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一种用于设计针对圣路易斯脑炎病毒的基于表位的肽疫苗的计算分析方法。

A computational assay to design an epitope-based Peptide vaccine against saint louis encephalitis virus.

作者信息

Hasan Md Anayet, Hossain Mehjabeen, Alam Md Jibran

机构信息

Department of Genetic Engineering and Biotechnology, Faculty of Biological Sciences, University of Chittagong, Chittagong, Bangladesh.

出版信息

Bioinform Biol Insights. 2013 Nov 24;7:347-55. doi: 10.4137/BBI.S13402. eCollection 2013.

Abstract

Saint Louis encephalitis virus, a member of the flaviviridae subgroup, is a culex mosquito-borne pathogen. Despite severe epidemic outbreaks on several occasions, not much progress has been made with regard to an epitope-based vaccine designed for Saint Louis encephalitis virus. The envelope proteins were collected from a protein database and analyzed with an in silico tool to identify the most immunogenic protein. The protein was then verified through several parameters to predict the T-cell and B-cell epitopes. Both T-cell and B-cell immunity were assessed to determine that the protein can induce humoral as well as cell-mediated immunity. The peptide sequence from 330-336 amino acids and the sequence REYCYEATL from the position 57 were found as the most potential B-cell and T-cell epitopes, respectively. Furthermore, as an RNA virus, one important thing was to establish the epitope as a conserved one; this was also done by in silico tools, showing 63.51% conservancy. The epitope was further tested for binding against the HLA molecule by computational docking techniques to verify the binding cleft epitope interaction. However, this is a preliminary study of designing an epitope-based peptide vaccine against Saint Louis encephalitis virus; the results awaits validation by in vitro and in vivo experiments.

摘要

圣路易斯脑炎病毒是黄病毒科亚组的成员,是一种由库蚊传播的病原体。尽管曾多次爆发严重疫情,但针对圣路易斯脑炎病毒设计的基于表位的疫苗进展甚微。从蛋白质数据库中收集包膜蛋白,并用计算机工具进行分析,以确定最具免疫原性的蛋白。然后通过几个参数对该蛋白进行验证,以预测T细胞和B细胞表位。评估了T细胞和B细胞免疫,以确定该蛋白可诱导体液免疫和细胞介导免疫。分别发现330 - 336氨基酸的肽序列和第57位的REYCYEATL序列是最具潜力的B细胞和T细胞表位。此外,作为一种RNA病毒,重要的是将该表位确定为保守表位;这也通过计算机工具完成,显示保守性为63.51%。通过计算对接技术进一步测试该表位与HLA分子的结合,以验证结合裂隙表位相互作用。然而,这是针对圣路易斯脑炎病毒设计基于表位的肽疫苗的初步研究;结果有待体外和体内实验验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fca6/3855041/ebe966a1b44e/bbi-7-2013-347f1.jpg

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