Duck hepatitis A virus structural proteins expressed in insect cells self-assemble into virus-like particles with strong immunogenicity in ducklings

•The three structural proteins of DHAV-1 can be expressed simultaneously in the rBac-infected insect cells.•The recombinant viral structural proteins expressed in insect cells could spontaneously self-assemble into virus-like particles.•The VLPs can induce significant humoral immune response and pro...

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Veröffentlicht in:Veterinary microbiology 2018-02, Vol.215, p.23-28
Hauptverfasser: Wang, Anping, Gu, Lingling, Wu, Shuang, Zhu, Shanyuan
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Sprache:eng
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Zusammenfassung:•The three structural proteins of DHAV-1 can be expressed simultaneously in the rBac-infected insect cells.•The recombinant viral structural proteins expressed in insect cells could spontaneously self-assemble into virus-like particles.•The VLPs can induce significant humoral immune response and provide strong protection for ducklings. Duck hepatitis A virus (DHAV), a non-enveloped ssRNA virus, can cause a highly contagious disease in young ducklings. The three capsid proteins of VP0, VP1 and VP3 are translated within a single large open reading frame (ORF) and hydrolyzed by protease 3CD. However, little is known on whether the recombinant viral structural proteins (VPs) expressed in insect cells could spontaneously assemble into virus-like particles (VLPs) and whether these VLPs could induce protective immunity in young ducklings. To address these issues, the structural polyprotein precursor gene P1 and the protease gene 3CD were amplified by PCR, and the recombinant proteins were expressed in insect cells using a baculovirus expression system for the characterization of their structures and immunogenicity. The recombinant proteins expressed in Sf9 cells were detected by indirect immunofluorescence assay and Western blot analysis. Electron microscopy showed that the recombinant proteins spontaneously assembled into VLPs in insect cells. Western blot analysis of the purified VLPs revealed that the VLPs were composed with the three structural proteins. In addition, vaccination with the VLPs induced high humoral immune response and provided strong protection. Therefore, our findings may provide a framework for development of new vaccines for the prevention of duck viral hepatitis.
ISSN:0378-1135
1873-2542
DOI:10.1016/j.vetmic.2017.12.020