首页> 外文期刊>Journal of Virological Methods >Cloning the complete guinea pig cytomegalovirus genome as an infectious bacterial artificial chromosome with excisable origin of replication.
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Cloning the complete guinea pig cytomegalovirus genome as an infectious bacterial artificial chromosome with excisable origin of replication.

机译:将完整的豚鼠巨细胞病毒基因组克隆为具有可复制复制起点的传染性细菌人工染色体。

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Congenital human cytomegalovirus infections are the major infectious cause of birth defects in the United States. How this virus crosses the placenta and causes fetal disease is poorly understood. Guinea pig cytomegalovirus (GPCMV) is a related virus that provides an important model for studying cytomegaloviral congenital transmission and pathogenesis. In order to facilitate genetic analysis of GPCMV, the 232kb GPCMV genome was cloned as an infectious bacterial artificial chromosome (BAC). The BAC vector sequences were flanked by LoxP sites to allow efficient excision using Cre recombinase. All initial clones contained spontaneous deletions of viral sequences and reconstituted mutant viruses with impaired growth kinetics in vitro. The deletions in one BAC were repaired using Escherichia coli genetics. The resulting repaired BAC reconstituted a virus with in vitro replication kinetics identical to the wild type parental virus; moreover, its genome was indistinguishable from that of the wild type parental virus by restriction pattern analysis using multiple restriction enzymes. These results suggest that the repaired BAC is an authentic representation of the complete GPCMV genome. It should provide a valuable tool for evaluating the impact of genetic modifications on the safety and efficacy of live attenuated vaccines and for identifying genes important for congenital transmission and fetal disease.
机译:在美国,先天性人类巨细胞病毒感染是出生缺陷的主要传染原因。人们对这种病毒如何穿过胎盘并引起胎儿疾病的了解很少。豚鼠巨细胞病毒(GPCMV)是一种相关病毒,为研究巨细胞病毒性先天性传播和发病机理提供了重要模型。为了促进GPCMV的遗传分析,将232kb GPCMV基因组克隆为传染性细菌人工染色体(BAC)。 BAC载体序列的两侧为LoxP位点,以允许使用Cre重组酶高效切除。所有初始克隆均包含病毒序列的自发缺失和重组的突变病毒,体外生长动力学受损。使用大肠杆菌遗传学修复了一个BAC中的缺失。所得修复的BAC重组了一种病毒,其体外复制动力学与野生型亲本病毒相同。此外,通过使用多种限制酶的限制模式分析,其基因组与野生型亲本病毒的基因组没有区别。这些结果表明,修复的BAC是完整GPCMV基因组的真实代表。它应该为评估遗传修饰对减毒活疫苗的安全性和有效性的影响以及鉴定对先天性传播和胎儿疾病重要的基因提供有价值的工具。

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