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通过整合结构疫苗学和分子建模方法,针对汉坦病毒的多表位疫苗的计算机设计。

In silico design of multi-epitope vaccines against the hantaviruses by integrated structural vaccinology and molecular modeling approaches.

机构信息

Department of Biological Sciences, National University of Medical Sciences (NUMS), Rawalpindi, Pakistan.

Department of Pharmaceutical Sciences, College of Pharmacy, QU Health, Qatar University, Doha, Qatar.

出版信息

PLoS One. 2024 Jul 23;19(7):e0305417. doi: 10.1371/journal.pone.0305417. eCollection 2024.

Abstract

Hantaviruses are single-stranded RNA viruses belonging to the family Bunyaviridae that causes hantavirus cardiopulmonary syndrome (HCPS) and hemorrhagic fever with renal syndrome (HFRS) worldwide. Currently, there is no effective vaccination or therapy available for the treatment of hantavirus, hence there is a dire need for research to formulate therapeutics for the disease. Computational vaccine designing is currently a highly accurate, time and cost-effective approach for designing effective vaccines against different diseases. In the current study, we shortlisted highly antigenic proteins i.e., envelope, and nucleoprotein from the proteome of hantavirus and subjected to the selection of highly antigenic epitopes to design of next-generation multi-epitope vaccine constructs. A highly antigenic and stable adjuvant was attached to the immune epitopes (T-cell, B-cell, and HTL) to design Env-Vac, NP-Vac, and Com-Vac constructs, which exhibit stronger antigenic, non-allergenic, and favorable physiochemical properties. Moreover, the 3D structures were predicted and docking analysis revealed robust interactions with the human Toll-like receptor 3 (TLR3) to initiate the immune cascade. The total free energy calculated for Env-Vac, NP-Vac, and Com-Vac was -50.02 kcal/mol, -24.13 kcal/mol, and -62.30 kcal/mol, respectively. In silico cloning, results demonstrated a CAI value for the Env-Vac, NP-Vac, and Com-Vac of 0.957, 0.954, and 0.956, respectively, while their corresponding GC contents were 65.1%, 64.0%, and 63.6%. In addition, the immune simulation results from three doses of shots released significant levels of IgG, IgM, interleukins, and cytokines, as well as antigen clearance over time, after receiving the vaccine and two booster doses. Our vaccines against Hantavirus were found to be highly immunogenic, inducing a robust immune response that demands experimental validation for clinical usage.

摘要

汉坦病毒属于布尼亚病毒科的单链 RNA 病毒,可引起全球范围内的汉坦病毒心肺综合征 (HCPS) 和肾综合征出血热 (HFRS)。目前,尚无针对汉坦病毒的有效疫苗或治疗方法,因此迫切需要研究制定针对该疾病的治疗方法。计算疫苗设计是目前针对不同疾病设计有效疫苗的一种高度准确、省时、经济有效的方法。在本研究中,我们从汉坦病毒的蛋白质组中筛选出高度抗原性的蛋白,即包膜和核蛋白,并对高度抗原性表位进行选择,以设计下一代多表位疫苗构建体。将高度抗原性和稳定的佐剂连接到免疫表位(T 细胞、B 细胞和 HTL)上,设计出 Env-Vac、NP-Vac 和 Com-Vac 构建体,这些构建体表现出更强的抗原性、非变应原性和良好的理化性质。此外,还预测了 3D 结构,对接分析显示与人类 Toll 样受体 3 (TLR3) 具有强大的相互作用,从而引发免疫级联反应。计算得出 Env-Vac、NP-Vac 和 Com-Vac 的总自由能分别为-50.02、-24.13 和-62.30 kcal/mol。计算机克隆结果表明,Env-Vac、NP-Vac 和 Com-Vac 的 CAI 值分别为 0.957、0.954 和 0.956,而它们相应的 GC 含量分别为 65.1%、64.0%和 63.6%。此外,三次注射剂量的免疫模拟结果表明,接种疫苗和两次加强剂量后,IgG、IgM、白细胞介素和细胞因子的水平以及抗原清除随时间显著升高。我们针对汉坦病毒的疫苗具有高度的免疫原性,可诱导出强烈的免疫反应,需要进行临床验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8eb1/11265663/e567c581a25a/pone.0305417.g001.jpg

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