Efficient Reverse Genetics Generation of Infectious Junin Viruses Differing in Glycoprotein Processing
- 1 June 2009
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 83 (11) , 5606-5614
- https://doi.org/10.1128/jvi.00276-09
Abstract
The New World arenaviruses, Junin, Machupo, Guanarito, Sabia, and Chapare, are associated with rapidly progressing severe hemorrhagic fever with a high rate of case fatality in various regions of South America. The threat of natural or deliberate outbreaks associated with these viruses makes the development of preventive or therapeutic measures important. Here we describe a Junin virus functional minigenome system and a reverse genetics system for production of infectious Junin virus. This robust, highly efficient system involves transfection of cells with only two plasmids which transcribe the virus S and L antigenomic RNAs. The utility of the system is demonstrated by generating Junin viruses which encode a glycoprotein precursor (GPC) containing the following: (i) the wild-type (SKI-1/S1P peptidase) cleavage site, (ii) no cleavage site, or (iii) a cleavage site where the SKI-1/S1P motif (RSLK) is replaced by a furin cleavage site (RRKR). In contrast to the wild-type virus, Junin virus lacking a GPC cleavage site replicated within successfully transfected cells but failed to yield infectious virus particles. This confirms observations with other arenaviruses suggesting that GPC cleavage is essential for arenavirus infectivity. In contrast, infectious Junin virus which encoded GPC cleaved by furin-like proteases was easily generated. The two-plasmid, high efficiency aspects of this Junin virus reverse genetics system show great promise for addressing important questions regarding arenavirus hemorrhagic fever disease and for development of precisely attenuated live arenavirus vaccines.Keywords
This publication has 44 references indexed in Scilit:
- Vesicular stomatitis virus-based vaccines protect nonhuman primates against aerosol challenge with Ebola and Marburg virusesVaccine, 2008
- Reverse genetics approaches to combat pathogenic arenavirusesAntiviral Research, 2008
- Site 1 Protease Is Required for Proteolytic Processing of the Glycoproteins of the South American Hemorrhagic Fever Viruses Junin, Machupo, and GuanaritoJournal of Virology, 2008
- Crimean-Congo Hemorrhagic Fever Virus Glycoprotein Processing by the Endoprotease SKI-1/S1P Is Critical for Virus InfectivityJournal of Virology, 2007
- Broad-Spectrum Antiviral Activity of Small Interfering RNA Targeting the Conserved RNA Termini of Lassa VirusAntimicrobial Agents and Chemotherapy, 2007
- A Shared Transcription Termination Signal on Negative and Ambisense RNA Genome Segments of Rift Valley Fever, Sandfly Fever Sicilian, and Toscana VirusesJournal of Virology, 2007
- Envelope Exchange for the Generation of Live-Attenuated Arenavirus VaccinesPLoS Pathogens, 2006
- Replicon System for Lassa VirusJournal of Virology, 2004
- Furin at the cutting edge: From protein traffic to embryogenesis and diseaseNature Reviews Molecular Cell Biology, 2002
- Rearrangement of the Genes of Vesicular Stomatitis Virus Eliminates Clinical Disease in the Natural Host: New Strategy for Vaccine DevelopmentJournal of Virology, 2001