School of Basic Medicine and Biological Sciences, Soochow University, Suzhou, 215123, Jiangsu, People's Republic of China.
Department of Preventive Medicine and Public Health Laboratory Science, School of Medicine, Jiangsu University, 301 Xuefu Road, Zhenjiang, 212013, Jiangsu, China.
Mol Biol Rep. 2022 Jul;49(7):6443-6452. doi: 10.1007/s11033-022-07458-2. Epub 2022 Apr 17.
Currently, to delete an essential gene from a baculovirus genome, a cell line stably expressing the gene to be knocked-out should be first generated, which is time-consuming. Alternatively, essential genes can be deleted in E. coli using the λ Red recombination system, which requires an electroporation system. Here, based on homologous recombination in insect cells, we develop an alternative efficient system that requires neither generation of a cell line nor an electroporation system.
Using puc19-based inverse PCR, a transfer vector for deleting BmNPV orf92 (Bm92, an essential gene) was efficiently constructed. A copy of Bm92 was introduced into the polyhedrin locus of BmNPV bacmid. The transfer vector was then co-transfected into BmN cell with the modified bacmid to enable homologous recombination at the Bm92 locus. An agarose-free approach was developed for the purification of Bm92-disrupted bacmid viruses in insect cells. Subsequently, BmN cells were co-infected with purified Bm92-disrupted bacmid viruses and unmodified bacmid viruses to allow recombination at the Tn7 insertion site between the two viruses. Finally, bacmid DNA extracted from BmN cells was transformed into chemically-treated competent DH10B cells, and blue colonies containing Bm92-disrupted bacmid were selected using PCR.
For its efficiency and convenience, the system has great potential to be used for the generation of baculovirus knockout mutants.
目前,要从杆状病毒基因组中删除必需基因,首先需要生成稳定表达待敲除基因的细胞系,这很耗时。或者,可以使用 λ Red 重组系统在大肠杆菌中删除必需基因,但这需要电穿孔系统。在这里,我们基于昆虫细胞中的同源重组,开发了一种替代的高效系统,既不需要生成细胞系,也不需要电穿孔系统。
使用基于 puc19 的反向 PCR,有效地构建了用于删除 BmNPV orf92(Bm92,必需基因)的转移载体。Bm92 的一个拷贝被引入 BmNPV 杆状病毒 bacmid 的多角体蛋白基因座。然后,将转移载体与修饰的 bacmid 共转染到 BmN 细胞中,以在 Bm92 基因座进行同源重组。开发了一种无琼脂糖的方法,用于在昆虫细胞中纯化 Bm92 缺失的 bacmid 病毒。随后,用纯化的 Bm92 缺失的 bacmid 病毒和未修饰的 bacmid 病毒共感染 BmN 细胞,以允许两个病毒之间的 Tn7 插入位点发生重组。最后,从 BmN 细胞中提取 bacmid DNA,转化到化学处理的感受态 DH10B 细胞中,并用 PCR 筛选含有 Bm92 缺失 bacmid 的蓝色菌落。
该系统效率高且操作方便,在杆状病毒敲除突变体的生成方面具有很大的应用潜力。