首页> 美国卫生研究院文献>PLoS Neglected Tropical Diseases >The Ectodomain of Glycoprotein from the Candid#1 Vaccine Strain of Junin Virus Rendered Machupo Virus Partially Attenuated in Mice Lacking IFN-αβ/γ Receptor
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The Ectodomain of Glycoprotein from the Candid#1 Vaccine Strain of Junin Virus Rendered Machupo Virus Partially Attenuated in Mice Lacking IFN-αβ/γ Receptor

机译:缺乏IFN-αβ/γ受体的小鼠的Junin病毒致敏的马丘波病毒1号坦率疫苗株糖蛋白的胞外域

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摘要

Machupo virus (MACV), a New World arenavirus, is the etiological agent of Bolivian hemorrhagic fever (BHF). Junin virus (JUNV), a close relative, causes Argentine hemorrhagic fever (AHF). Previously, we reported that a recombinant, chimeric MACV (rMACV/Cd#1-GPC) expressing glycoprotein from the Candid#1 (Cd#1) vaccine strain of JUNV is completely attenuated in a murine model and protects animals from lethal challenge with MACV. A rMACV with a single F438I substitution in the transmembrane domain (TMD) of GPC, which is equivalent to the F427I attenuating mutation in Cd#1 GPC, was attenuated in a murine model but genetically unstable. In addition, the TMD mutation alone was not sufficient to fully attenuate JUNV, indicating that other domains of the GPC may also contribute to the attenuation. To investigate the requirement of different domains of Cd#1 GPC for successful attenuation of MACV, we rescued several rMACVs expressing the ectodomain of GPC from Cd#1 either alone (MCg1), along with the TMD F438I substitution (MCg2), or with the TMD of Cd#1 (MCg3). All rMACVs exhibited similar growth curves in cultured cells. In mice, the MCg1 displayed significant reduction in lethality as compared with rMACV. The MCg1 was detected in brains and spleens of MCg1-infected mice and the infection was associated with tissue inflammation. On the other hand, all animals survived MCg2 and MCg3 infection without detectable levels of virus in various organs while producing neutralizing antibody against Cd#1. Overall our data suggest the indispensable role of each GPC domain in the full attenuation and immunogenicity of rMACV/Cd#1 GPC.
机译:Machupo病毒(MACV)是一种新世界的鼻病毒,是玻利维亚出血热(BHF)的病原体。亲戚朱宁病毒(JUNV)引起阿根廷出血热(AHF)。先前,我们报道了在鼠模型中,重组的嵌合MACV(rMACV / Cd#1-GPC)表达来自Candid#1(Cd#1)疫苗株的糖蛋白,在鼠模型中被完全减毒并保护动物免受MACV的致命攻击。在小鼠模型中,在GPC的跨膜结构域(TMD)中具有单个F438I取代的rMACV(在Cd#1 GPC中等同于F427I减毒突变)被减毒,但在遗传上不稳定。此外,仅TMD突变不足以完全减弱JUNV,这表明GPC的其他结构域也可能导致这种减弱。为了研究Cd#1 GPC不同域对成功衰减MACV的需求,我们从Cd#1单独(MCg1)连同TMD F438I替代(MCg2)或与Cd#1 GPC一起拯救了几个表达GPC胞外域的rMACV。 Cd#1(MCg3)的TMD。所有rMACV在培养的细胞中均表现出相似的生长曲线。在小鼠中,与rMACV相比,MCg1的致死率显着降低。在感染MCg1的小鼠的大脑和脾脏中检测到MCg1,该感染与组织炎症有关。另一方面,所有动物在产生针对Cd#1的中和抗体时,在各器官中均未检测到病毒水平,但在MCg2和MCg3感染中存活下来。总的来说,我们的数据表明每个GPC域在rMACV / Cd#1 GPC的完全衰减和免疫原性中起着不可或缺的作用。

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