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对戈登氏链球菌进行基因工程改造,以在细菌表面同时展示两种异源蛋白。

Genetic engineering of Streptococcus gordonii for the simultaneous display of two heterologous proteins at the bacterial surface.

作者信息

Maggi Tiziana, Spinosa Maria, Ricci Susanna, Medaglini Donata, Pozzi Gianni, Oggioni Marco R

机构信息

Laboratorio di Microbiologia Molecolare e Biotecnologia (L.A.M.M.B.), Dipartimento di Biologia Molecolare, Sezione di Microbiologia, Università di Siena, Policlinico Le Scotte, Viale Bracci, 53100, Italy.

出版信息

FEMS Microbiol Lett. 2002 Apr 23;210(1):135-41. doi: 10.1111/j.1574-6968.2002.tb11172.x.

Abstract

The Gram-positive bacterium Streptococcus gordonii has been genetically engineered to allow the simultaneous expression of two heterologous proteins at the cell surface. A family of recombinant streptococci displaying two different antigens was constructed. All the strains were genetically stable and expressed both proteins at the surface of the same bacterial cell. S. gordonii co-expressing the immunomodulating molecule LTB (B monomer of Escherichia coli heat-labile toxin) and the V3 domain of HIV-1 gp120 were inoculated subcutaneously to BALB/c mice. Animals were capable of responding to both antigens, producing LTB- and V3-specific serum IgG. The V3-specific IgG titer was four-fold higher in mice immunised with the double protein-expressing bacteria, as compared to control animals inoculated either with S. gordonii expressing the V3 domain alone or with a mixture of the two strains expressing LTB and V3, separately. Therefore, LTB was able to potentiate the antibody response towards the V3 domain, and this effect was observed only when LTB was co-expressed on the same bacterial cell.

摘要

革兰氏阳性菌戈登链球菌已通过基因工程改造,以使其能够在细胞表面同时表达两种异源蛋白。构建了一系列展示两种不同抗原的重组链球菌。所有菌株在基因上都是稳定的,并且在同一细菌细胞表面表达这两种蛋白。将共表达免疫调节分子LTB(大肠杆菌不耐热毒素的B亚基)和HIV-1 gp120的V3结构域的戈登链球菌皮下接种到BALB/c小鼠体内。动物能够对两种抗原产生反应,产生LTB特异性和V3特异性血清IgG。与单独接种表达V3结构域的戈登链球菌或分别接种表达LTB和V3的两种菌株混合物的对照动物相比,用表达双蛋白的细菌免疫的小鼠中V3特异性IgG滴度高四倍。因此,LTB能够增强针对V3结构域的抗体反应,并且仅当LTB在同一细菌细胞上共表达时才观察到这种效果。

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