首页> 美国卫生研究院文献>Journal of Virology >Cloning of the Full-Length Rhesus Cytomegalovirus Genome as an Infectious and Self-Excisable Bacterial Artificial Chromosome for Analysis of Viral Pathogenesis
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Cloning of the Full-Length Rhesus Cytomegalovirus Genome as an Infectious and Self-Excisable Bacterial Artificial Chromosome for Analysis of Viral Pathogenesis

机译:完整的恒河猴巨细胞病毒基因组的克隆作为一种可感染的可自我切除的细菌人工染色体用于分析病毒发病机理

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摘要

Rigorous investigation of many functions encoded by cytomegaloviruses (CMVs) requires analysis in the context of virus-host interactions. To facilitate the construction of rhesus CMV (RhCMV) mutants for in vivo studies, a bacterial artificial chromosome (BAC) containing an enhanced green fluorescent protein (EGFP) cassette was engineered into the intergenic region between unique short 1 (US1) and US2 of the full-length viral genome by Cre/lox-mediated recombination. Infectious virions were recovered from rhesus fibroblasts transfected with pRhCMV/BAC-EGFP. However, peak virus yields of cells infected with reconstituted progeny were 10-fold lower than wild-type RhCMV, suggesting that inclusion of the 9-kb BAC sequence impeded viral replication. Accordingly, pRhCMV/BAC-EGFP was further modified to enable efficient excision of the BAC vector from the viral genome after transfection into mammalian cells. Allelic exchange was performed in bacteria to substitute the cre recombinase gene for egfp. Transfection of rhesus fibroblasts with pRhCMV/BAC-Cre resulted in a pure progeny population lacking the vector backbone without the need of further manipulation. The genomic structure of the BAC-reconstituted virus, RhCMV-loxP(r), was identical to that of wild-type RhCMV except for the residual loxP site. The presence of the loxP sequence did not alter the expression profiles of neighboring open reading frames. In addition, RhCMV-loxP(r) replicated with wild-type kinetics both in tissue culture and seronegative immunocompetent macaques. Restriction analysis of the viral genome present within individual BAC clones and virions revealed that (i) RhCMV exhibits a simple genome structure and that (ii) there is a variable number of a 750-bp iterative sequence present at the S terminus.
机译:对巨细胞病毒(CMV)编码的许多功能的严格研究需要在病毒-宿主相互作用的背景下进行分析。为便于构建用于体内研究的恒河猴CMV(RhCMV)突变体,将含有增强的绿色荧光蛋白(EGFP)盒的细菌人工染色体(BAC)工程化到了独特的短1(US1)和US2之间的基因间区域。 Cre / lox介导的重组产生全长病毒基因组。从用pRhCMV / BAC-EGFP转染的恒河猴成纤维细胞中回收感染性病毒体。但是,重组后代感染的细胞的病毒峰值产量比野生型RhCMV低10倍,这表明9kb BAC序列的包含阻碍了病毒复制。因此,对pRhCMV / BAC-EGFP进行了进一步修饰,以使BAC载体在转染哺乳动物细胞后能从病毒基因组中有效切除。在细菌中进行等位基因交换以用cre重组酶基因替代egfp。用pRhCMV / BAC-Cre转染恒河猴成纤维细胞,导致纯净后代群体缺乏载体主链,无需进一步操作。除残留的loxP位点外,BAC重组病毒RhCMV-loxP(r)的基因组结构与野生型RhCMV相同。 loxP序列的存在不改变相邻开放阅读框的表达谱。另外,RhCMV-loxP(r)以野生型动力学在组织培养和具有血清阴性免疫能力的猕猴中复制。对单个BAC克隆和病毒粒子内存在的病毒基因组的限制性分析显示,(i)RhCMV表现出简单的基因组结构,并且(ii)在S末端存在可变数目的750 bp迭代序列。

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