首页> 美国卫生研究院文献>Frontiers in Cellular and Infection Microbiology >Absence of an N-Linked Glycosylation Motif in the Glycoprotein of the Live-Attenuated Argentine Hemorrhagic Fever Vaccine Candid #1 Results in Its Improper Processing and Reduced Surface Expression
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Absence of an N-Linked Glycosylation Motif in the Glycoprotein of the Live-Attenuated Argentine Hemorrhagic Fever Vaccine Candid #1 Results in Its Improper Processing and Reduced Surface Expression

机译:活检阿根廷出血热疫苗糖蛋白糖蛋白中不存在N联糖基化基序导致其加工不当和表面表达降低

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摘要

Junin virus (JUNV), a highly pathogenic New World arenavirus, is the causative agent of Argentine hemorrhagic fever (AHF). The live-attenuated Candid #1 (Can) strain currently serves as a vaccine for at-risk populations. We have previously shown that the Can glycoprotein (GPC) gene is the primary gene responsible for attenuation in a guinea pig model of AHF. However, the mechanisms through which the GPC contributes to the attenuation of the Can strain remain unknown. A more complete understanding of the mechanisms underlying the attenuation and immunogenicity of the Can strain will potentially allow for the rational design of additional safe and novel vaccines. Here, we provide a detailed comparison of both RNA and protein expression profiles between both inter- and intra-segment chimeric JUNV recombinant clones expressing combinations of genes from the Can strain and the pathogenic Romero (Rom) strain. The recombinant viruses that express Can GPC, which were shown to be attenuated in guinea pigs, displayed different RNA levels and GPC processing patterns as determined by Northern and Western blot analyses, respectively. Analysis of recombinant viruses containing amino acid substitutions selected at different mouse brain passages during the generation of Can revealed that altered Can GPC processing was primarily due to the T168A substitution within G1, which eliminates an N-linked glycosylation motif. Incorporation of the T168A substitution in the Rom GPC resulted in a Can-like processing pattern of Rom GPC. In addition, JUNV GPCs containing T168A substitution were retained within the endoplasmic reticulum (ER) and displayed significantly lower cell surface expression than wild-type Rom GPC. Interestingly, the reversion A168T in Can GPC significantly increased GPC expression at the cell surface. Our results demonstrate that recombinant JUNV (rJUNV) expressing Can GPC display markedly different protein expression and elevated genomic RNA expression when compared to viruses expressing Rom GPC. Additionally, our findings indicate that the N-linked glycosylation motif at amino acid positions 166–168 is important for trafficking of JUNV GPC to the cell surface, and the elimination of this motif interferes with the GPC release from the ER.
机译:Junin病毒(JUNV)是一种高致病性的新大陆类鼻病毒,是阿根廷出血热(AHF)的病原体。目前,减毒活的Candid#1(Can)菌株可作为高危人群的疫苗。我们以前已经表明,Can糖蛋白(GPC)基因是负责AHF豚鼠模型减毒的主要基因。但是,GPC通过何种机制促进Can菌株的衰减仍然未知。对Can株减毒和免疫原性的潜在机制的更完整的了解将可能允许合理设计其他安全和新颖的疫苗。在这里,我们提供了片段间和片段内嵌合JUNV重组克隆之间RNA和蛋白质表达谱的详细比较,这些克隆表达Can菌株和致病性Romero(Rom)菌株的基因组合。表达Can GPC的重组病毒在豚鼠中表现出减毒作用,分别通过Northern和Western印迹分析确定了不同的RNA水平和GPC加工模式。对包含在Can生成过程中在不同小鼠脑部通道选择的氨基酸取代的重组病毒的分析表明,Can GPC加工过程的改变主要是由于G1中的T168A取代,从而消除了N-联糖基化基序。在Rom GPC中掺入T168A替代物会形成Rom GPC的Can-can加工模式。此外,含有T168A取代的JUNV GPC保留在内质网(ER)中,并且显示出的细胞表面表达明显低于野生型Rom GPC。有趣的是,Can GPC中的A168T回复显着增加了细胞表面GPC的表达。我们的结果表明,与表达Rom GPC的病毒相比,表达Can GPC的重组JUNV(rJUNV)显示出显着不同的蛋白质表达和较高的基因组RNA表达。此外,我们的研究结果表明,在166-168位氨基酸处的N-连接糖基化基序对于将JUNV GPC转运至细胞表面非常重要,并且消除该基序会干扰GPC从ER释放。

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