一种是Y家族(DPO4)。西方分析显示,在四个聚合酶中,只有DPO2表现出DNA损伤诱导的表达。为了研究这些DNA聚合酶如何有助于在S.Sollsicus中有助于DNA损伤耐受性,我们对该古老的群体进行了编码基因的遗传分析。质粒传播的基因表达显示,DPO2在诱变时对DNA损伤的损伤增加细胞存活。基因缺失研究表明,虽然DPO1是必需的,但其余的三种基因是可分配的。此外,虽然DPO4在内脏转锁性DNA合成(TLS)中的功能,DPO2,B系列DNA聚合酶,但是一旦预测为无活性,才能用作损伤诱导的TLS酶,该酶单一负责靶向诱变,促进GC到AT / TA转换这个过程。我们的数据在一起表明DPO2是负责DNA损伤耐受性的主要DNA聚合酶,是靶向诱变的主要来源。鉴于编码DPO2的曲调也具有低GC组成基因组,可以在该拱形谱系中保守DPO2依赖性DNA修复途径。

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