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Poxvirus DNA topoisomerase knockout mutant exhibits decreased infectivity associated with reduced early transcription

机译:痘病毒DNA拓扑异构酶基因敲除突变体表现出与减少的早期转录相关的传染性降低

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Vaccinia virus encodes a type I DNA topoisomerase that is highly conserved in all known poxviruses. Although the structure and catalytic activity of the enzyme were well studied, little was known about its biological function. The viral topoisomerase was thought to be essential, and roles in DNA replication, recombination, concatemer resolution, and transcription were suggested. Here, we demonstrated that the topoisomerase is not essential for replication of vaccinia virus in cultured cells, although deletion mutants formed fewer and smaller plaques on cell monolayers than wild-type virus. Purified mutant virus particles were able to bind and enter cells but exhibited reduced viral early transcription and a delay in DNA replication. Infecting with a high number of virus particles increased early mRNA and accelerated viral DNA synthesis. Processing of viral DNA concatemers into unit-length genomes was unimpaired at either a low or high multiplicity of infection. The data suggest that the primary, perhaps only, role of the poxvirus topoisomerase is to increase early transcription, which takes place within virus cores in the cytoplasm of infected cells. Because the topoisomerase functions early in infection, drugs capable of penetrating the virus core and irreversibly damaging DNA by trapping nicked DNA-topoisomerase intermediates could make potent antiviral agents.
机译:牛痘病毒编码的I型DNA拓扑异构酶在所有已知的痘病毒中高度保守。尽管对该酶的结构和催化活性进行了很好的研究,但对其生物学功能知之甚少。病毒拓扑异构酶被认为是必不可少的,并建议在DNA复制,重组,连接体拆分和转录中发挥作用。在这里,我们证明了拓扑异构酶对于牛痘病毒在培养细胞中的复制不是必不可少的,尽管与野生型病毒相比,缺失突变体在细胞单层上形成的菌斑越来越少。纯化的突变病毒颗粒能够结合并进入细胞,但表现出减少的病毒早期转录和DNA复制的延迟。感染大量病毒颗粒会增加早期mRNA并加速病毒DNA的合成。在低或高感染复数下,病毒DNA串联体加工成单位长度基因组的过程不会受到影响。数据表明,痘病毒拓扑异构酶的主要作用(也许仅仅是作用)是增加早期转录,这种转录发生在被感染细胞的细胞质内的病毒核心内。由于拓扑异构酶在感染初期就起作用,因此能够通过捕获有缺口的DNA-拓扑异构酶中间体而能够穿透病毒核心并不可逆转地破坏DNA的药物可以成为有效的抗病毒剂。

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