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Updated: Jul 14, 2026

Generation and Assembly of Virus-Specific Nucleocapsids of the Respiratory Syncytial Virus
Published on: July 27, 2021
Generation of menangle virus nucleocapsid-like particles in yeast Saccharomyces cerevisiae
Mindaugas Juozapaitis1, Andrius Serva, Indre Kucinskaite
1Institute of Biotechnology, V. Graiciuno 8, Vilnius LT-02241, Lithuania.
Abstract:
Menangle virus (MenV), which was isolated in Australia in 1997 during an outbreak of severe reproductive disease in pigs, is a novel member of the genus Rubulavirus in the family Paramyxoviridae. Although successfully eradicated from the affected piggery, fruit bats are considered to be the natural reservoir of the virus and therefore an ongoing risk of re-introduction to the pig population exists. Accordingly, reagents to facilitate serological surveillance are required to enhance the diagnostic capability for MenV, which is a newly recognized cause of disease in pigs with the potential to severely affect production in naive breeding herds. To address this need, recombinant MenV nucleocapsid (N) protein was expressed in the yeast Saccharomyces cerevisiae. Using the expression vector pFGG3 under control of the GAL7 promoter, high yields of recombinant MenV N protein were obtained. Electron microscopy demonstrated that purified recombinant N protein self-assembled into nucleocapsid-like particles which were identical in density and morphology, although not in length, to authentic nucleocapsids from virus-infected cells. Electron microscopy analysis also showed that yeast-expressed N protein which lacked the C-terminal tail (amino acid residues 400-519) formed significantly longer and denser nucleocapsid-like particles. Nucleocapsid-like particles derived from the full-length recombinant protein were stable and readily purified by CsCl gradient ultracentrifugation. When used as coating antigen in an indirect ELISA, the recombinant N protein reacted with sera derived from pigs experimentally infected with MenV and a simple serological assay to detect MenV-specific antibodies in pigs, fruit bats and humans could be designed on this basis.
Insights
Menangle virus (MenV) nucleocapsid protein was produced in yeast for diagnostic development. This recombinant protein enables serological surveillance for MenV in pigs, fruit bats, and humans.
Area of Science:
- Veterinary Virology
- Molecular Biology
- Immunology
Background:
- Menangle virus (MenV), a Rubulavirus, caused a severe pig reproductive disease outbreak in Australia.
- Fruit bats are the natural reservoir, posing an ongoing risk for MenV re-introduction into pig populations.
- Effective serological surveillance is crucial for MenV diagnosis and disease management in susceptible herds.
Purpose of the Study:
- To develop reagents for MenV serological surveillance by expressing recombinant MenV nucleocapsid (N) protein.
- To characterize the self-assembly properties of the recombinant N protein.
- To evaluate the potential of the recombinant N protein in developing a diagnostic assay.
Main Methods:
- Recombinant MenV N protein was expressed in Saccharomyces cerevisiae using the pFGG3 vector.
- Electron microscopy was used to analyze the morphology and self-assembly of nucleocapsid-like particles.
- Purified nucleocapsid-like particles were tested as coating antigen in an indirect ELISA.
Main Results:
- High yields of full-length recombinant MenV N protein were obtained.
- The recombinant N protein self-assembled into nucleocapsid-like particles similar in density and morphology to authentic nucleocapsids.
- Nucleocapsid-like particles formed by full-length N protein were stable and suitable for ELISA.
Conclusions:
- Recombinant MenV N protein expressed in yeast is a viable candidate for developing serological assays.
- A simple indirect ELISA using recombinant N protein can detect MenV-specific antibodies in pigs, fruit bats, and humans.
- This facilitates enhanced diagnostic capability for MenV surveillance and control.
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