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丙型肝炎病毒包膜糖蛋白E1和E2的结构-功能分析

Structure-function analysis of hepatitis C virus envelope glycoproteins E1 and E2.

作者信息

Nayak Aparajita, Pattabiraman Nagarajan, Fadra Numrah, Goldman Radoslav, Kosakovsky Pond Sergei L, Mazumder Raja

机构信息

a Department of Biochemistry and Molecular Medicine , George Washington University , Washington , DC 20037 , USA.

出版信息

J Biomol Struct Dyn. 2015;33(8):1682-94. doi: 10.1080/07391102.2014.967300. Epub 2014 Oct 15.

Abstract

Hepatitis C virus (HCV) is the leading cause of chronic liver disease in humans. The envelope proteins of HCV are potential candidates for vaccine development. The absence of three-dimensional (3D) structures for the functional domain of HCV envelope proteins [E1.E2] monomer complex has hindered overall understanding of the virus infection, and also structure-based drug design initiatives. In this study, we report a 3D model containing both E1 and E2 proteins of HCV using the recently published structure of the core domain of HCV E2 and the functional part of E1, and investigate immunogenic implications of the model. HCV [E1.E2] molecule is modeled by using aa205-319 of E1 to aa421-716 of E2. Published experimental data were used to further refine the [E1.E2] model. Based on the model, we predict 77 exposed residues and several antigenic sites within the [E1.E2] that could serve as vaccine epitopes. This study identifies eight peptides which have antigenic propensity and have two or more sequentially exposed amino acids and 12 singular sites are under negative selection pressure that can serve as vaccine or therapeutic targets. Our special interest is 285FLVGQLFTFSPRRHW299 which has five negatively selected sites (L286, V287, G288, T292, and G303) with three of them sequential and four amino acids exposed (F285, L286, T292, and R296). This peptide in the E1 protein maps to dengue envelope vaccine target identified previously by our group. Our model provides for the first time an overall view of both the HCV envelope proteins thereby allowing researchers explore structure-based drug design approaches.

摘要

丙型肝炎病毒(HCV)是导致人类慢性肝病的主要原因。HCV包膜蛋白是疫苗开发的潜在候选对象。HCV包膜蛋白[E1.E2]单体复合物功能域三维(3D)结构的缺失阻碍了对病毒感染的全面理解,也阻碍了基于结构的药物设计计划。在本研究中,我们利用最近发表的HCV E2核心结构域和E1功能部分的结构,报告了一个包含HCV E1和E2蛋白的3D模型,并研究了该模型的免疫原性影响。HCV [E1.E2]分子通过使用E1的第205 - 319位氨基酸至E2的第421 - 716位氨基酸进行建模。已发表的实验数据用于进一步优化[E1.E2]模型。基于该模型,我们预测了[E1.E2]内77个暴露残基和几个可作为疫苗表位的抗原位点。本研究确定了八个具有抗原倾向且有两个或更多连续暴露氨基酸的肽段,以及12个处于负选择压力下可作为疫苗或治疗靶点的单个位点。我们特别感兴趣的是285FLVGQLFTFSPRRHW299,它有五个负选择位点(L286、V287、G288、T292和G303),其中三个是连续的,四个氨基酸暴露(F285、L286、T292和R296)。E1蛋白中的这个肽段与我们团队之前确定的登革热包膜疫苗靶点相对应。我们的模型首次提供了HCV包膜蛋白的整体视图,从而使研究人员能够探索基于结构的药物设计方法。

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