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A Recombinant Novirhabdovirus Presenting at the Surface the E Glycoprotein from West Nile Virus (WNV) Is Immunogenic and Provides Partial Protection against Lethal WNV Challenge in BALB/c Mice

机译:重组诺韦氏杆菌病毒在表面呈现出来自西尼罗河病毒(WNV)的E糖蛋白具有免疫原性可部分抵抗BALB / c小鼠的致命WNV攻击。

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摘要

West Nile Virus (WNV) is a zoonotic mosquito-transmitted flavivirus that can infect and cause disease in mammals including humans. Our study aimed at developing a WNV vectored vaccine based on a fish Novirhabdovirus, the Viral Hemorrhagic Septicemia virus (VHSV). VHSV replicates at temperatures lower than 20°C and is naturally inactivated at higher temperatures. A reverse genetics system has recently been developed in our laboratory for VHSV allowing the addition of genes in the viral genome and the recovery of the respective recombinant viruses (rVHSV). In this study, we have generated rVHSV vectors bearing the complete WNV envelope gene (EWNV) (rVHSV-EWNV) or fragments encoding E subdomains (either domain III alone or domain III fused to domain II) (rVHSV-DIIIWNV and rVHSV-DII-DIIIWNV, respectively) in the VHSV genome between the N and P cistrons. With the objective to enhance the targeting of the EWNV protein or EWNV-derived domains to the surface of VHSV virions, Novirhadovirus G-derived signal peptide and transmembrane domain (SPG and TMG) were fused to EWNV at its amino and carboxy termini, respectively. By Western-blot analysis, electron microscopy observations or inoculation experiments in mice, we demonstrated that both the EWNV and the DIIIWNV could be expressed at the viral surface of rVHSV upon addition of SPG. Every constructs expressing EWNV fused to SPG protected 40 to 50% of BALB/cJ mice against WNV lethal challenge and specifically rVHSV-SPGEWNV induced a neutralizing antibody response that correlated with protection. Surprisingly, rVHSV expressing EWNV-derived domain III or II and III were unable to protect mice against WNV challenge, although these domains were highly incorporated in the virion and expressed at the viral surface. In this study we demonstrated that a heterologous glycoprotein and non membrane-anchored protein, can be efficiently expressed at the surface of rVHSV making this approach attractive to develop new vaccines against various pathogens.
机译:西尼罗河病毒(WNV)是一种由人畜共患病的蚊子传播的黄病毒,可感染包括人类在内的哺乳动物并引起疾病。我们的研究旨在开发基于鱼类Novirhabdovirus(病毒性败血病病毒)(VHSV)的WNV载体疫苗。 VHSV在低于20°C的温度下复制,并在更高的温度下自然失活。最近在我们的实验室中为VHSV开发了反向遗传学系统,可以在病毒基因组中添加基因并回收相应的重组病毒(rVHSV)。在这项研究中,我们产生了带有完整WNV包膜基因(EWNV)(rVHSV-EWNV)或编码E亚域的片段的rVHSV载体(单独的域III或与域II融合的域III)(rVHSV-DIIIWNV和rVHSV-DII- N和P个顺反子之间的VHSV基因组中的DIIIWNV。为了增强EWNV蛋白或EWNV衍生域对VHSV病毒体表面的靶向性,将Novirhadovirus G衍生的信号肽和跨膜域(SPG和TMG)分别在其氨基和羧基末端与EWNV融合。通过蛋白质印迹分析,电子显微镜观察或小鼠接种实验,我们证明添加SPG后EWNV和DIIIWNV均可在rVHSV的病毒表面表达。表达与SPG融合的EWNV的每种构建体均能保护40%至50%的BALB / cJ小鼠免受WNV致死性攻击,特别是rVHSV-SPGEWNV诱导了与保护相关的中和抗体应答。出乎意料的是,尽管rHHSV域高度整合在病毒体中并在病毒表面表达,但表达E 的rVHSV结构域III或II和III无法保护小鼠免受WNV攻击。在这项研究中,我们证明了异源糖蛋白和非膜锚定蛋白可以在rVHSV的表面有效表达,从而使该方法对开发针对各种病原体的新疫苗具有吸引力。

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