scholarly journals A Novel Subunit Vaccine Based on Outer Capsid Proteins of Grass Carp Reovirus (GCRV) Provides Protective Immunity against GCRV Infection in Rare Minnow (Gobiocypris rarus)

Pathogens ◽  
2020 ◽  
Vol 9 (11) ◽  
pp. 945
Author(s):  
Changyong Mu ◽  
Vikram N. Vakharia ◽  
Yong Zhou ◽  
Nan Jiang ◽  
Wenzhi Liu ◽  
...  

The grass carp hemorrhagic disease, caused by the grass carp reovirus (GCRV), has resulted in severe economic losses in the aquaculture industry in China. VP4 and VP35 are outer capsid proteins of GCRV and can induce an immune response in the host. Here, three recombinant baculoviruses, AcMNPV-VP35, AcMNPV-VP4, and AcMNPV-VP35-VP4, were generated to express recombinant VP4 and VP35 proteins from GCRV type II in insect cells by using the Bac-to-Bac baculovirus expression system to create a novel subunit vaccine. The expression of recombinant VP35, VP4, and VP35-VP4 proteins in Sf-9 cells were confirmed by Western blotting and immunofluorescence. Recombinant VP35, VP4, and VP35-VP4 were purified from baculovirus-infected cell lysates and injected intraperitoneally (3 μg/fish) into the model rare minnow, Gobiocypris rarus. After 21 days, the immunized fish were challenged with virulent GCRV. Liver, spleen, and kidney samples were collected at different time intervals to evaluate the protective efficacy of the subunit vaccines. The mRNA expression levels of some immune-related genes detected by using quantitative real-time PCR (qRT-PCR) were significantly upregulated in the liver, spleen, and kidney, with higher expression levels in the VP35-VP4 group. The nonvaccinated fish group showed 100% mortality, whereas the VP35-VP4, VP4, and VP35 groups exhibited 67%, 60%, and 33% survival, respectively. In conclusion, our results revealed that recombinant VP35 and VP4 can induce immunity and protect against GCRV infection, with their combined use providing the best effect. Therefore, VP35 and VP4 proteins can be used as a novel subunit vaccine against GCRV infection.

2010 ◽  
Vol 36 (4) ◽  
pp. 837-842 ◽  
Author(s):  
Sha LIAO ◽  
Yun CHEN ◽  
Fu-Kuan DU ◽  
Ya-Ping WANG ◽  
Lan-Jie LIAO ◽  
...  

2012 ◽  
Vol 37 (6) ◽  
pp. 659-664 ◽  
Author(s):  
Shi-ying XU ◽  
Jing-hui LI ◽  
Yong ZOU ◽  
Lin LIU ◽  
Cheng-liang GONG ◽  
...  

2019 ◽  
Vol 136 ◽  
pp. 103715 ◽  
Author(s):  
Shixu Liu ◽  
Yingying Wang ◽  
Jiaming Chen ◽  
Qing Wang ◽  
Ouqin Chang ◽  
...  

2019 ◽  
Vol 89 ◽  
pp. 337-344 ◽  
Author(s):  
Yusheng Lin ◽  
Bing Wang ◽  
Nenghan Wang ◽  
Gang Ouyang ◽  
Hong Cao

Aquaculture ◽  
2009 ◽  
Vol 289 (1-2) ◽  
pp. 1-5 ◽  
Author(s):  
Jianguo Su ◽  
Zuoyan Zhu ◽  
Yaping Wang ◽  
Jun Zou ◽  
Na Wang ◽  
...  

Vaccines ◽  
2021 ◽  
Vol 9 (1) ◽  
pp. 53
Author(s):  
Ting Gao ◽  
Caixia Gao ◽  
Siyu Wu ◽  
Yingying Wang ◽  
Jiyuan Yin ◽  
...  

Grass carp reovirus (GCRV) leads to severe hemorrhagic disease in grass carp (Ctenopharyngodon idella) and causes economic losses in grass carp aquaculture. Recent epidemiological investigations showed that GCRV genotype II is the dominant subtype in China. Therefore, it is very important to develop a novel vaccine for preventing diseases caused by GCRV genotype II. In this study, we employed a bac-to-bac expression system to generate GCRV-II-based virus-like particles (VLPs). Previous studies have shown that the structural proteins VP3, VP4, and VP38 encoded by the segments S3, S6, and S10 of type II GCRV are immunogenic. Hence, the GCRV-VLPs were produced by co-infection of sf9 cells with recombinant baculoviruses PFBH-VP3, PFBH-VP4, and PFBH-VP38. The expressions of VP3, VP4, and VP38 proteins in GCRV-VLPs were tested by IFA and Western blot analysis. By electron microscopic observations of ultrathin sections, purified VLPs showed that the expressed proteins are similar in shape to GCRV genotype II with a size range from 40 nm to 60 nm. The immunogenicity of GCRV-VLPs was evaluated by the injection immunization of grass carp. The analysis of serum-specific IgM antibody showed that grass carp immunized with GCRV-VLPs produced GCRV-specific antibodies. Furthermore, injection with GCRV-VLPs increased the expressions of immune-related genes (IgM, IFN, TLR3, TLR7) in the spleen and kidney. In addition, grass carp immunized with a GCRV-VLPs-based vaccine showed a relative percent survival rate (RPS) of 83.33% after challenge. The data in this study showed that GCRV-VLPs demonstrated an excellent immunogenicity and represent a promising approach for vaccine development against GCRV genotype II infection.


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