Joint Laboratory of Guangdong Province and Hong Kong Regions on Marine Bioresource Conservation and Exploitation, College of Marine Sciences, South China Agricultural University, Guangzhou, 510642, China.
School of Bioscience and Bioengineering, South China University of Technology, Guangzhou, 510006, PR China.
Sci Rep. 2019 Jan 31;9(1):1029. doi: 10.1038/s41598-018-25710-3.
Immobilization antigens (i-antigens) are surface membrane proteins that are widely recognized to be the ideal candidates as vaccines antigens for immunization against Cryptocaryon irritans. In this study, we cloned a putative i-antigen gene from C. irritans, which was expressed in all three stages of the C. irritans life-cycle, and localized primarily to the cell surface. The recombinant GDCI3 i-antigen was expressed and purified using the free-living ciliate, Tetrahymena thermophila as an expression system. The purified recombinant protein was recognized by rabbit anti-C. irritans antiserum and was capable of eliciting immobilizing antibodies in rabbits and fish suggesting that the antigen itself was correctly folded. Following immunization and parasite challenge, groupers vaccinated with, recombinant GDCI3 i-antigen had a 25% cumulative percent survival rate compared to 8.3% for controls. Both non-specific and parasite-specific IgMs were generated in fish following immunization, with the levels of both increasing following challenge. Parasite-specific IgM in mucus could only be elicited after challenge of the GDCI3 i-antigen vaccinated groupers. To our knowledge, this is the first report using the Tetrahymena expression system to generate C. irritans i-antigens and investigate their use for fish vaccination.
固定抗原(i 抗原)是一种广泛认为是理想的疫苗抗原的表面膜蛋白,可用于 Cryptocaryon irritans 的免疫接种。在这项研究中,我们从 C. irritans 中克隆了一个假定的 i 抗原基因,该基因在 C. irritans 的所有三个生命周期阶段都有表达,并主要定位于细胞表面。使用自由生活的纤毛虫 Tetrahymena thermophila 作为表达系统表达和纯化重组 GDCI3 i 抗原。纯化的重组蛋白被兔抗 C. irritans 抗血清识别,并能够在兔和鱼中诱导固定化抗体,表明抗原本身正确折叠。免疫接种和寄生虫挑战后,用重组 GDCI3 i 抗原免疫接种的石斑鱼的累积存活率为 25%,而对照组为 8.3%。免疫后鱼体内产生了非特异性和寄生虫特异性 IgM,挑战后两者的水平均增加。只有在挑战 GDCI3 i 抗原免疫接种的石斑鱼后,才能在黏液中诱发出寄生虫特异性 IgM。据我们所知,这是首次使用 Tetrahymena 表达系统生成 C. irritans i 抗原并研究其在鱼类疫苗接种中的应用。