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胡宁病毒的糖蛋白前体基因在阿根廷出血热的代表性动物模型中决定了罗梅罗毒株的毒力以及坎迪德1号毒株的减毒情况。

The glycoprotein precursor gene of Junin virus determines the virulence of the Romero strain and the attenuation of the Candid #1 strain in a representative animal model of Argentine hemorrhagic fever.

作者信息

Seregin Alexey V, Yun Nadezhda E, Miller Milagros, Aronson Judith, Smith Jennifer K, Walker Aida G, Smith Jeanon N, Huang Cheng, Manning John T, de la Torre Juan C, Paessler Slobodan

机构信息

Department of Pathology, University of Texas Medical Branch, Galveston, Texas, USA Galveston National Laboratory, University of Texas Medical Branch, Galveston, Texas, USA.

Department of Pathology, University of Texas Medical Branch, Galveston, Texas, USA Galveston National Laboratory, University of Texas Medical Branch, Galveston, Texas, USA Institute for Human Infections and Immunity, University of Texas Medical Branch, Galveston, Texas, USA.

出版信息

J Virol. 2015 Jun;89(11):5949-56. doi: 10.1128/JVI.00104-15. Epub 2015 Mar 25.

Abstract

UNLABELLED

The New World arenavirus Junin virus (JUNV) is the causative agent of Argentine hemorrhagic fever (AHF), a potentially deadly disease endemic to central regions of Argentina. The live-attenuated Candid #1 (Can) strain of JUNV is currently used to vaccinate the human population at risk. However, the mechanism of attenuation of this strain is still largely unknown. Therefore, the identification and functional characterization of viral genetic determinants dictating JUNV virulence or attenuation would significantly improve the understanding of the mechanisms underlying AHF and facilitate the development of novel, more effective, and safer vaccines. Here, we utilized a reverse genetics approach to generate recombinant JUNV (rJUNV) strains encoding different gene combinations of the pathogenic Romero (Rom) and attenuated Can strains of JUNV. All strains of rJUNV exhibited in vitro growth kinetics similar to those of their parental counterparts. Analysis of virulence of the rJUNV in a guinea pig model of lethal infection that closely reproduces the features of AHF identified the envelope glycoproteins (GPs) as the major determinants of pathogenesis and attenuation of JUNV. Accordingly, rJUNV strains expressing the full-length GPs of Rom and Can exhibited virulent and attenuated phenotypes, respectively, in guinea pigs. Mutation F427I in the transmembrane region of JUNV envelope glycoprotein GP2 has been shown to attenuate the neurovirulence of JUNV in suckling mice. We document that in the guinea pig model of AHF, mutation F427I in GP2 is also highly attenuating but insufficient to prevent virus dissemination and development of mild clinical and pathological symptoms, indicating that complete attenuation of JUNV requires additional mutations present in Can glycoprotein precursor (GPC).

IMPORTANCE

Development of antiviral strategies against viral hemorrhagic fevers, including AHF, is one of the top priorities within the Implementation Plan of the U.S. Department of Health and Human Services Public Health Emergency Medical Countermeasures Enterprise. Live-attenuated Candid #1 strain, derived from the 44th mouse brain passage of the prototype XJ strain of JUNV, has been demonstrated to be safe, immunogenic, and highly protective and is currently licensed for human use in Argentina. However, the bases for the attenuated phenotype of Candid #1 have not been established. Therefore, the identification and functional characterization of viral genetic factors implicated in JUNV pathogenesis and attenuation would significantly improve the understanding of the molecular mechanisms underlying AHF and facilitate the development of novel antiviral strategies.

摘要

未标记

新大陆沙粒病毒胡宁病毒(JUNV)是阿根廷出血热(AHF)的病原体,AHF是一种在阿根廷中部地区流行的潜在致命疾病。目前使用JUNV的减毒活疫苗株Candid #1(Can)对有感染风险的人群进行接种。然而,该毒株的减毒机制仍很大程度上未知。因此,鉴定决定JUNV毒力或减毒的病毒遗传决定因素并对其进行功能表征,将显著增进对AHF潜在机制的理解,并有助于开发新型、更有效且更安全的疫苗。在此,我们利用反向遗传学方法构建了编码致病的罗梅罗(Rom)株和减毒的Can株JUNV不同基因组合的重组JUNV(rJUNV)毒株。所有rJUNV毒株在体外的生长动力学与其亲本毒株相似。在一种能密切重现AHF特征的致死性感染豚鼠模型中对rJUNV的毒力进行分析,结果确定包膜糖蛋白(GPs)是JUNV发病机制和减毒的主要决定因素。相应地,表达Rom和Can全长GPs的rJUNV毒株在豚鼠中分别表现出有毒力和减毒的表型。已证明JUNV包膜糖蛋白GP2跨膜区的F427I突变可减弱JUNV在乳鼠中的神经毒力。我们证明,在AHF豚鼠模型中,GP2中的F427I突变也具有高度减毒作用,但不足以阻止病毒传播以及轻度临床和病理症状的出现,这表明JUNV的完全减毒需要Can糖蛋白前体(GPC)中存在的其他突变。

重要性

制定针对包括AHF在内的病毒性出血热的抗病毒策略,是美国卫生与公众服务部公共卫生应急医疗对策企业实施计划中的首要任务之一。源自JUNV原型XJ株第44代小鼠脑内传代的减毒活疫苗株Candid #1已被证明是安全、具有免疫原性且高度有效的,目前已在阿根廷获得人类使用许可。然而,Candid #1减毒表型的基础尚未明确。因此,鉴定与JUNV发病机制和减毒相关的病毒遗传因素并对其进行功能表征,将显著增进对AHF潜在分子机制的理解,并有助于开发新型抗病毒策略。

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