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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Alphavirus capsid proteins self-assemble into core-like particles in insect cells: A promising platform for nanoparticle vaccine development
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Alphavirus capsid proteins self-assemble into core-like particles in insect cells: A promising platform for nanoparticle vaccine development

机译:甲病毒衣壳蛋白自组装成昆虫细胞中的核样颗粒:纳米颗粒疫苗开发的有前途的平台

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摘要

The mosquito-borne chikungunya virus (CHIKV) causes arthritic diseases in humans, whereas the aquatic salmonid alphavirus (SAV) is associated with high mortality in aquaculture of salmon and trout. Using modern biotechnological approaches, promising vaccine candidates based upon highly immunogenic, enveloped virus-like particles (eVLPs) have been developed. However, the eVLP structure (core, lipid membrane, surface glycoproteins) is more complex than that of non-enveloped, protein-only VLPs, which are structurally and morphologically simple'. In order to develop an alternative to alphavirus eVLPs, in this paper we engineered recombinant baculovirus vectors to produce high levels of alphavirus core-like particles (CLPs) in insect cells by expression of the CHIKV and SAV capsid proteins. The CLPs localize in dense nuclear bodies within the infected cell nucleus and are purified through a rapid and scalable protocol involving cell lysis, sonication and low-speed centrifugation steps. Furthermore, an immunogenic epitope from the alphavirus E2 glycoprotein can be successfully fused to the N-terminus of the capsid protein without disrupting the CLP self-assembling properties. We propose that immunogenic epitope-tagged alphavirus CLPs produced in insect cells present a simple and perhaps more stable alternative to alphavirus eVLPs.
机译:蚊传基孔肯雅病毒(CHIKV)引起人类关节炎疾病,而水产鲑鱼甲病毒(SAV)与鲑鱼和鳟鱼水产养殖中的高死亡率有关。使用现代生物技术方法,已经开发了基于高度免疫原性,包膜病毒样颗粒(eVLP)的有前途的候选疫苗。然而,eVLP结构(核心,脂质膜,表面糖蛋白)比非包膜的仅蛋白质的VLP更为复杂,后者在结构和形态上都很简单。为了开发α病毒eVLP的替代品,在本文中我们设计了重组杆状病毒载体,通过表达CHIKV和SAV衣壳蛋白在昆虫细胞中产生高水平的α病毒核心样颗粒(CLP)。 CLP位于受感染细胞核内的致密核体中,并通过涉及细胞裂解,超声处理和低速离心步骤的快速且可扩展的方案进行纯化。此外,来自α病毒E2糖蛋白的免疫原性表位可以成功地融合到衣壳蛋白的N末端,而不会破坏CLP的自组装特性。我们建议在昆虫细胞中产生的带有免疫原性的抗原表位标记的α病毒CLP代表了α病毒eVLP的简单且可能更稳定的替代品。

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