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.

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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