Fan Dinglin, Hu Congxia, Yang Xidan, Yang Xuetao, Chen Yanhua, Lin Jihui
School of Nursing, Southwest Medical University, Luzhou, Sichuan 646000, China.
School of Nursing, Southwest Medical University, Luzhou, Sichuan 646000, China; Key Laboratory of Systems Biomedicine (Ministry of Education), Shanghai Center for Systems Biomedicine, School of Biomedical Engineering, Shanghai Jiao Tong University, Shanghai 200240, China.
Virus Res. 2023 Jan 2;323:198961. doi: 10.1016/j.virusres.2022.198961. Epub 2022 Oct 6.
Reverse genetics system offers powerful tool for the research of RNA viruses. The infectious clones of classical swine fever virus (CSFV) were commonly constructed either in high- or low-copy number plasmids and transcribed to infectious RNA using phage RNA-polymerases. Herein, the full-length genome of CSFV Shimen strain, flanked by cytomegalovirus immediate-early (CMV) promoter (a eukaryotic RNA polymerase II promoter) sequence at the 5'-end and the hepatitis delta virus ribozyme along with the bovine growth hormone termination and polyadenylation signal sequences at the 3'-end, was packaged in bacterial artificial chromosome vector to establish a CSFV infectious clone pBAC-smCSFV. This infectious cDNA clone maintained stability after passaged 20 times in bacteria. Transfection of PK15 cells with this cDNA clone facilitated recovery of infectious progeny virus which was identical to parent virus as characterized by RT-qPCR, western blotting, indirect immunofluorescence assay, one-step growth kinetics analysis and nucleotide sequencing. Based on this CSFV infectious cDNA clone, the mCherry was inserted between viral N and C protein to develop reporter virus CSFV-mCherry. The mCherry was stably expressed after CSFV-mCherry was passaged 10 times in PK15 cells. Taken together, this present study develops a concise and efficient CSFV infectious cDNA clone and a reporter virus CSFV-mCherry. To the best of our knowledge, this is the first combination of CMV promoter and BAC system in construction of CSFV reverse genetics system. The CSFV infectious cDNA clone and the reporter virus will be useful in the study of CSFV virus biology, virulence determinants, molecular pathogenesis, vaccine development and virus-host interaction.
反向遗传学系统为RNA病毒的研究提供了强大的工具。经典猪瘟病毒(CSFV)的感染性克隆通常构建于高拷贝或低拷贝质粒中,并使用噬菌体RNA聚合酶转录为感染性RNA。在此,CSFV石门株的全长基因组,5'端侧翼为巨细胞病毒立即早期(CMV)启动子(一种真核RNA聚合酶II启动子)序列,3'端侧翼为丁型肝炎病毒核酶以及牛生长激素终止和聚腺苷酸化信号序列,被包装在细菌人工染色体载体中,以建立CSFV感染性克隆pBAC-smCSFV。该感染性cDNA克隆在细菌中传代20次后仍保持稳定性。用该cDNA克隆转染PK15细胞有助于恢复感染性子代病毒,通过RT-qPCR、western印迹、间接免疫荧光试验、一步生长动力学分析和核苷酸测序鉴定,该子代病毒与亲本病毒相同。基于此CSFV感染性cDNA克隆,将mCherry插入病毒N蛋白和C蛋白之间,构建了报告病毒CSFV-mCherry。CSFV-mCherry在PK15细胞中传代10次后,mCherry稳定表达。综上所述,本研究构建了一种简洁高效的CSFV感染性cDNA克隆和报告病毒CSFV-mCherry。据我们所知,这是首次将CMV启动子和BAC系统结合用于构建CSFV反向遗传学系统。该CSFV感染性cDNA克隆和报告病毒将有助于CSFV病毒生物学、毒力决定因素、分子发病机制、疫苗开发及病毒-宿主相互作用的研究。