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用于产生表达胡宁病毒糖蛋白的重组嵌合塔卡里贝病毒的反向遗传系统的开发。

Development of a Reverse Genetic System to Generate Recombinant Chimeric Tacaribe Virus that Expresses Junín Virus Glycoproteins.

作者信息

Foscaldi Sabrina, Loureiro María Eugenia, Sepúlveda Claudia, Palacios Carlos, Forlenza María Belén, López Nora

机构信息

Centro de Virología Animal (CEVAN), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires C1428EGA, Argentina.

Laboratorio de Virología, Departamento de Química Biológica, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires C1428EGA, Argentina.

出版信息

Pathogens. 2020 Nov 13;9(11):948. doi: 10.3390/pathogens9110948.

Abstract

Mammarenaviruses are enveloped and segmented negative-stranded RNA viruses that comprise several pathogenic members associated with severe human hemorrhagic fevers. Tacaribe virus (TCRV) is the prototype for the New World group of mammarenaviruses and is not only naturally attenuated but also phylogenetically and antigenically related to all South American pathogenic mammarenaviruses, particularly the Junín virus (JUNV), which is the etiological agent of Argentinian hemorrhagic fever (AHF). Moreover, since TCRV protects guinea pigs and non-human primates from lethal challenges with pathogenic strains of JUNV, it has already been considered as a potential live-attenuated virus vaccine candidate against AHF. Here, we report the development of a reverse genetic system that relies on T7 polymerase-driven intracellular expression of the complementary copy (antigenome) of both viral S and L RNA segments. Using this approach, we successfully recovered recombinant TCRV (rTCRV) that displayed growth properties resembling those of authentic TCRV. We also generated a chimeric recombinant TCRV expressing the JUNV glycoproteins, which propagated similarly to wild-type rTCRV. Moreover, a controlled modification within the S RNA 5' non-coding terminal sequence diminished rTCRV propagation in a cell-type dependent manner, giving rise to new perspectives where the incorporation of additional attenuation markers could contribute to develop safe rTCRV-based vaccines against pathogenic mammarenaviruses.

摘要

沙粒病毒科病毒是有包膜的分节段负链RNA病毒,包含几种与严重人类出血热相关的致病成员。塔卡里贝病毒(TCRV)是新大陆沙粒病毒科病毒的原型,不仅自然减毒,而且在系统发育和抗原性上与所有南美致病性沙粒病毒相关,特别是胡宁病毒(JUNV),它是阿根廷出血热(AHF)的病原体。此外,由于TCRV能保护豚鼠和非人类灵长类动物免受JUNV致病株的致命攻击,它已被视为一种潜在的抗AHF减毒活病毒疫苗候选物。在此,我们报告了一种反向遗传系统的开发,该系统依赖于T7聚合酶驱动的病毒S和L RNA片段互补拷贝(反基因组)的细胞内表达。使用这种方法,我们成功地恢复了重组TCRV(rTCRV),其生长特性与天然TCRV相似。我们还构建了一种表达JUNV糖蛋白的嵌合重组TCRV,其增殖情况与野生型rTCRV相似。此外,S RNA 5'非编码末端序列内的可控修饰以细胞类型依赖的方式减少了rTCRV的增殖,这为引入额外的减毒标记以开发基于rTCRV的安全抗致病性沙粒病毒疫苗提供了新的思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa02/7696886/9a94cc3ba1da/pathogens-09-00948-g001.jpg

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