[基于免疫信息学方法的多阶段多表位结核分枝杆菌疫苗]。

Yu Ning, Yihan Cai, Xiaoling Liu, Chenchen Gu, Xiangying Meng, Jinjuan Qiao
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引用次数: 0

摘要

目的研制一种由结核分枝杆菌(MTB)早期分泌抗原和潜伏期相关抗原组成的多期、多表位疫苗。方法应用免疫信息学方法预测12种蛋白的b细胞、细胞毒性t淋巴细胞(CTL)和辅助t淋巴细胞(HTL)表位。进一步筛选具有抗原性、无细胞毒性和致敏性的抗原表位,构建多抗原表位疫苗。此外,该疫苗还进行了理化性质分析、二级结构预测以及三维结构建模、优化和验证。然后将改进后的模型与TLR4对接。最后,对该疫苗进行了免疫仿真。结果该疫苗由12个b细胞表位、11个CTL表位和12个HTL表位组成,具有灵活稳定的球状构象和耐热亲水性。通过分子对接证实疫苗与TLR4具有稳定的相互作用。通过免疫模拟评估候选疫苗触发有效细胞和体液免疫反应的效率。结论提出了一种基于免疫信息学的多阶段多表位MTB疫苗构建策略,有望同时预防活动性和潜伏性MTB感染。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[A multi-stage and multi-epitope vaccine against Mycobacterium tuberculosis based on an immunoinformatics approach].

Objectives To develop a multi-stage and multi-epitope vaccine, which consists of epitopes from the early secretory and latency-associated antigens of Mycobacterium tuberculosis (MTB). Methods The B-cell, cytotoxic T-lymphocyte (CTL) and helper T-lymphocyte (HTL) epitopes of 12 proteins were predicted using an immunoinformatics. The epitopes with antigenicity, without cytotoxicity and sensitization, were further screened to construct the multi-epitope vaccine. Furthermore, the proposed vaccine underwent physicochemical properties analysis and secondary structure prediction as well as 3D structure modeling, refinement and validation. Then the refined model was docked with TLR4. Finally, an immune simulation of the vaccine was carried out. Results The proposed vaccine, which consists of 12 B-cell, 11 CTL and 12 HTL epitopes, had a flexible and stable globular conformation as well as a thermostable and hydrophilic structure. A stable interaction of the vaccine with TLR4 was confirmed by molecular docking. The efficiency of the candidate vaccine to trigger effective cellular and humoral immune responses was assessed by immune simulation. Conclusion A multi-stage multi-epitope MTB vaccine construction strategy based on immunoinformatics is proposed, which is expected to prevent both active and latent MTB infection.

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