Department of Immunology, College of Basic Medicine, Xinjiang Medical University, Urumqi, 830011Xinjiang, China.
Department of Reproductive Assistance, Center for Reproductive Medicine, The First Affiliated Hospital of Xinjiang Medical University, No. 393, Xinyi Road, Urumqi, 830011Xinjiang, China.
Epidemiol Infect. 2021 May 25;149:e136. doi: 10.1017/S0950268821001229.
Brucellosis is one of the most serious and widespread zoonotic diseases, which seriously threatens human health and the national economy. This study was based on the T/B dominant epitopes of Brucella outer membrane protein 22 (Omp22), outer membrane protein 19 (Omp19) and outer membrane protein 28 (Omp28), with bioinformatics methods to design a safe and effective multi-epitope vaccine. The amino acid sequences of the proteins were found in the National Center for Biotechnology Information (NCBI) database, and the signal peptides were predicted by the SignaIP-5.0 server. The surface accessibility and hydrophilic regions of proteins were analysed with the ProtScale software and the tertiary structure model of the proteins predicted by I-TASSER software and labelled with the UCSF Chimera software. The software COBEpro, SVMTriP and BepiPred were used to predict B cell epitopes of the proteins. SYFPEITHI, RANKpep and IEDB were employed to predict T cell epitopes of the proteins. The T/B dominant epitopes of three proteins were combined with HEYGAALEREAG and GGGS linkers, and carriers sequences linked to the N- and C-terminus of the vaccine construct with the help of EAAAK linkers. Finally, the tertiary structure and physical and chemical properties of the multi-epitope vaccine construct were analysed. The allergenicity, antigenicity and solubility of the multi-epitope vaccine construct were 7.37-11.30, 0.788 and 0.866, respectively. The Ramachandran diagram of the mock vaccine construct showed 96.0% residues within the favoured and allowed range. Collectively, our results showed that this multi-epitope vaccine construct has a high-quality structure and suitable characteristics, which may provide a theoretical basis for future laboratory experiments.
布鲁氏菌病是最严重和广泛流行的人畜共患病之一,严重威胁着人类健康和国民经济。本研究基于布鲁氏菌外膜蛋白 22(Omp22)、外膜蛋白 19(Omp19)和外膜蛋白 28(Omp28)的 T/B 优势表位,采用生物信息学方法设计一种安全有效的多表位疫苗。蛋白质的氨基酸序列在国家生物技术信息中心(NCBI)数据库中找到,信号肽由 SignaIP-5.0 服务器预测。蛋白质的表面可及性和亲水区域用 ProtScale 软件分析,蛋白质的三级结构模型用 I-TASSER 软件预测并用 UCSF Chimera 软件标记。用 COBEpro、SVMTriP 和 BepiPred 软件预测蛋白质的 B 细胞表位。用 SYFPEITHI、RANKpep 和 IEDB 软件预测蛋白质的 T 细胞表位。将三种蛋白质的 T/B 优势表位与 HEYGAALEREAG 和 GGGS 接头结合,并用 EAAAK 接头将与疫苗构建体 N-和 C-末端相连的载体序列连接起来。最后,分析多表位疫苗构建体的三级结构和理化性质。多表位疫苗构建体的变应原性、抗原性和溶解性分别为 7.37-11.30、0.788 和 0.866。模拟疫苗构建体的 Ramachandran 图显示 96.0%的残基位于偏好和允许范围内。总的来说,我们的结果表明,这种多表位疫苗构建体具有高质量的结构和合适的特性,可为未来的实验室实验提供理论依据。