首页> 美国卫生研究院文献>Journal of Virology >Three of the Four Nucleocapsid Proteins of Marburg Virus NP VP35 and L Are Sufficient To Mediate Replication and Transcription of Marburg Virus-Specific Monocistronic Minigenomes
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Three of the Four Nucleocapsid Proteins of Marburg Virus NP VP35 and L Are Sufficient To Mediate Replication and Transcription of Marburg Virus-Specific Monocistronic Minigenomes

机译:马尔堡病毒的四种核衣壳蛋白中的三种NPVP35和L足以介导马尔堡病毒特异的单顺反子微型基因组的复制和转录。

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摘要

This paper describes the first reconstituted replication system established for a member of the Filoviridae, Marburg virus (MBGV). MBGV minigenomes containing the leader and trailer regions of the MBGV genome and the chloramphenicol acetyltransferase (CAT) gene were constructed. In MBGV-infected cells, these minigenomes were replicated and encapsidated and could be passaged. Unlike most other members of the order Mononegavirales, filoviruses possess four proteins presumed to be components of the nucleocapsid (NP, VP35, VP30, and L). To determine the protein requirements for replication and transcription, a reverse genetic system was established for MBGV based on the vaccinia virus T7 expression system. Northern blot analysis of viral RNA revealed that three nucleocapsid proteins (NP, VP35, and L) were essential and sufficient for transcription as well as replication and encapsidation. These data indicate that VP35, rather than VP30, is the functional homologue of rhabdo- and paramyxovirus P proteins. The reconstituted replication system was profoundly affected by the NP-to-VP35 expression ratio. To investigate whether CAT gene expression was achieved entirely by mRNA or in part by full-length plus-strand minigenomes, a copy-back minireplicon containing the CAT gene but lacking MBGV-specific transcriptional start sites was employed in the artificial replication system. This construct was replicated without accompanying CAT activity. It was concluded that the CAT activity reflected MBGV-specific transcription and not replication.
机译:本文介绍了为Filoviridae马尔堡病毒(MBGV)成员建立的第一个重组复制系统。构建了包含MBGV基因组的前导区和尾区以及氯霉素乙酰转移酶(CAT)基因的MBGV微型基因组。在感染MBGV的细胞中,这些微型基因组被复制并被衣壳化并且可以传代。与单核病毒的大多数其他成员不同,丝状病毒拥有四种蛋白质,推测是核衣壳的组成部分(NP,VP35,VP30和L)。为了确定复制和转录所需的蛋白质,基于牛痘病毒T7表达系统为MBGV建立了反向遗传系统。病毒RNA的RNA印迹分析表明,三种核衣壳蛋白(NP,VP35和L)对于转录以及复制和衣壳化都是必不可少的。这些数据表明,VP35而不是VP30是弹状病毒和副粘病毒P蛋白的功能同源物。重组的复制系统受到NP与VP35表达比率的深刻影响。为了研究CAT基因表达是完全通过mRNA还是部分通过全长正链微型基因组实现,在人工复制系统中采用了包含CAT基因但缺少MBGV特异性转录起始位点的回写型微型复制子。复制该构建体而没有伴随的CAT活性。结论是,CAT活性反映了MBGV特异性转录而不是复制。

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