In silico identification of vaccine candidate from various screening methods against hepatitis C virus

V. Kaushik, Nidhi Sharma, Joginder Singh
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引用次数: 1

Abstract

Hepatitis C virus (HCV) being an infectious disease is prevalent in most parts of the world. Till date, no vaccine is being developed in the market for HCV. This paper focuses mainly on developing a peptide-based vaccine against HCV. The purpose for this study is taken to determine the suitable epitope with the help of Bioinformatics tools developed for designing a vaccine against infectious diseases such as HCV. In present work, T-cell epitope is taken into consideration, as it recognises the antigen that helps to generate peptide with the help of antigen presenting cell. With respect to T-cell epitope selection, high binding energy must be required for binding major histocompatibility complex molecule. Moreover, T-cell epitope were considered on the basis of conserved site, protease cleavage site, motif, as well as an excellent hydrophobic binding pocket with a high half-life of dissociation. In consideration to the mentioned criteria, the required bioinformatics tools are used which are designed to predict the epitopes from different envelope and non-structural proteins of HCV virus. On an average, 1,000 epitopes from various databases and tools were extracted, from which 11 adept epitopes were withdrawn virtually with a base of binding energy using MHC I and II molecule protein interaction. The best epitope predicted during study was IMYAPTIWV peptide of NS5A protein. The T-cell predicted epitope can be further used for later chore in vaccine discovery for HCV.
丙型肝炎病毒不同筛选方法候选疫苗的计算机鉴定
丙型肝炎病毒(HCV)是一种传染病,在世界大部分地区流行。到目前为止,市场上还没有开发丙肝病毒疫苗。本文主要研究丙肝病毒肽基疫苗的研制。本研究的目的是在生物信息学工具的帮助下确定合适的表位,这些工具用于设计针对丙型肝炎等传染病的疫苗。在目前的工作中,考虑到t细胞表位,因为它在抗原提呈细胞的帮助下识别有助于产生肽的抗原。在t细胞表位选择方面,结合主要组织相容性复合体分子需要较高的结合能。此外,基于保守位点、蛋白酶裂解位点、基序以及具有高解离半衰期的优异疏水结合袋,考虑了t细胞表位。考虑到上述标准,使用所需的生物信息学工具来预测HCV病毒不同包膜蛋白和非结构蛋白的表位。平均从各种数据库和工具中提取1000个表位,其中11个熟练的表位通过MHC I和II分子蛋白相互作用以结合能为基础提取。本研究预测的最佳表位为NS5A蛋白的IMYAPTIWV肽。t细胞预测的表位可以进一步用于HCV疫苗的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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