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The 3′-to-5′ Exonuclease Activity of Vaccinia Virus DNA Polymerase Is Essential and Plays a Role in Promoting Virus Genetic Recombination▿

机译:痘苗病毒DNA聚合酶的3'至5'核酸外切酶活性至关重要,并在促进病毒遗传重组中发挥作用▿

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摘要

Poxviruses are subjected to extraordinarily high levels of genetic recombination during infection, although the enzymes catalyzing these reactions have never been identified. However, it is clear that virus-encoded DNA polymerases play some unknown yet critical role in virus recombination. Using a novel, antiviral-drug-based strategy to dissect recombination and replication reactions, we now show that the 3′-to-5′ proofreading exonuclease activity of the viral DNA polymerase plays a key role in promoting recombination reactions. Linear DNA substrates were prepared containing the dCMP analog cidofovir (CDV) incorporated into the 3′ ends of the molecules. The drug blocked the formation of concatemeric recombinant molecules in vitro in a process that was catalyzed by the proofreading activity of vaccinia virus DNA polymerase. Recombinant formation was also blocked when CDV-containing recombination substrates were transfected into cells infected with wild-type vaccinia virus. These inhibitory effects could be overcome if CDV-containing substrates were transfected into cells infected with CDV-resistant (CDVr) viruses, but only when resistance was linked to an A314T substitution mutation mapping within the 3′-to-5′ exonuclease domain of the viral polymerase. Viruses encoding a CDVr mutation in the polymerase domain still exhibited a CDV-induced recombination deficiency. The A314T substitution also enhanced the enzyme's capacity to excise CDV molecules from the 3′ ends of duplex DNA and to recombine these DNAs in vitro, as judged from experiments using purified mutant DNA polymerase. The 3′-to-5′ exonuclease activity appears to be an essential virus function, and our results suggest that this might be because poxviruses use it to promote genetic exchange.
机译:痘病毒在感染过程中经历了异常高水平的基因重组,尽管从未发现过催化这些反应的酶。但是,很明显,病毒编码的DNA聚合酶在病毒重组中起着某些未知但至关重要的作用。使用一种新颖的,基于抗病毒药物的策略来剖析重组和复制反应,我们现在表明病毒DNA聚合酶的3'至5'校对核酸外切酶活性在促进重组反应中起着关键作用。制备线性DNA底物,其中包含掺入分子3'端的dCMP类似物西多福韦(CDV)。在牛痘病毒DNA聚合酶的校对活性的催化下,该药物在体外阻断了串联连接重组分子的形成。当将含有CDV的重组底物转染到野生型痘苗病毒感染的细胞中时,重组的形成也被阻断。如果将含CDV的底物转染到CDV耐药(CDVr)病毒感染的细胞中,则只能克服这些抑制作用,但前提是必须将耐药与A314T取代突变映射在AFP的3'至5'核酸外切酶域内连接病毒聚合酶。在聚合酶结构域中编码CDVr突变的病毒仍然表现出CDV诱导的重组缺陷。根据使用纯化的突变型DNA聚合酶进行的实验判断,A314T取代还增强了酶从双链体DNA的3'末端切除CDV分子并在体外重组这些DNA的能力。 3'至5'核酸外切酶活性似乎是一种基本的病毒功能,我们的结果表明这可能是因为痘病毒使用它来促进遗传交换。

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