首页> 美国卫生研究院文献>Journal of Virology >Vaccinia Virus Uracil DNA Glycosylase Has an Essential Role in DNA Synthesis That Is Independent of Its Glycosylase Activity: Catalytic Site Mutations Reduce Virulence but Not Virus Replication in Cultured Cells
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Vaccinia Virus Uracil DNA Glycosylase Has an Essential Role in DNA Synthesis That Is Independent of Its Glycosylase Activity: Catalytic Site Mutations Reduce Virulence but Not Virus Replication in Cultured Cells

机译:牛痘病毒尿嘧啶DNA糖基化酶在DNA合成中具有重要作用而其糖基化酶活性无关:催化位点突变可降低毒力但不能在培养细胞中复制病毒

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摘要

Previous findings that the vaccinia virus uracil DNA glycosylase is required for virus DNA replication, coupled with an inability to isolate a mutant with an active site substitution in the glycosylase gene, were surprising, as such enzymes function in DNA repair and bacterial, yeast, and mammalian null mutants are viable. To further study the role of the viral protein, we constructed recombinant vaccinia viruses with single or double mutations (D68N and H181L) in the uracil DNA glycosylase conserved catalytic site by using a complementing cell line that constitutively expresses the viral enzyme. Although these mutations abolished uracil DNA glycosylase activity, they did not prevent viral DNA replication or propagation on a variety of noncomplementing cell lines or human primary skin fibroblasts. In contrast, replication of a uracil DNA glycosylase deletion mutant occurred only in the complementing cell line. Therefore, the uracil DNA glycosylase has an essential role in DNA replication that is independent of its glycosylase activity. Nevertheless, the conservation of the catalytic site in all poxvirus orthologs suggested an important role in vivo. This idea was confirmed by the decreased virulence of catalytic-site mutants when administered by the intranasal route to mice.
机译:以前的发现是痘苗病毒尿嘧啶DNA糖基化酶是病毒DNA复制所必需的,再加上无法分离出糖基化酶基因中具有活性位点取代的突变体,这是令人惊讶的,因为此类酶在DNA修复和细菌,酵母和哺乳动物无效突变体是可行的。为了进一步研究病毒蛋白的作用,我们使用组成型表达病毒酶的互补细胞系构建了在尿嘧啶DNA糖基化酶保守催化位点具有单突变或双突变(D68N和H181L)的重组痘苗病毒。尽管这些突变消除了尿嘧啶DNA糖基化酶的活性,但它们并不能阻止病毒DNA在各种非互补性细胞系或人类原代皮肤成纤维细胞上的复制或繁殖。相反,尿嘧啶DNA糖基化酶缺失突变体的复制仅在互补细胞系中发生。因此,尿嘧啶DNA糖基化酶在DNA复制中具有重要作用,而与其糖基化酶活性无关。然而,在所有痘病毒直系同源物中催化位点的保守性提示在体内具有重要作用。当通过鼻内途径给小鼠施用时,催化位点突变体的毒力降低证实了这一想法。

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