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新型爱德华氏菌 ghost 和死细胞联合疫苗生产表达系统。

Novel expression system for combined vaccine production in Edwardsiella tarda ghost and cadaver cells.

机构信息

Department of Aquatic Life Medicine, Pukyong National University, Busan, 608-737, Korea.

出版信息

Mol Biotechnol. 2010 Oct;46(2):127-33. doi: 10.1007/s12033-010-9277-2.

Abstract

To develop combined vaccine systems, we have generated Edwardsiella tarda ghosts (ETG) displaying a foreign protein on the outer membrane and also Ed. tarda cadaver (ETC) expressing a heterologous protein in the cytoplasm. Green fluorescent protein (GFP) was used as a model foreign protein. A constitutive promoter (EtPR C28-1) cloned newly from Ed. tarda was used as a promoter for the expression of foreign protein. Comparison of the strength of the new promoter with a commercially available constitutive promoter (P(HCE)) showed higher expression levels of the novel expression system. The N-terminal domain of ice nucleation protein (InaN), an outer membrane protein of Pseudomonas syringae, was used as an anchor motif for surface display of GFP. By transformation of Ed. tarda with the constructed vectors, GFP was successfully expressed on the surface of ETG and in the cytoplasm of ETC. When compared to P(HCE) driven expression, approximately more than 2 times of GFP was expressed on ETG and in ETC by EtPR C28-1 promoter when judged by fluorescent spectrophotometry. Furthermore, significantly higher expression of GFP on the surface of ETG by EtPR C28-1 than by P(HCE) was demonstrated by serum agglutination assay. These results suggest that the newly cloned Ed. tarda constitutive promoter is capable to express foreign proteins not only on the surface of Ed. tarda ghosts but also in the cytoplasm of Ed. tarda cadavers, and can be used as an efficient promoter for the expression of heterologous antigens of the ETG and ETC-based combined vaccines.

摘要

为了开发联合疫苗系统,我们生成了在外壳上展示外来蛋白质的迟缓爱德华氏菌幽灵(ETG),并且还生成了在细胞质中表达异源蛋白质的迟缓爱德华氏菌尸体(ETC)。绿色荧光蛋白(GFP)被用作模型外来蛋白质。从迟缓爱德华氏菌新克隆的组成型启动子(EtPR C28-1)被用作表达外来蛋白质的启动子。与商业上可用的组成型启动子(P(HCE))相比,新启动子的强度比较显示出新型表达系统的表达水平更高。假单胞菌外膜蛋白冰核蛋白(InaN)的 N 端结构域被用作 GFP 表面展示的锚定基序。通过将构建的载体转化为迟缓爱德华氏菌,GFP 成功地在 ETG 的表面和 ETC 的细胞质中表达。通过荧光分光光度计判断,与 P(HCE)驱动的表达相比,当使用 EtPR C28-1 启动子时,在 ETG 和 ETC 中表达的 GFP 约增加了 2 倍以上。此外,通过血清凝集测定证明,在 ETG 的表面上,EtPR C28-1 的 GFP 表达水平明显高于 P(HCE)。这些结果表明,新克隆的迟缓爱德华氏菌组成型启动子不仅能够在迟缓爱德华氏菌幽灵的表面上表达外来蛋白质,而且能够在迟缓爱德华氏菌尸体的细胞质中表达,并且可以用作 ETG 和 ETC 基于联合疫苗的异源抗原表达的有效启动子。

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