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通过计算机模拟方法在埃博拉病毒核蛋白中鉴定出一个高度保守的GEQYQQLR表位。

A Highly Conserved GEQYQQLR Epitope Has Been Identified in the Nucleoprotein of Ebola Virus by Using an In Silico Approach.

作者信息

Ali Mohammad Tuhin, Islam Md Ohedul

机构信息

Department of Biochemistry and Molecular Biology, University of Dhaka, Dhaka 1000, Bangladesh.

出版信息

Adv Bioinformatics. 2015;2015:278197. doi: 10.1155/2015/278197. Epub 2015 Feb 1.

Abstract

Ebola virus (EBOV) is a deadly virus that has caused several fatal outbreaks. Recently it caused another outbreak and resulted in thousands afflicted cases. Effective and approved vaccine or therapeutic treatment against this virus is still absent. In this study, we aimed to predict B-cell epitopes from several EBOV encoded proteins which may aid in developing new antibody-based therapeutics or viral antigen detection method against this virus. Multiple sequence alignment (MSA) was performed for the identification of conserved region among glycoprotein (GP), nucleoprotein (NP), and viral structural proteins (VP40, VP35, and VP24) of EBOV. Next, different consensus immunogenic and conserved sites were predicted from the conserved region(s) using various computational tools which are available in Immune Epitope Database (IEDB). Among GP, NP, VP40, VP35, and VP30 protein, only NP gave a 100% conserved GEQYQQLR B-cell epitope that fulfills the ideal features of an effective B-cell epitope and could lead a way in the milieu of Ebola treatment. However, successful in vivo and in vitro studies are prerequisite to determine the actual potency of our predicted epitope and establishing it as a preventing medication against all the fatal strains of EBOV.

摘要

埃博拉病毒(EBOV)是一种致命病毒,已引发多次致命疫情。最近它又引发了一次疫情,导致数千人感染。目前仍缺乏针对该病毒的有效且已获批的疫苗或治疗方法。在本研究中,我们旨在预测几种埃博拉病毒编码蛋白中的B细胞表位,这可能有助于开发针对该病毒的新型基于抗体的治疗方法或病毒抗原检测方法。对埃博拉病毒的糖蛋白(GP)、核蛋白(NP)和病毒结构蛋白(VP40、VP35和VP24)进行了多序列比对(MSA)以鉴定保守区域。接下来,使用免疫表位数据库(IEDB)中可用的各种计算工具,从保守区域预测不同的共有免疫原性和保守位点。在GP、NP、VP40、VP35和VP30蛋白中,只有NP给出了一个100%保守的GEQYQQLR B细胞表位,该表位满足有效B细胞表位的理想特征,并可能在埃博拉治疗领域开辟一条道路。然而,成功的体内和体外研究是确定我们预测表位的实际效力并将其确立为针对所有致命埃博拉病毒株的预防药物的先决条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4255/4331325/c5ca38ae3075/ABI2015-278197.001.jpg

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