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狂犬病病毒多表位肽疫苗候选物的设计与构建

Design and construction of multi epitope- peptide vaccine candidate for rabies virus.

作者信息

Abdulhameed Odhar Hasanain, Hashim Ahmed Fadhil, Humadi Suhad Sami, Ahjel Salam Waheed

机构信息

Department of pharmacy, Al-Zahrawi University College, Karbala, Iraq.

出版信息

Bioinformation. 2023 Feb 28;19(2):167-177. doi: 10.6026/97320630019167. eCollection 2023.

Abstract

Rabies virus is a zoonotic pathogen that causes lethal encephalitis with a case fatality rate of almost 100% in unvaccinated individuals. The currently available vaccines against rabies are composed of inactivated viral particles that only confer a short-term immune response. It is well-known that the entry of rabies virus into host cells is mediated by a trimeric glycoprotein presents on the surface of viral envelope. As the sole viral surface protein, this trimeric glycoprotein represents a promising molecular target to design new vaccines and neutralizing antibodies against rabies virus. Epitope mapping studies had identified several antigenic sites on the surface of trimeric pre-fusion glycoprotein of rabies virus. Therefore, it is of interest to screen the rabies virus glycoprotein by different web-based immuno-informatics tools to identify potential B-cells and T-cells linear epitopes. Here, we present a construct of peptide vaccine that consists of these predicted linear epitopes of rabies virus glycoprotein together with appropriate linkers and adjuvant. Various online prediction tools, molecular docking and dynamics simulation assume that the vaccine construct may be stable, safe and effective. However, validation of these in-silico results is necessary both in vitro and in vivo setting.

摘要

狂犬病病毒是一种人畜共患病原体,可导致致命性脑炎,在未接种疫苗的个体中病死率几乎为100%。目前可用的狂犬病疫苗由灭活病毒颗粒组成,只能产生短期免疫反应。众所周知,狂犬病病毒进入宿主细胞是由病毒包膜表面的三聚体糖蛋白介导的。作为唯一的病毒表面蛋白,这种三聚体糖蛋白是设计新型狂犬病疫苗和中和抗体的一个有前景的分子靶点。表位作图研究已经确定了狂犬病病毒三聚体融合前糖蛋白表面的几个抗原位点。因此,利用不同的基于网络的免疫信息学工具筛选狂犬病病毒糖蛋白,以鉴定潜在的B细胞和T细胞线性表位具有重要意义。在此,我们展示了一种肽疫苗构建体,它由狂犬病病毒糖蛋白的这些预测线性表位以及合适的连接子和佐剂组成。各种在线预测工具、分子对接和动力学模拟表明,该疫苗构建体可能是稳定、安全和有效的。然而,这些计算机模拟结果在体外和体内环境中都需要进行验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d711/10560302/f62f37b87460/97320630019167F1.jpg

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