Nguyen Ngoc-Luong, Kim Jung-Mi, Park Jin-Ah, Park Seung-Moon, Jang Yong-Suk, Yang Moon-Sik, Kim Dae-Hyuk
Institute for Molecular Biology and Genetics, Chonbuk National University, Jeonju, Chonbuk 561-756, Republic of Korea.
Protein Expr Purif. 2013 Apr;88(2):235-42. doi: 10.1016/j.pep.2013.01.009. Epub 2013 Jan 31.
A synthetic consensus gene was designed based on residues of the amino acid sequences of dengue envelope domain III (scEDIII) from all four serotypes, and codon optimization for expression was conducted using baker's yeast, Saccharomyces cerevisiae. The synthetic gene was cloned into a yeast episomal expression vector, pYEGPD-TER, which was designed to direct cloned gene expression using the glyceraldehyde-3-phosphate dehydrogenase (GPD) promoter, a functional signal peptide of the amylase 1A protein from rice, and the GAL7 terminator. PCR and back-transformation into Escherichia coli confirmed the presence of the scEDIII gene-containing plasmid in the transformants. Northern blot analysis showed the presence of the scEDIII-specific transcript. Western blot analysis indicated that expressed scEDIII, with mobility similar to purified EDIII from E. coli, was successfully secreted into the culture media. Quantitative ELISA revealed that the recombinant scEDIII comprised approximately 0.1-0.6% of cell-free extract. In addition, 0.1-0.6 mg of scEDIII protein per liter of culture filtrate was detected on day 1 and peaked on day 3 after cultivation. The secreted scEDIII protein can be purified to ≥90% purity with 85% recovery using a simple ion-exchange FPLC followed by molecular weight cut-off. Upon administration of the purified protein to mice, mouse sera contained antibodies that were specific to all four serotypes of dengue virus. Moreover, a balanced immune response against all four serotypes was observed, suggesting that it may be possible to develop an effective tetravalent dengue vaccine using S. cerevisiae.
基于登革热病毒所有四种血清型包膜结构域III(scEDIII)的氨基酸序列残基设计了一个合成共有基因,并使用面包酵母酿酒酵母进行了表达的密码子优化。将该合成基因克隆到酵母附加型表达载体pYEGPD-TER中,该载体设计用于利用甘油醛-3-磷酸脱氢酶(GPD)启动子、水稻淀粉酶1A蛋白的功能性信号肽和GAL7终止子指导克隆基因的表达。PCR和回转化到大肠杆菌中证实了转化体中存在含scEDIII基因的质粒。Northern印迹分析显示存在scEDIII特异性转录本。Western印迹分析表明,表达的scEDIII迁移率与从大肠杆菌纯化的EDIII相似,成功分泌到培养基中。定量ELISA显示重组scEDIII约占无细胞提取物的0.1-0.6%。此外,培养第1天每升培养滤液中检测到0.1-0.6 mg的scEDIII蛋白,并在培养后第3天达到峰值。使用简单的离子交换FPLC随后进行分子量截留,可将分泌的scEDIII蛋白纯化至纯度≥90%,回收率为85%。将纯化的蛋白注射到小鼠体内后,小鼠血清中含有对登革热病毒所有四种血清型均特异的抗体。此外,观察到对所有四种血清型的平衡免疫反应,这表明使用酿酒酵母开发一种有效的四价登革热疫苗可能是可行的。