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N-linked glycosylation alteration in E1 glycoprotein of classical swine fever virus and novel classical swine fever virus vaccine

机译:猪瘟病毒和新型猪瘟病毒疫苗E1糖蛋白的N连锁糖基化改变

摘要

E1, along with Erns and E2 is one of the three envelope glycoproteins of Classical Swine Fever Virus (CSFV). Our previous studies indicated that glycosylation status of either E2 or Erns strongly influence viral virulence in swine. Here, we have investigated the role of E1 glycosylation of highly virulent CSFV strain Brescia during infection in the natural host. The three putative glycosylation sites in E1 were modified by site directed mutagenesis of a CSFV Brescia infectious clone (BICv). A panel of virus mutants was obtained and used to investigate whether the removal of putative glycosylation sites in the E1 glycoprotein would affect viral virulence/pathogenesis in swine. We observed that rescue of viable virus was completely impaired by removal of all three putative glycosylation sites in E1. Single mutations of each of the E1 glycosylation sites showed that CSFV amino acid N594 (E1.N3 virus), as well the combined mutation of N500 and N513 (E1.N1N2 virus) resulted in BICv attenuation. Infection of either E1.N1N2 or E1.N3 viruses were able to efficiently protected swine from challenge with virulent BICv at 3 and 28 days post-infection. These results, along with those demonstrating the role of glycosylation of Erns and E2, suggest that manipulation of the pattern of glycosylation could be a useful tool for development of CSF live-attenuated vaccines.
机译:E1与Erns和E2一起是经典猪瘟病毒(CSFV)的三种包膜糖蛋白之一。我们以前的研究表明,E2或Erns的糖基化状态强烈影响猪的病毒毒力。在这里,我们已经调查了在自然宿主感染过程中高毒力CSFV菌株布雷西亚E1糖基化的作用。 E1中的三个假定的糖基化位点通过CSFV布雷西亚感染性克隆(BICv)的位点定向诱变进行了修饰。获得一组病毒突变体,并用于调查在E1糖蛋白中推定的糖基化位点的去除是否会影响猪的病毒毒力/发病机理。我们观察到,通过去除E1中所有三个假定的糖基化位点,完全拯救了活病毒的营救。每个E1糖基化位点的单突变表明CSFV氨基酸N594(E1.N3病毒)以及N500和N513的组合突变(E1.N1N2病毒)导致BICv减毒。 E1.N1N2或E1.N3病毒的感染能够在感染后3天和28天有效保护猪免受强效BICv攻击。这些结果以及证明E rns 和E2的糖基化作用的结果表明,操纵糖基化模式可能是开发CSF减毒疫苗的有用工具。

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