Vaccine Molecule Design Based on Phage Display and Computational Modeling against Rhabdovirus

噬菌体展示 表位 生物 抗原 抗体 肽库 病毒学 对接(动物) 效价 平移(音频) 病毒 肽序列 生物化学 免疫学 基因 医学 古生物学 缩放 护理部 镜头(地质)
作者
Yuying Zheng,Liang Zhao,Xuefeng Wei,Tian-Zi Sun,Feifan Xu,Gao‐Xue Wang,Bin Zhu
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:212 (4): 551-562 被引量:3
标识
DOI:10.4049/jimmunol.2300447
摘要

Abstract Rhabdoviruses with rich species lead a variety of high lethality and rapid transmission diseases to plants and animals around the globe. Vaccination is one of the most effective approaches to prevent and control virus disease. However, the key antigenic epitopes of glycoprotein being used for vaccine development are unclear. In this study, fish-derived Abs are employed for a Micropterus salmoides rhabdovirus (MSRV) vaccine design by phage display and bioinformatics analysis. We constructed an anti-MSRV phage Ab library to screen Abs for glycoprotein segment 2 (G2) (G129-266). Four M13-phage-displayed Abs (Ab-5, Ab-7, Ab-8 and Ab-30) exhibited strong specificity to target Ag, and Ab-7 had the highest affinity with MSRV. Ab-7 (300 μg/ml) significantly increased grass carp ovary cell viability to 83.40% and significantly decreased the titer of MSRV. Molecular docking results showed that the key region of Ag–Ab interaction was located in 10ESQEFTTLTSH20 of G2. G2Ser11 and G2Gln12 were replaced with alanine, respectively, and molecular docking results showed that the Ag–Ab was nonbinding (ΔG > 0). Then, the peptide vaccine KLH-G210–20 was immunized to M. salmoides via i.p. injection. ELISA result showed that the serum Ab potency level increased significantly (p < 0.01). More importantly, the challenge test demonstrated that the peptide vaccine elicited robust protection against MSRV invasion, and the relative percentage survival reached 62.07%. Overall, this study proposed an approach for screening key epitope by combining phage display technology and bioinformatics tools to provide a reliable theoretical reference for the prevention and control of viral diseases.
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