Department of Biotechnology and Genetic Engineering, Islamic University, Kushtia 7003, Bangladesh.
School of Medicine, Western Sydney University, Campbelltown, NSW, Australia.
J Immunol Res. 2018 Oct 8;2018:6718083. doi: 10.1155/2018/6718083. eCollection 2018.
Oropouche virus (OROV) is an emerging pathogen which causes Oropouche fever and meningitis in humans. Several outbreaks of OROV in South America, especially in Brazil, have changed its status as an emerging disease, but no vaccine or specific drug target is available yet. Our approach was to identify the epitope-based vaccine candidates as well as the ligand-binding pockets through the use of immunoinformatics. In this report, we identified both T-cell and B-cell epitopes of the most antigenic OROV polyprotein with the potential to induce both humoral and cell-mediated immunity. Eighteen highly antigenic and immunogenic CD8 T-cell epitopes were identified, including three 100% conserved epitopes (, , and ) as the potential vaccine candidates. The selected epitopes showed 95.77% coverage for the mixed Brazilian population. The docking simulation ensured the binding interaction with high affinity. A total of five highly conserved and nontoxic linear B-cell epitopes "," "," "," "," and "" were selected as potential vaccine candidates. The predicted eight conformational B-cell epitopes represent the accessibility for the entered virus. In the posttherapeutic strategy, ten ligand-binding pockets were identified for effective inhibitor design against emerging OROV infection. Collectively, this research provides novel candidates for epitope-based peptide vaccine design against OROV.
奥罗普切病毒(OROV)是一种新兴病原体,可引起人类奥罗普切热和脑膜炎。南美洲(尤其是巴西)的几次 OROV 爆发改变了其作为新兴疾病的地位,但目前尚无疫苗或特定药物靶点可用。我们的方法是通过免疫信息学来确定基于表位的疫苗候选物以及配体结合口袋。在本报告中,我们鉴定了最具抗原性的 OROV 多蛋白的 T 细胞和 B 细胞表位,这些表位有可能诱导体液和细胞介导的免疫。鉴定出 18 个具有高度抗原性和免疫原性的 CD8 T 细胞表位,包括三个 100%保守的表位(、和),可作为潜在的疫苗候选物。选择的表位对混合巴西人群的覆盖率为 95.77%。对接模拟确保了与高亲和力的结合相互作用。总共选择了五个高度保守且无毒的线性 B 细胞表位“、、、、和”作为潜在的疫苗候选物。预测的八个构象 B 细胞表位代表了进入病毒的可及性。在后治疗策略中,鉴定了十个配体结合口袋,以有效设计针对新兴 OROV 感染的抑制剂。总之,这项研究为针对 OROV 的基于表位的肽疫苗设计提供了新的候选物。