College of Animal Science and Technology, Northwest A&F University, Yangling, China.
J Fish Dis. 2021 Oct;44(10):1587-1594. doi: 10.1111/jfd.13481. Epub 2021 Jun 24.
Spring viraemia of carp (SVC) caused by spring viraemia of carp virus (SVCV) can infect almost all fish of cyprinids, which bring huge economic losses to aquaculture. Glycoprotein (G), as the most important antigenic determinant protein of SVCV, is widely considered as an effective method against SVCV. In our previous study, we found that G3 (131 aa) is the potential dominant antigen epitope that induces strong immune responses similar to G protein (510 aa). Here, in order to further improve the immune effect, we reported a subunit vaccine (PEG-G3) constructed by PEG-modified dominant epitope protein (G3). The results of serum antibody production, enzyme activities and immune-related genes expression showed that PEG-G3 induces significantly stronger immune protective responses against SVCV than G3. PEG modification significantly increased the serum antibody level of the vaccine, which increased significantly after immunization and reached the peak at 21 day post-vaccination. T-AOC and AKP activities in the lowest concentration group (5 μg) of PEG-G3 were significantly higher than those in the highest concentration group (20 μg) of G3. In PEG-G3 group, the expression of almost all genes increased at least 4 times compared with the control group. After 14-day challenge, the RPS (relative percentage survival) of the highest concentration of PEG-G3 group was 53.6%, while that of G3 group is 38.9%. Therefore, this work shows that PEG modification and dominant epitope screening may be effective methods to improve the immune protective effect of vaccines and to resist the infection of aquatic animal viral diseases.
锦鲤疱疹病毒(SVCV)引起的锦鲤春血病可感染几乎所有鲤科鱼类,给水产养殖业造成巨大经济损失。糖蛋白(G)是 SVCV 最重要的抗原决定簇蛋白,被广泛认为是对抗 SVCV 的有效方法。在我们之前的研究中,我们发现 G3(131 个氨基酸)是诱导与 G 蛋白(510 个氨基酸)相似的强烈免疫反应的潜在优势抗原表位。在这里,为了进一步提高免疫效果,我们报告了一种通过聚乙二醇(PEG)修饰优势表位蛋白(G3)构建的亚单位疫苗(PEG-G3)。血清抗体产生、酶活性和免疫相关基因表达的结果表明,PEG-G3 诱导的针对 SVCV 的免疫保护反应明显强于 G3。PEG 修饰显著提高了疫苗的血清抗体水平,免疫后显著增加,在接种后 21 天达到峰值。在 PEG-G3 最低浓度组(5μg)中,T-AOC 和 AKP 活性显著高于 G3 最高浓度组(20μg)。在 PEG-G3 组中,与对照组相比,几乎所有基因的表达都至少增加了 4 倍。14 天后攻毒,PEG-G3 最高浓度组的 RPS(相对存活率)为 53.6%,而 G3 组为 38.9%。因此,这项工作表明,PEG 修饰和优势表位筛选可能是提高疫苗免疫保护效果、抵抗水生动物病毒性疾病感染的有效方法。