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编码密码子优化的PPA1的DNA疫苗对牙鲆杀鱼爱德华氏菌的保护效力及诱导的免疫反应

Protective efficacy and immune responses induced by a DNA vaccine encoding codon-optimized PPA1 against Photobacterium damselae subsp. piscicida in Japanese flounder.

作者信息

Kato Goshi, Yamashita Kozue, Kondo Hidehiro, Hirono Ikuo

机构信息

Laboratory of Genome Science, Graduate School of Tokyo University of Marine Science and Technology, Konan 4-5-7, Minato, Tokyo 108-8477, Japan.

Laboratory of Genome Science, Graduate School of Tokyo University of Marine Science and Technology, Konan 4-5-7, Minato, Tokyo 108-8477, Japan.

出版信息

Vaccine. 2015 Feb 18;33(8):1040-5. doi: 10.1016/j.vaccine.2015.01.011. Epub 2015 Jan 14.

Abstract

Photobacterium damselae subsp. piscicida (Pdp) kills many cultured marine fish. As it evolves resistance to existing vaccines, new vaccines are needed. PPA1 is a major antigenic protein of Pdp. Here, DNA vaccines encoding wild-type PPA1 (pPPA1(wt)) and codon-optimized PPA1 (pPPA1(opt)) were constructed and tested against Pdp in Japanese flounder. The mRNA levels of the two antigenic genes at the vaccination site were not different, but the protein level was significantly higher in the pPPA1(opt)-vaccinated fish. In addition, after a bacterial challenge, the levels of interleukin (IL)-1β, IL-6 and IFN-γ mRNA significantly increased in the pPPA1(opt)-vaccinated fish but not in the pPPA1(wt)-vaccinated fish. The relative percent survival (RPS) after the challenge was higher in the pPPA1(opt)-vaccinated fish (90.9) than in the pPPA1(wt)-vaccinated fish (69.2). At the early stage of the infection after the challenge, the number of viable Pdp in the spleen was significantly lower in the pPPA1(opt)-vaccinated fish than in the pPPA1(wt)-vaccinated fish. These data show that codon-optimized DNA vaccine pPPA1(opt) had a strong immunogenicity and conferred protective efficacy against Pdp infection in Japanese flounder.

摘要

杀鱼巴斯德氏菌杀鱼亚种(Pdp)可导致许多养殖海水鱼死亡。随着它对现有疫苗产生抗性,需要研发新疫苗。PPA1是Pdp的一种主要抗原蛋白。在此,构建了编码野生型PPA1(pPPA1(wt))和密码子优化型PPA1(pPPA1(opt))的DNA疫苗,并在日本牙鲆中针对Pdp进行了测试。两个抗原基因在疫苗接种部位的mRNA水平没有差异,但在接种pPPA1(opt)的鱼中蛋白水平显著更高。此外,在细菌攻击后,接种pPPA1(opt)的鱼中白细胞介素(IL)-1β、IL-6和IFN-γ mRNA水平显著升高,而接种pPPA1(wt)的鱼中则没有。攻击后的相对存活率(RPS)在接种pPPA1(opt)的鱼中(90.9)高于接种pPPA1(wt)的鱼(69.2)。在攻击后的感染早期,接种pPPA1(opt)的鱼脾脏中存活的Pdp数量显著低于接种pPPA1(wt)的鱼。这些数据表明,密码子优化的DNA疫苗pPPA1(opt)具有很强的免疫原性,并对日本牙鲆的Pdp感染具有保护作用。

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