Generation of a DNA-launched classical swine fever virus infectious clone packaged in bacterial artificial chromosome

•The CMV promoter launched CSFV Shimen strain infectious cDNA was assembled in a bacterial artificial chromosome.•The progeny viruses were rescued efficiently and was identical to the wild type parent virus.•A recombinant virus CSFV-mCherry expressing the mCherry reporter gene was established.•The C...

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Veröffentlicht in:Virus research 2023-01, Vol.323, p.198961-198961, Article 198961
Hauptverfasser: Fan, Dinglin, Hu, Congxia, Yang, Xidan, Yang, Xuetao, Chen, Yanhua, Lin, Jihui
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Sprache:eng
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Zusammenfassung:•The CMV promoter launched CSFV Shimen strain infectious cDNA was assembled in a bacterial artificial chromosome.•The progeny viruses were rescued efficiently and was identical to the wild type parent virus.•A recombinant virus CSFV-mCherry expressing the mCherry reporter gene was established.•The CSFV-mCherry reporter virus possessed high stability. 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 Npro 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.
ISSN:0168-1702
1872-7492
DOI:10.1016/j.virusres.2022.198961