Expression of a cholera toxin B subunit and consensus dengue virus envelope protein domain III fusion gene in transgenic rice callus

被引:0
作者
Mi-Young Kim
Nguyen-Duc Chung
Moon-Sik Yang
Tae-Geum Kim
机构
[1] Chonbuk National University,Department of Molecular Biology
[2] Chonbuk National University,Research Center for Bioactive Materials
来源
Plant Cell, Tissue and Organ Culture (PCTOC) | 2013年 / 112卷
关键词
Dengue virus; Tetravalent; Cholera toxin B subunit; Plant-based edible vaccine;
D O I
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中图分类号
学科分类号
摘要
Dengue (DEN) is one of the most important emerging mosquito-borne viral human diseases. Therefore, an effective dengue vaccine with immune responses against all four dengue virus serotypes is highly needed. A fusion gene encoding a synthetic consensus envelope protein domain III (scEDIII) of dengue virus with neutralizing activity against the four dengue virus serotypes and with the B subunit of cholera toxin (CTB) to increase its mucosal immunogenicity was constructed and was introduced into rice callus under the control of the inducible rice amylase 3D promoter expression system. The integration and expression of the CTB-scEDIII fusion gene in transgenic rice callus were confirmed by genomic DNA PCR amplification, Northern, and Western blot analyses, respectively. The biological binding activity of the CTB-cEDIII fusion protein to its GM1-ganglioside receptor was confirmed via GM1-ELISA with anti-CT and anti-dengue virus antibodies. Delivery of the CTB-cEDIII fusion protein into mucosal immune inductive sites (including M cells) in BALB/c mice was confirmed by in vitro and in vivo antigen uptake assays. These results showed that the CTB-cEDIII fusion protein was produced in the transgenic rice callus, and that plant-produced ligand fusion antigen proteins have the potential to be targeted to the mucosal immune system for improvement of the overall immune responses.
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页码:311 / 320
页数:9
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  • [1] Arakawa T(1998)A plant-based cholera toxin B subunit-insulin fusion protein protects against the development of autoimmune diabetes Nat Biotechnol 16 934-938
  • [2] Yu J(2010)Pichia pastoris-expressed dengue virus type 2 envelope domain III elicits virus-neutralizing antibodies J Virol Methods 167 10-16
  • [3] Chong DK(2010)Rapid, high-yield production in plants of individualized idiotype vaccines for non-Hodgkin’s lymphoma Ann Oncol 21 2420-2427
  • [4] Hough J(2010)A tetravalent recombinant dengue domain III protein vaccine stimulates neutralizing and enhancing antibodies in mice Vaccine 28 8085-8094
  • [5] Engen PC(2008)Enhancement of epitope-specific cellular immune responses by immunization with HIV-1 peptides genetically conjugated to the B-subunit of recombinant cholera toxin Vaccine 26 5079-5082
  • [6] Langridge WH(2011)Low-cost production of proinsulin in tobacco and lettuce chloroplasts for injectable or oral delivery of functional insulin and C-peptide Plant Biotechnol J 9 585-598
  • [7] Batra G(2010)Pediatric measles vaccine expressing a dengue tetravalent antigen elicits neutralizing antibodies against all four dengue viruses Vaccine 28 6730-6739
  • [8] Raut R(2009)Chloroplast-derived vaccine antigens and biopharmaceuticals: expression, folding, assembly and functionality Curr Top Microbiol Immunol 332 33-54
  • [9] Dahiya S(2002)Rice alpha-amylase transcriptional enhancers direct multiple mode regulation of promoters in transgenic rice J Biol Chem 277 13641-13649
  • [10] Kamran N(2011)A novel single-dose dengue subunit vaccine induces memory immune responses PLoS ONE 6 e23319-363