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N-Linked Glycosylation Status of Classical Swine Fever Virus Strain Brescia E2 Glycoprotein Influences Virulence in Swine▿

机译:猪瘟病毒布雷西亚E2糖蛋白菌株的N联糖基化状态影响猪的毒力▿

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摘要

E2 is one of the three envelope glycoproteins of classical swine fever virus (CSFV). Previous studies indicate that E2 is involved in several functions, including virus attachment and entry to target cells, production of antibodies, induction of protective immune response in swine, and virulence. Here, we have investigated the role of E2 glycosylation of the highly virulent CSFV strain Brescia in infection of the natural host. Seven putative glycosylation sites in E2 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 E2 glycoprotein would affect viral virulence/pathogenesis in swine. We observed that rescue of viable virus was completely impaired by removal of all putative glycosylation sites in E2 but restored when mutation N185A reverted to wild-type asparagine produced viable virus that was attenuated in swine. Single mutations of each of the E2 glycosylation sites showed that amino acid N116 (N1v virus) was responsible for BICv attenuation. N1v efficiently protected swine from challenge with virulent BICv at 3 and 28 days postinfection, suggesting that glycosylation of E2 could be modified for development of classical swine fever live attenuated vaccines.
机译:E2是经典猪瘟病毒(CSFV)的三种包膜糖蛋白之一。先前的研究表明,E2参与多种功能,包括病毒附着和进入靶细胞,抗体的产生,猪中保护性免疫应答的诱导以及毒力。在这里,我们研究了高毒力的CSFV布雷西亚菌株E2糖基化在自然宿主感染中的作用。通过CSFV布雷西亚感染性克隆(BICv)的定点诱变修饰E2中的七个假定的糖基化位点。获得了一组病毒突变体,并用于研究E2糖蛋白中假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,通过除去E2中所有假定的糖基化位点,完全可以拯救活病毒的拯救,但是当突变N185A恢复为野生型天冬酰胺后,在猪中减毒的活病毒恢复了。每个E2糖基化位点的单突变表明,氨基酸N116(N1v病毒)是BICv减毒的原因。在感染后3天和28天,N1v有效保护猪免受强效BICv攻击,这表明E2的糖基化可以被修饰以开发经典的猪瘟减毒活疫苗。

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