Improved Expression of Porcine Epidemic Diarrhea Antigen by Fusion with Cholera Toxin B Subunit and Chloroplast Transformation in
Overview
Affiliations
The porcine epidemic diarrhea virus (PEDV) belongs to the coronavirus family, which causes acute diarrhea in pigs with higher mortality in piglets less than 2 weeks old. The PEDV is one of the major concerns of the pig industry around the world, including Asian countries and Noth America since first identified in Europe. Currently, there is no PEDV licensed vaccine to effectively prevent this disease. This study was performed for the development of a mucosal PEDV vaccine and B subunit of cholera toxin (CTB) as a carrier was employed to surpass the tolerogenic nature of GALT and induce potent immune responses against the target antigen fused to CTB. An epitope (S1D) alone or conjugated with CTB was constructed into the tobacco chloroplasts expression vector which is controlled under the chloroplast rRNA operon promoter with T7g10 5' UTR and the psbA 3'UTR as a terminator. The homoplastomic lines were obtained by third round screening via organogenesis from the leaf tissues which were verified by PCR with antigen and chloroplast specific primers and then confirmed by Southern blot analysis. While the expression level of the S1D alone as detected by Western blotting was approximately 0.07% of total soluble protein, the CTB-S1D fusion protein was expressed up to 1.4%. The fusion protein showed binding to the intestinal membrane GM1-ganglioside receptor, demonstrating its functionality. The result shows that the highest expression of S1D could be achieved by fusion with a stable CTB protein and chloroplast transformation. Furthermore, the CTB-S1D expressed in chloroplasts of cv. Maryland could be assembled to pentameric form which increases the possibility to develop a mucosal vaccine against PEDV.
Parthiban S, Vijeesh T, Gayathri T, Shanmugaraj B, Sharma A, Sathishkumar R Front Plant Sci. 2023; 14:1252166.
PMID: 38034587 PMC: 10684705. DOI: 10.3389/fpls.2023.1252166.
Overexpression of the recombinant human interferon-beta () gene in tobacco chloroplasts.
Feizi A, Baghbankohnehrouz B BioTechnologia (Pozn). 2023; 102(4):367-376.
PMID: 36605601 PMC: 9642931. DOI: 10.5114/bta.2021.111094.
Ho T, Trinh V, Tran H, Le P, Nguyen T, Hoang H Front Vet Sci. 2022; 9:940395.
PMID: 35967993 PMC: 9366249. DOI: 10.3389/fvets.2022.940395.
Maj M, Fake G, Walker J, Saltzman R, Howard J Vaccines (Basel). 2021; 9(12).
PMID: 34960163 PMC: 8706244. DOI: 10.3390/vaccines9121416.
Producing Vaccines against Enveloped Viruses in Plants: Making the Impossible, Difficult.
Peyret H, Steele J, Jung J, Thuenemann E, Meshcheriakova Y, Lomonossoff G Vaccines (Basel). 2021; 9(7).
PMID: 34358196 PMC: 8310165. DOI: 10.3390/vaccines9070780.