Lv Ke, Guo Yingjun, Zhang Yiliang, Wang Kaiyu, Li Ka, Zhu Yan, Sun Shuhan
Department of Medical Genetics, Second Military Medical University, 800 XiangYin Road, Shanghai 200433, PR China.
Res Vet Sci. 2009 Jun;86(3):443-52. doi: 10.1016/j.rvsc.2008.10.011. Epub 2008 Dec 4.
Foot-and-mouth disease virus (FMDV) is the causative agent of foot-and-mouth disease, a severe, clinically acute, vesicular disease of cloven-hoofed animals. RNA interference (RNAi) is a mechanism for silencing gene expression post-transcriptionally that is being exploited as a rapid antiviral strategy. To identify efficacious small interfering RNAs (siRNAs) to inhibit the replication of FMDV, candidate siRNAs corresponding to FMDV VP1 gene were designed and synthesized in vitro using T7 RNA polymerase. In reporter assays, five siRNAs showed significant sequence-specific silencing effects on the expression of VP1-EGFP fusion protein from plasmid pVP1-EGFP-N1, which was cotransfected with siRNA into 293T cells. Furthermore, using RT-qPCR, viral titration and viability assay, we identified VP1-siRNA517, VP1-siRNA113 and VP1-siRNA519 that transiently acted as potent inhibitors of FMDV replication when BHK-21 cells were infected with FMDV. In addition, variations within multiple regions of the quasispecies of FMDV were retrospectively revealed by sequencing of FMDV genes, and a single nucleotide substitution was identified as the main factor in resistance to RNAi. Our data demonstrated that the three siRNA molecules synthesized with T7 RNA polymerase could have transient inhibitory effects on the replication of FMDV.
口蹄疫病毒(FMDV)是口蹄疫的病原体,口蹄疫是一种严重的、临床急性的、偶蹄动物的水疱性疾病。RNA干扰(RNAi)是一种转录后沉默基因表达的机制,正被用作一种快速的抗病毒策略。为了鉴定抑制FMDV复制的有效小干扰RNA(siRNA),设计并使用T7 RNA聚合酶在体外合成了与FMDV VP1基因对应的候选siRNA。在报告基因检测中,5种siRNA对质粒pVP1-EGFP-N1中VP1-EGFP融合蛋白的表达显示出显著的序列特异性沉默效应,该质粒与siRNA共转染到293T细胞中。此外,通过RT-qPCR、病毒滴定和活力测定,我们鉴定出当BHK-21细胞感染FMDV时,VP1-siRNA517、VP1-siRNA113和VP1-siRNA519可作为FMDV复制的有效瞬时抑制剂。此外,通过对FMDV基因进行测序,回顾性地揭示了FMDV准种多个区域内的变异,并确定单个核苷酸取代是对RNAi产生抗性的主要因素。我们的数据表明,用T7 RNA聚合酶合成的三种siRNA分子可对FMDV的复制产生瞬时抑制作用。