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Porcine reproductive and respiratory syndrome virus as a vector: immunogenicity of green fluorescent protein and porcine circovirus type 2 capsid expressed from dedicated subgenomic RNAs.

机译:猪繁殖与呼吸综合征病毒作为载体:从专用的亚基因组RNA表达的绿色荧光蛋白和2型猪圆环病毒衣壳的免疫原性。

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Porcine reproductive and respiratory syndrome virus (PRRSV) is the causative agent of PRRS, which is characterized by late-term abortions in sows and respiratory disease in young pigs. Using an infectious cDNA clone of North American PRRSV strain P129, the viral genome was engineered to transcribe an additional subgenomic RNA initiating between non-structural and structural genes. Two unique restriction sites and a copy of the transcription regulatory sequence for ORF6 (TRS6) were inserted between ORFs 1b and 2a, yielding a general purpose expression vector. The enhanced green fluorescent protein (GFP) gene was cloned between the unique sites such that the inserted gene was transcribed from TRS2 which was located upstream within ORF1b, while the copy of TRS6 drives ORF2a/b transcription. Upon transfection of cells with this plasmid, PRRSV infection was initiated and progeny virus "P129-GFP" was obtained. Cells infected with P129-GFP showed fluorescence and the inserted gene was phenotypically stable for at least 37 serial in vitro passages. Subsequently, a capsid (C) protein gene was cloned from porcine circovirus type 2 (PCV2) recovered from an outbreak of porcine multisystemic wasting syndrome (PMWS) and inserted into the PRRSV infectious clone vector, generating virus "P129-PCV". To determine the immunogenicity of the recombinant viruses, pigs were immunized intramuscularly with P129-WT (wild-type), P129-GFP, or P129-PCV2. By 5 weeks post-infection, specific antibody responses to GFP and PCV2 capsid were elicited. This is the first report of foreign gene expression using PRRSV from dedicated subgenomic RNAs and demonstrates the potential use of PRRSV as a vaccine vector for swine pathogens.
机译:猪繁殖与呼吸综合症病毒(PRRSV)是PRRS的病原体,其特征是母猪后期流产和小猪呼吸系统疾病。使用北美PRRSV株P129的感染性cDNA克隆,对病毒基因组进行了工程改造,以转录起始于非结构基因和结构基因之间的其他亚基因组RNA。在ORF 1b和2a之间插入两个唯一的限制性酶切位点和一个ORF6转录调节序列的副本(TRS6),从而产生了通用表达载体。增强的绿色荧光蛋白(GFP)基因被克隆到独特的位点之间,从而插入的基因从位于ORF1b上游的TRS2转录,而TRS6的拷贝驱动ORF2a / b转录。用该质粒转染细胞后,开始PRRSV感染并获得子代病毒“ P129-GFP”。用P129-GFP感染的细胞显示荧光,并且插入的基因在至少37个连续的体外传代中具有表型稳定性。随后,从猪多系统衰竭综合症(PMWS)爆发中回收的2型猪圆环病毒(PCV2)中克隆了衣壳(C)蛋白基因,并将其插入PRRSV传染性克隆载体中,从而产生了病毒“ P129-PCV”。为了确定重组病毒的免疫原性,用P129-WT(野生型),P129-GFP或P129-PCV2肌肉内免疫猪。感染后5周,引起对GFP和PCV2衣壳的特异性抗体应答。这是首次使用专用亚基因组RNA的PRRSV进行外源基因表达的报道,证明了PRRSV作为猪病原体疫苗载体的潜在用途。

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