首页> 美国卫生研究院文献>Journal of Virology >A Glycine-Rich Bovine Herpesvirus 5 (BHV-5) gE-Specific Epitope within the Ectodomain Is Important for BHV-5 Neurovirulence
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A Glycine-Rich Bovine Herpesvirus 5 (BHV-5) gE-Specific Epitope within the Ectodomain Is Important for BHV-5 Neurovirulence

机译:Ectodomain中富含甘氨酸的牛疱疹病毒5(BHV-5)gE特异性表位对BHV-5神经毒力很重要

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摘要

The bovine herpesvirus 5 (BHV-5) gE ectodomain contains a glycine-rich epitope coding region (gE5 epitope), residues 204 to 218, that is significantly different from the corresponding gE region of BHV-1. Deletion of the gE epitope significantly reduced the neurovirulence of BHV-5 in rabbits. Pulse-chase analyses revealed that the epitope-deleted and wild-type gE were synthesized as N-glycosylated endoglycosidase H-sensitive precursors with approximate molecular masses of 85 kDa and 86 kDa, respectively. Like the wild-type gE, epitope-deleted gE complexed with gI and was readily transported from the endoplasmic reticulum. Concomitantly, the epitope-deleted and wild-type gE acquired posttranslational modifications in the Golgi leading to an increased apparent molecular mass of 93-kDa (epitope-deleted gE) and 94-kDa (wild-type gE). The kinetics of mutant and wild-type gE processing were similar, and both mature proteins were resistant to endoglycosidase H but sensitive to glycopeptidase F. The gE epitope-deleted BHV-5 formed wild-type-sized plaques in MDBK cells, and the epitope-deleted gE was expressed on the cell surface. However, rabbits infected intranasally with gE epitope-deleted BHV-5 did not develop seizures, and only 20% of the infected rabbits showed mild neurological signs. The epitope-deleted virus replicated efficiently in the olfactory epithelium. However, within the brains of these rabbits there was a 10- to 20-fold reduction in infected neurons compared with the number of infected neurons within the brains of rabbits infected with the gE5 epitope-reverted and wild-type BHV-5. In comparison, 70 to 80% of the rabbits exhibited severe neurological signs when infected with the gE5 epitope-reverted and wild-type BHV-5. These results indicated that anterograde transport of the gE epitope-deleted virus from the olfactory receptor neurons to the olfactory bulb is defective and that, within the central nervous system, the gE5 epitope-coding region was required for expression of the full virulence potential of BHV-5.
机译:牛疱疹病毒5(BHV-5)gE胞外域包含一个富含甘氨酸的表位编码区(gE5表位),残基204至218,与BHV-1的相应gE区明显不同。 gE表位的删除显着降低了兔BHV-5的神经毒力。脉冲追踪分析显示,表位缺失的和野生型gE被合成为N-糖基化的内切糖苷酶H敏感前体,分子量分别约为85 kDa和86 kDa。像野生型gE一样,缺失表位的gE与gI复合并很容易从内质网转运。伴随地,表位缺失的和野生型gE在高尔基体中获得了翻译后修饰,导致表观分子量增加了93-kDa(表位缺失的gE)和94-kDa(野生型gE)。突变体和野生型gE加工的动力学相似,并且两种成熟蛋白均对内切糖苷酶H具有抵抗力,但对糖肽酶F敏感。缺失gE表位的BHV-5在MDBK细胞中形成了野生型大小的噬菌斑,并且该表位缺失的gE在细胞表面表达。然而,经gE表位缺失的BHV-5鼻内感染的兔子没有出现癫痫发作,只有20%的感染兔子显示出轻度的神经系统症状。删除了表位的病毒在嗅觉上皮中有效复制。但是,与用gE5表位回复的野生型BHV-5感染的兔脑内感染的神经元数量相比,在这些兔的脑内感染神经元减少了10至20倍。相比之下,当感染由gE5表位恢复的野生型BHV-5感染时,有70%至80%的兔子表现出严重的神经系统症状。这些结果表明,缺失gE表位的病毒从嗅觉受体神经元到嗅球的顺行转运是有缺陷的,并且在中枢神经系统内,表达gE5表位的区域需要表达BHV的全部毒力。 -5。

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