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Structural analysis and insertion study reveal the ideal sites for surface displaying foreign peptides on a betanodavirus-like particle

机译:结构分析和插入研究揭示了理想的表面可将表面上的外源肽展示在类牛瘟病毒颗粒上

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摘要

Betanodavirus infection causes fatal disease of viral nervous necrosis in many cultured marine and freshwater fish worldwide and the virus-like particles (VLP) are effective vaccines against betanodavirus. But vaccine and viral vector designs of betanodavirus VLP based on their structures remain lacking. Here, the three-dimensional structure of orange-spotted grouper nervous necrosis virus (OGNNV) VLP (RBS) at 3.9 Å reveals the organization of capsid proteins (CP). Based on the structural results, seven putative important sites were selected to genetically insert a 6× histidine (His)-tag for VLP formation screen, resulting in four His-tagged VLP (HV) at positions N-terminus, Ala220, Pro292 and C-terminus. The His-tags of N-terminal HV (NHV) were concealed inside virions while those of 220HV and C-terminal HV (CHV) were displayed at the outer surface. NHV, 220HV and CHV maintained the same cell entry ability as RBS in the Asian sea bass (SB) cell line, indicating that their similar surface structures can be recognized by the cellular entry receptor(s). For application of vaccine design, chromatography-purified CHV could provoke NNV-specific antibody responses as strong as those of RBS in a sea bass immunization assay. Furthermore, in carrying capacity assays, N-terminus and Ala220 can only carry short peptides and C-terminus can even accommodate large protein such as GFP to generate fluorescent VLP (CGV). For application of a viral vector, CGV could be real-time visualized to enter SB cells in invasion study. All the results confirmed that the C-terminus of CP is a suitable site to accommodate foreign peptides for vaccine design and viral vector development.Electronic supplementary materialThe online version of this article (doi:10.1186/s13567-015-0294-9) contains supplementary material, which is available to authorized users.
机译:Betanodavirus感染在全世界许多人工养殖的​​海水和淡水鱼中引起致命的病毒性神经坏死病,而病毒样颗粒(VLP)是抗Betanodavirus的有效疫苗。但是仍然缺乏基于其结构的杆状病毒VLP的疫苗和病毒载体设计。在这里,橙斑石斑鱼神经坏死病毒(OGNNV)VLP(RBS)在3.9处的三维结构揭示了衣壳蛋白(CP)的组织。根据结构结果,选择了七个假定的重要位点,以遗传方式插入6×组氨酸(His)标签以进行VLP形成筛选,从而在N末端,Ala220,Pro292和C位置产生四个His标记的VLP(HV) -终点。 N端HV(NHV)的His标签隐藏在病毒体内部,而220HV和C端HV(CHV)的His标签则显示在外表面。 NHV,220HV和CHV在亚洲鲈鱼(SB)细胞系中保持与RBS相同的细胞进入能力,表明它们的相似表面结构可以被细胞进入受体识别。对于疫苗设计的应用,在海鲈免疫测定中,色谱纯化的CHV可以引起与RBS一样强的NNV特异性抗体反应。此外,在承载能力测定中,N末端和Ala220仅能携带短肽,而C末端甚至可以容纳大蛋白(例如GFP)以产生荧光VLP(CGV)。对于病毒载体的应用,可以实时观察CGV进入侵袭研究中的SB细胞。所有结果都证实CP的C端是容纳外源肽以进行疫苗设计和病毒载体开发的合适位点。电子补充材料本文的在线版本(doi:10.1186 / s13567-015-0294-9)包含补充信息资料,可供授权用户使用。

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