首页> 美国卫生研究院文献>Journal of Virology >Rapid Genetic Engineering of Human Cytomegalovirus by Using a Lambda Phage Linear Recombination System: Demonstration that pp28 (UL99) Is Essential for Production of Infectious Virus
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Rapid Genetic Engineering of Human Cytomegalovirus by Using a Lambda Phage Linear Recombination System: Demonstration that pp28 (UL99) Is Essential for Production of Infectious Virus

机译:使用Lambda噬菌体线性重组系统对人类巨细胞病毒进行快速基因工程:证明pp28(UL99)对生产传染性病毒至关重要

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摘要

A highly efficient lambda phage recombination system previously utilized for studies of bacterial artificial chromosome (BAC)-maintained mouse chromosomal DNA was adapted for the study of the role of human cytomegalovirus (HCMV)-encoded pp28 (UL99) in virus replication. Incorporating a two-step mutagenesis strategy with blue/white selection in Escherichia coli containing a HCMV AD169 BAC, we have shown that we can rapidly introduce point mutations into the HCMV BAC using linear PCR fragments. All manipulations were carried out in bacteria, which greatly accelerated the introduction and analysis of mutations in the viral genome. Our results indicated that HCMV pp28 was essential for the production of infectious virus and that introduction of a single base change that resulted in loss of the myristylation site on pp28 was also associated with the lack of production of infectious virus. Although the block in the viral morphogenesis cannot be determined from these studies, the latter finding suggested that authentic intracellular localization of pp28, not only the expression of the protein, is required for virus assembly.
机译:以前用于研究细菌人工染色体(BAC)维持的小鼠染色体DNA的高效λ噬菌体重组系统适用于研究人类巨细胞病毒(HCMV)编码的pp28(UL99)在病毒复制中的作用。在包含HCMV AD169 BAC的大肠杆菌中,将两步诱变策略与蓝/白选择结合在一起,我们已经表明,我们可以使用线性PCR片段将点突变快速引入HCMV BAC。所有操作均在细菌中进行,这大大加快了病毒基因组突变的引入和分析。我们的结果表明,HCMV pp28对生产传染性病毒至关重要,而引入单个碱基的变化导致pp28肉豆蔻酰化位点的缺失也与缺乏生产性传染性病毒有关。尽管无法从这些研究中确定病毒形态发生的阻滞,但后一项发现表明,病毒装配需要pp28的真正细胞​​内定位,而不仅仅是蛋白的表达。

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