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Down-regulation of viral replication by lentiviral-mediated expression of short-hairpin RNAs against vesicular stomatitis virus ribonuclear complex genes

机译:慢病毒介导的针对水疱性口炎病毒核糖核酸复合基因的短发夹RNA的表达下调病毒复制

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Vesicular stomatitis virus (VSV) causes great economic impact to livestock industry and is a prototype for studying non-segmented negative-stranded RNA (NSNR) viruses. In this study, we evaluated the antiviral potential of unique short-hairpin RNA (shRNA) targeting genes that form the ribonuclear protein (RNP) complex of VSV serotype Indiana (VSIV). We used lentiviral vectors to construct cell lines that stably expressed one of seven shRNAs targeting the RNP genes of VSIV, namely nucleocapsid (N), phosphoprotein (P), or polymerase (L). We reported two N-shRNA sequences targeting the 5' or 3' end of N that significantly reduced N, P, and L viral transcripts (p<0.001), reduced viral protein expression, and reduced the viral particles shed in Vero cells (p<0.01). When we analyzed the sequence diversity in the target region of this N-shRNA from two field isolates, we detected a single base substitution outside the seed region. We also reported five other shRNA sequences targeting components of the viral RNA that significantly reduce N, P, and L viral transcripts (p<0.001) but failed to efficiently impair viral replication. The differences in the efficiency of the shRNAs tested were not due to mismatches within the target region in the genome of VSIV. Although partial silencing of viral transcripts by single shRNAs impaired but did not block VSIV replication, the combination of the shRNAs identified here into a multiple shRNA vector may result in inhibition of viral replication. These data contribute to ongoing development of RNAi-based technologies to combat viral diseases.
机译:水泡性口炎病毒(VSV)对畜牧业产生巨大的经济影响,是研究非分段负链RNA(NSNR)病毒的原型。在这项研究中,我们评估了独特的短发夹RNA(shRNA)靶向基因的抗病毒潜力,这些基因形成了VSV血清型印第安那州(VSIV)的核糖蛋白(RNP)复合体。我们使用慢病毒载体构建了稳定表达靶向VSIV RNP基因的七个shRNA之一的细胞系,即核衣壳(N),磷蛋白(P)或聚合酶(L)。我们报道了两个靶向N的5'或3'端的N-shRNA序列,这些序列显着降低了N,P和L病毒的转录本(p <0.001),降低了病毒蛋白的表达,并减少了Vero细胞中脱落的病毒颗粒(p <0.01)。当我们分析来自两个田间分离株的该N-shRNA靶区域的序列多样性时,我们在种子区域之外检测到单个碱基取代。我们还报告了靶向病毒RNA组分的其他五种shRNA序列,这些序列显着降低N,P和L病毒转录本(p <0.001),但未能有效损害病毒复制。测试的shRNA效率的差异不是由于VSIV基因组目标区域内的错配。尽管单个shRNA对病毒转录物的部分沉默会受损,但不会阻止VSIV复制,但此处鉴定的shRNA与多个shRNA载体的组合可能会导致病毒复制受到抑制。这些数据有助于不断发展基于RNAi的技术来对抗病毒性疾病。

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