High-efficiency expression of a receptor-binding domain of SARS-CoV spike protein in tobacco chloroplasts
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National Natural Science Foundation of china (No. 31000743), Innovation Program of Jilin Academy of Agriculture Sciences.

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    Abstract:

    Chloroplast-based expression system is promising for the hyper-expression of plant-derived recombinant therapeutic proteins and vaccines. To verify the feasibility of obtaining high-level expression of the SARS subunit vaccine and to provide a suitable plant-derived vaccine production platform against the severe acute respiratory syndrome coronavirus (SARS-CoV), a 193-amino acid fragment of SARS CoV spike protein receptor-binding domain (RBD), fused with the peptide vector cholera toxin B subunit (CTB), was expressed in tobacco chloroplasts. Codon-optimized CTB-RBD sequence was integrated into the chloroplast genome and homoplasmy was obtained, as confirmed by PCR and Southern blot analysis. Western blot showed expression of the recombinant fusion protein mostly in soluble monomeric form. Quantification of the recombinant fusion protein CTB-RBD was conducted by ELISA analysis from the transplastomic leaves at different developmental stages, attachment positions and time points in a day and the different expression levels of the CTB-RBD were observed with the highest expression of 10.2% total soluble protein obtained from mature transplastomic leaves. Taken together, our results demonstrate the feasibility of highly expressing SARS subunit vaccine RBD, indicating its potential in subsequent development of a plant-derived recombinant subunit vaccine and reagents production for antibody detection in SARS serological tests.

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钟雪,齐广勋,杨静,邢国杰,刘剑锋,杨向东. SARS亚基疫苗-突刺蛋白受体结合区RBD在烟草叶绿体中的高效表达[J]. Chinese Journal of Biotechnology, 2014, 30(6): 920-930

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History
  • Received:September 18,2013
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  • Online: June 06,2014
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