首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Cloning the vaccinia virus genome as a bacterial artificial chromosome in Escherichia coli and recovery of infectious virus in mammalian cells
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Cloning the vaccinia virus genome as a bacterial artificial chromosome in Escherichia coli and recovery of infectious virus in mammalian cells

机译:克隆痘苗病毒基因组作为大肠杆菌中的细菌人工染色体,并回收哺乳动物细胞中的传染性病毒

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The ability to manipulate the vaccinia virus (VAC) genome, as a plasmid in bacteria, would greatly facilitate genetic studies and provide a powerful alternative method of making recombinant viruses. VAC, like other poxviruses, has a linear, double-stranded DNA genome with covalently closed hairpin ends that are resolved from transient head-to-head and tail-to-tail concatemers during replication in the cytoplasm of infected cells. Our strategy to construct a nearly 200,000-bp VAC-bacterial artificial chromosome (BAC) was based on circularization of head-to-tail concatemers of VAC DNA. Cells were infected with a recombinant VAC containing inserted sequences for plasmid replication and maintenance in Escherichia coli; DNA concatemer resolution was inhibited leading to formation and accumulation of head-to-tail concatemers, in addition to the usual head-to-head and tail-to-tail forms; the concatemers were circularized by homologous or Cre-loxP-medi-ated recombination; and E. coli were transformed with DNA from the infected cell lysates. Stable plasmids containing the entire VAC genome, with an intact concatemer junction sequence, were identified. Rescue of infectious VAC was consistently achieved by transfecting the VAC-BAC plasmids into mammalian cells that were infected with a helper nonreplicating fowlpox virus.
机译:操纵痘苗病毒(VAC)基因组(作为细菌中的质粒)的能力将极大地促进遗传研究,并提供一种强大的替代方法来制备重组病毒。像其他痘病毒一样,VAC具有线性,双链DNA基因组,具有共价闭合的发夹末端,在感染细胞的细胞质中复制过程中,该瞬时从头对头和尾对尾的串联体分解。我们构建近200,000 bp的VAC细菌人工染色体(BAC)的策略是基于VAC DNA头对尾串联体的环化。细胞用含有插入序列的重组VAC感染,该序列用于质粒复制和在大肠杆菌中的维持。除了通常的头对头和尾对尾形式外,DNA连环蛋白的分解也受到抑制,导致头对尾的连接体形成和积累。通过同源或Cre-loxP-介导的重组使串联体环化;用感染的细胞裂解物的DNA转化大肠杆菌和大肠杆菌。鉴定了包含完整VAC基因组且具有完整串联体连接序列的稳定质粒。通过将VAC-BAC质粒转染到感染了辅助性非复制型禽痘病毒的哺乳动物细胞中,可以始终实现传染性VAC的拯救。

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