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Replication-competent recombinant porcine reproductive and respiratory syndrome (PRRS) viruses expressing indicator proteins and antiviral cytokines

机译:具有复制能力的重组猪繁殖与呼吸综合征(PRRS)病毒,可表达指示蛋白和抗病毒细胞因子

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摘要

Porcine reproductive and respiratory syndrome virus (PRRSV) can subvert early innate immunity, which leads to ineffective antimicrobial responses. Overcoming immune subversion is critical for developing vaccines and other measures to control this devastating swine virus. The overall goal of this work was to enhance innate and adaptive immunity following vaccination through the expression of interferon (IFN) genes by the PRRSV genome. We have constructed a series of recombinant PRRS viruses using an infectious PRRSV cDNA clone (pCMV-P129). Coding regions of exogenous genes, which included Renilla luciferase (Rluc), green and red fluorescent proteins (GFP and DsRed, respectively) and several interferons (IFNs), were constructed and expressed through a unique subgenomic mRNA placed between ORF1b and ORF2 of the PRRSV infectious clone. The constructs, which expressed Rluc, GFP, DsRed, efficiently produced progeny viruses and mimicked the parental virus in both MARC-145 cells and porcine macrophages. In contrast, replication of IFN-expressing viruses was attenuated, similar to the level of replication observed after the addition of exogenous IFN. Furthermore, the IFN expressing viruses inhibited the replication of a second PRRS virus co-transfected or co-infected. Inhibition by the different IFN subtypes corresponded to their anti-PRRSV activity, i.e., IFNω5 » IFNα1 > IFN-β > IFNδ3. In summary, the indicator-expressing viruses provided an efficient means for real-time monitoring of viral replication thus allowing high‑throughput elucidation of the role of host factors in PRRSV infection. This was shown when they were used to clearly demonstrate the involvement of tumor susceptibility gene 101 (TSG101) in the early stage of PRRSV infection. In addition, replication‑competent IFN-expressing viruses may be good candidates for development of modified live virus (MLV) vaccines, which are capable of reversing subverted innate immune responses and may induce more effective adaptive immunity against PRRSV infection.
机译:猪繁殖与呼吸综合征病毒(PRRSV)可以破坏早期的先天免疫,从而导致无效的抗菌反应。克服免疫颠覆对于开发疫苗和控制这种毁灭性猪病毒的其他措施至关重要。这项工作的总体目标是通过PRRSV基因组表达干扰素(IFN)基因来增强疫苗接种后的先天性和适应性免疫。我们使用感染性PRRSV cDNA克隆(pCMV-P129)构建了一系列重组PRRS病毒。构建并通过位于PRRSV ORF1b和ORF2之间的独特亚基因组mRNA表达外源基因的编码区,其中包括海肾荧光素酶(Rluc),绿色和红色荧光蛋白(分别为GFP和DsRed)和几种干扰素(IFN)。传染性克隆。表达Rluc,GFP,DsRed的构建体在MARC-145细胞和猪巨噬细胞中均有效地产生了子代病毒并模仿了亲代病毒。相反,表达IFN的病毒的复制被减弱,类似于添加外源IFN后观察到的复制水平。此外,表达IFN的病毒抑制了共转染或共感染的第二种PRRS病毒的复制。不同IFN亚型的抑制作用与其抗PRRSV活性相对应,即IFNω5»IFNα1>IFN-β>IFNδ3。总之,表达指示剂的病毒为实时监测病毒复制提供了一种有效手段,因此可以高通量阐明宿主因素在PRRSV感染中的作用。当它们被用来清楚地证明PRRSV感染的早期阶段涉及肿瘤易感基因101(TSG101)时,就表明了这一点。此外,具有复制能力的表达IFN的病毒可能是开发改良活病毒(MLV)疫苗的良好候选者,这种疫苗能够逆转颠覆的先天免疫应答,并且可以诱导更有效的针对PRRSV感染的适应性免疫。

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