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首页> 外文期刊>Archives of Virology >Generation of recombinant European bat lyssavirus type 1 and inter-genotypic compatibility of lyssavirus genotype 1 and 5 antigenome promoters
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Generation of recombinant European bat lyssavirus type 1 and inter-genotypic compatibility of lyssavirus genotype 1 and 5 antigenome promoters

机译:重组欧洲蝙蝠狂犬病病毒1型的产生以及狂犬病病毒基因型1和5反基因组启动子的基因型间兼容性

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Bat lyssaviruses (Fam. Rhabdoviridae) represent a source for the infection of terrestial mammals and the development of rabies disease. Molecular differences in the replication of bat and non-bat lyssaviruses and their contribution to pathogenicity, however, are unknown. One reason for this is the lack of reverse genetics systems for bat-restricted lyssaviruses. To investigate bat lyssavirus replication and host adaptation, we developed a reverse genetics system for European bat lyssavirus type 1 (EBLV-1; genotype 5). This was achieved by co-transfection of HEK-293T cells with a full-length EBLV-1 genome cDNA and expression plasmids for EBLV-1 proteins, resulting in recombinant EBLV-1 (rEBLV-1). Replication of rEBLV-1 was comparable to that of parental virus, showing that rEBLV-1 is a valid tool to investigate EBLV-1 replication functions. In a first approach, we tested whether the terminal promoter sequences of EBLV-1 are genotype-specific. Although genotype 1 (rabies virus) minigenomes were successfully amplified by EBLV-1 helper virus, in the context of the complete virus, only the antigenome promoter (AGP) sequence of EBLV-1 was replaceable, as indicated by comparable replication of rEBLV-1 and the chimeric virus. These analyses demonstrate that the terminal AGPs of genotype 1 and genotype 5 lyssaviruses are compatible with those of the heterologous genotype.
机译:蝙蝠狂犬病病毒(Fam。Rhabdoviridae)代表着陆地哺乳动物的感染和狂犬病的发展。然而,蝙蝠和非蝙蝠狂犬病病毒复制过程中的分子差异及其对致病性的影响尚不清楚。原因之一是蝙蝠限制性狂犬病病毒缺乏反向遗传学系统。为了研究蝙蝠狂犬病病毒的复制和宿主适应性,我们为欧洲1型蝙蝠狂犬病病毒(EBLV-1;基因型5)开发了反向遗传学系统。这是通过将HEK-293T细胞与全长EBLV-1基因组cDNA和EBLV-1蛋白的表达质粒共转染而实现的,从而产生了重组EBLV-1(rEBLV-1)。 rEBLV-1的复制与亲本病毒的复制相当,这表明rEBLV-1是研究EBLV-1复制功能的有效工具。在第一种方法中,我们测试了EBLV-1的末端启动子序列是否是基因型特异性的。尽管EBLV-1辅助病毒已成功扩增了基因型1(狂犬病病毒)微型基因组,但在完整病毒的情况下,只有EBLV-1的反基因组启动子(AGP)序列是可替换的,如rEBLV-1的可比复制所表明的那样。和嵌合病毒。这些分析表明,基因型1和基因型5狂犬病病毒的末端AGP与异源基因型的AGP相容。

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