Literature DB >> 28216094

Fusion of flagellin 2 with bivalent white spot syndrome virus vaccine increases survival in freshwater shrimp.

Hansam Cho1, Na Hye Park2, Yuyeon Jang1, Yong-Dae Gwon1, Yeondong Cho1, Yoon-Ki Heo1, Ki-Hoon Park1, Hee-Jung Lee1, Tae Jin Choi2, Young Bong Kim3.   

Abstract

Despite large economic losses attributable to white spot syndrome virus (WSSV), an infectious pathogen of penaeid shrimp and other crustaceans worldwide, no efficient vaccines or antiviral agents to control the virus are available at present. Here, we designed and constructed baculovirus-based vaccines delivering genes encoding the WSSV envelope proteins, VP28 and VP19. To enhance the immunogenicity of the baculovirus-based vaccine, we fused a Salmonella typhimurium flagellin 2 (FL2) gene with VP28 or VP19 gene. Both vaccine constructs elicited similar high titlers of anti-WSSV IgG after oral immunization in mice. The protective effect of oral vaccines upon WSSV challenge was observed in Macrobrachium nipponense. Bivalent vaccine displaying WSSV envelope proteins, VP19 and VP28, led to enhanced more than 10% survival protection against WSSV infection, compared to monovalent vaccine containing WSSV envelope protein, VP19 or VP28. Furthermore, a baculovirus-based WSSV vaccine fused with FL2 gene, Ac-VP28-ie1VP19FL2, efficiently protected mice against WSSV challenge (89.5% survival rate). In support of the efficacy of FL2 in our vaccine, we verified FL2 enhanced survival rate and induced the NF-κB gene in Palaemon paucidens. The collective results strongly suggest that our recombinant baculoviral system displaying WSSV envelope protein and delivering FL2-fused WSSV envelope gene effectively induced protective responses, supporting the utility of a potential new oral DNA vaccine against WSSV.
Copyright © 2017 Elsevier Inc. All rights reserved.

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Keywords:  Baculovirus; DNA vaccine; FL2; Innate immunity; Shrimp; White spot syndrome virus

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Year:  2017        PMID: 28216094     DOI: 10.1016/j.jip.2017.02.004

Source DB:  PubMed          Journal:  J Invertebr Pathol        ISSN: 0022-2011            Impact factor:   2.841


  1 in total

1.  Shoc2 recognizes bacterial flagellin and mediates antibacterial Erk/Stat signaling in an invertebrate.

Authors:  Bao-Rui Zhao; Xin-Xin Wang; Xian-Wei Wang
Journal:  PLoS Pathog       Date:  2022-01-24       Impact factor: 6.823

  1 in total

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