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通过在负链基因组RNA上进行内部起始反应实现兔出血病病毒亚基因组RNA的体外合成:亚基因组启动子的定位

Synthesis in vitro of rabbit hemorrhagic disease virus subgenomic RNA by internal initiation on (-)sense genomic RNA: mapping of a subgenomic promoter.

作者信息

Morales Mónica, Bárcena Juan, Ramírez Miguel A, Boga José A, Parra Francisco, Torres Juan M

机构信息

Centro de Investigación en Sanidad Animal (CISA-INIA), Valdeolmos, 28130 Madrid, Spain.

出版信息

J Biol Chem. 2004 Apr 23;279(17):17013-8. doi: 10.1074/jbc.M313674200. Epub 2004 Jan 26.

Abstract

Rabbit hemorrhagic disease virus (RHDV), a positive-strand RNA virus, is the type species of the Lagovirus within the Caliciviridae. In addition to the genomic RNA of 7.4 kb, a subgenomic mRNA (sgRNA) of 2.2 kb, which is identical in sequence to the 3' one-third of the genomic RNA, is also synthesized in RHDV-infected cells. Numerous RNA viruses make sgRNA for expression of their 3'-proximal genes. A relevant mechanism for viral gene expression is the regulation of sgRNA synthesis by specific promoter elements. In this study, we have investigated in vitro the sgRNA synthesis mechanism using recombinant RHDV RNA-dependent RNA polymerase produced in baculovirus-infected insect cells and synthetic RHDV (-)RNAs of different lengths containing regions located upstream of the subgenomic start site. We report evidences supporting that the sgRNA of RHDV is synthesized in vitro by internal initiation (subgenomic promoter) on (-)RNA templates of genomic length. The deletion mapping of the subgenomic promoter starting from minus-strand genomic length RNA showed that a sequence of 50 nucleotides upstream of the sgRNA start site (+1) is sufficient for full subgenomic promoter activity in an in vitro assay using recombinant RHDV RNA-dependent RNA polymerase. This study reports the first description of a subgenomic promoter in a member of the Caliciviridae.

摘要

兔出血症病毒(RHDV)是一种正链RNA病毒,属于杯状病毒科兔病毒属的模式种。除了7.4 kb的基因组RNA外,RHDV感染的细胞中还会合成一种2.2 kb的亚基因组mRNA(sgRNA),其序列与基因组RNA的3'端三分之一相同。许多RNA病毒会产生sgRNA来表达其3'近端基因。病毒基因表达的一个相关机制是通过特定启动子元件调控sgRNA的合成。在本研究中,我们利用杆状病毒感染的昆虫细胞中产生的重组RHDV RNA依赖性RNA聚合酶和含有亚基因组起始位点上游区域的不同长度的合成RHDV(-)RNA,在体外研究了sgRNA的合成机制。我们报告的证据支持RHDV的sgRNA是在体外通过基因组长度(-)RNA模板上的内部起始(亚基因组启动子)合成的。从负链基因组长度RNA开始对亚基因组启动子进行缺失定位表明,在使用重组RHDV RNA依赖性RNA聚合酶的体外试验中,sgRNA起始位点(+1)上游50个核苷酸的序列足以实现完整的亚基因组启动子活性。本研究首次报道了杯状病毒科成员中亚基因组启动子的情况。

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