Department of Pathobiology, College of Veterinary Medicine, University of Illinois at Champaign-Urbana, 61802, USA.
BMC Vet Res. 2011 Dec 22;7:80. doi: 10.1186/1746-6148-7-80.
Reporter genes are often used as a selectable marker for generation of recombinant viruses in order to investigate the mechanism of pathogenesis and to obtain candidate vaccine viruses. Routine selection of the recombinant parapoxvirus is time-consuming and labor intensive. Therefore, developing a novel method for selection is critical.
In this study, we developed a rapid method to generate recombinant Orf viruses (ORFV) based on the enhanced green fluorescent protein (EGFP) reporter gene as a selectable marker. The coding sequence of EGFP gene was amplified from pEGFP-N1 vector and subcloned into the pZIPPY-neo/gus plasmid under the control of the early-late vaccinia virus (VACV) VV7.5 promoter and flanked by two multiple cloning sites (MCS) to generate a novel transfer vector pSPV-EGFP. Using the pSPV-EGFP, two recombination cassettes pSPV-113LF-EGFP-113RF and pSPV-116LF-EGFP-116RF were constructed by cloning the flanking regions of the ORFV113 and ORFV116 and inserted into two MCS flanking the EGFP gene. Using this novel system, two single gene deletion mutants OV-IA82Δ113 and OV-IA82Δ116 were successfully generated.
This approach shortens the time needed to generate recombinant ORFVs (rORFVs). Thus, the pSPV-EGFP vector provides a direct, fast, and convenient way to manipulate the recombinant viruses, indicating that it is highly suited for its designed purpose.
报告基因常被用作重组病毒产生的选择标记,以研究发病机制并获得候选疫苗病毒。常规选择重组副痘病毒既耗时又费力。因此,开发一种新的选择方法至关重要。
本研究基于增强型绿色荧光蛋白(EGFP)报告基因作为选择标记,开发了一种快速生成重组口疮病毒(ORFV)的方法。从 pEGFP-N1 载体扩增 EGFP 基因编码序列,并将其亚克隆到 pZIPPY-neo/gus 质粒中,由牛痘病毒(VACV)VV7.5 启动子控制,两侧为两个多克隆位点(MCS),生成新型转移载体 pSPV-EGFP。使用 pSPV-EGFP,通过克隆 ORFV113 和 ORFV116 的侧翼区构建了两个重组盒 pSPV-113LF-EGFP-113RF 和 pSPV-116LF-EGFP-116RF,并插入到 EGFP 基因两侧的两个 MCS 中。利用该新型系统,成功生成了两个单基因缺失突变体 OV-IA82Δ113 和 OV-IA82Δ116。
该方法缩短了生成重组 ORFV(rORFV)所需的时间。因此,pSPV-EGFP 载体为重组病毒的操作提供了一种直接、快速和方便的方法,表明其非常适合其设计目的。