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与副溶血性弧菌外膜蛋白K融合的反式激活转录激活因子的蛋白质转导结构域用于给花鳗鲡(Anguilla marmorata)接种疫苗,可提供针对副溶血性弧菌所致死亡的保护作用。

Protein transduction domain of transactivating transcriptional activator fused to outer membrane protein K of Vibrio parahaemolyticus to vaccinate marbled eels (Anguilla marmorata) confers protection against mortality caused by V. parahaemolyticus.

作者信息

Wang Hang, Yang Wei, Shen Guoying, Zhang Jianting, Lv Wei, Ji Binfeng, Meng Chun

机构信息

Institute of Pharmaceutical Biotechnology and Engineering, College of Biological Science and Engineering, Fuzhou University, Fuzhou, Fujian, 350002, China.

出版信息

Microb Biotechnol. 2015 Jul;8(4):673-80. doi: 10.1111/1751-7915.12281. Epub 2015 Apr 27.

Abstract

Although immersion and oral vaccination are the most practical methods for fish farmers, their applications are very limited due to low immune stimulation effect. We used the protein transduction domain (PTD) of transactivating transcriptional factor (TAT) derived from HIV TAT protein to increase the delivery efficiency of aquatic protein vaccines. Vibrio parahaemolyticus outer membrane protein K (ompK), a reported vaccine candidate for the prevention of V. parahaemolyticus infection, was fused with TAT-PTD expressed in Escherichia coli. We found that PTD-ompK fusion protein effectively penetrated into marbled eel bodies. Analysis of ompK antibody titres demonstrated that immersion vaccination with PTD-ompK was superior to ompK alone and induced robust immune stimulation in marbled eels. Both active and passive protection analyses against immersive challenge with V. parahaemolyticus strains demonstrated that marbled eels immunized with PTD-ompK survived significantly longer than those immunized with ompK alone. Our results indicated that TAT-PTD could be served as is an efficient delivery system for aquatic immersion vaccinations against various infectious diseases commonly seen in aquatic farm industry.

摘要

虽然浸泡和口服疫苗接种是养鱼户最实用的方法,但由于免疫刺激效果低,其应用非常有限。我们使用了源自HIV TAT蛋白的反式激活转录因子(TAT)的蛋白转导结构域(PTD)来提高水产蛋白疫苗的递送效率。副溶血性弧菌外膜蛋白K(ompK)是一种已报道的预防副溶血性弧菌感染的候选疫苗,它与在大肠杆菌中表达的TAT-PTD融合。我们发现PTD-ompK融合蛋白能有效穿透花鳗鲡体内。对ompK抗体滴度的分析表明,用PTD-ompK进行浸泡疫苗接种优于单独使用ompK,并能在花鳗鲡中诱导强烈的免疫刺激。针对副溶血性弧菌菌株浸泡攻击的主动和被动保护分析均表明,用PTD-ompK免疫的花鳗鲡存活时间明显长于仅用ompK免疫的花鳗鲡。我们的结果表明,TAT-PTD可作为一种高效的递送系统,用于水产养殖中常见的各种传染病的浸泡疫苗接种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9629/4476822/2dc7e3885fda/mbt20008-0673-f1.jpg

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