首页> 外文期刊>PLoS Pathogens >Interactome analysis of the lymphocytic choriomeningitis virus nucleoprotein in infected cells reveals ATPase Na+/K+ transporting subunit Alpha 1 and prohibitin as host-cell factors involved in the life cycle of mammarenaviruses
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Interactome analysis of the lymphocytic choriomeningitis virus nucleoprotein in infected cells reveals ATPase Na+/K+ transporting subunit Alpha 1 and prohibitin as host-cell factors involved in the life cycle of mammarenaviruses

机译:感染细胞淋巴细胞刺槐瘤病毒核蛋白的偶联分析显示ATP酶Na + / K +转运亚基α1,并作为哺乳动物血管生命周期中涉及宿主细胞因子的宿主细胞因子

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Several mammalian arenaviruses (mammarenaviruses) cause hemorrhagic fevers in humans and pose serious public health concerns in their endemic regions. Additionally, mounting evidence indicates that the worldwide-distributed, prototypic mammarenavirus, lymphocytic choriomeningitis virus (LCMV), is a neglected human pathogen of clinical significance. Concerns about human-pathogenic mammarenaviruses are exacerbated by of the lack of licensed vaccines, and current anti-mammarenavirus therapy is limited to off-label use of ribavirin that is only partially effective. Detailed understanding of virus/host-cell interactions may facilitate the development of novel anti-mammarenavirus strategies by targeting components of the host-cell machinery that are required for efficient virus multiplication. Here we document the generation of a recombinant LCMV encoding a nucleoprotein (NP) containing an affinity tag (rLCMV/Strep-NP) and its use to capture the NP-interactome in infected cells. Our proteomic approach combined with genetics and pharmacological validation assays identified ATPase Na+/K+ transporting subunit alpha 1 (ATP1A1) and prohibitin (PHB) as pro-viral factors. Cell-based assays revealed that ATP1A1 and PHB are involved in different steps of the virus life cycle. Accordingly, we observed a synergistic inhibitory effect on LCMV multiplication with a combination of ATP1A1 and PHB inhibitors. We show that ATP1A1 inhibitors suppress multiplication of Lassa virus and Candid#1, a live-attenuated vaccine strain of Junín virus, suggesting that the requirement of ATP1A1 in virus multiplication is conserved among genetically distantly related mammarenaviruses. Our findings suggest that clinically approved inhibitors of ATP1A1, like digoxin, could be repurposed to treat infections by mammarenaviruses pathogenic for humans.
机译:几种哺乳动物菌虫病毒(哺乳动物虫病毒)导致人类出血性繁荣,在其地方性地区造成严重的公共卫生问题。此外,安装证据表明全球分布的原型哺乳动物血管血病毒,淋巴细胞瘤训练炎病毒(LCMV)是临床意义的被忽略的人病原体。由于缺乏持牌疫苗,对人致病性哺乳动物捕获者的担忧加剧,目前的抗哺乳动物病毒疗法仅限于偏离标记使用利巴韦林,这仅是部分有效的。详细了解病毒/宿主细胞相互作用可以通过靶向有效病毒乘法所需的宿主细胞机械的组分来促进新的抗哺乳动物病毒策略的发展。在这里,我们记载编码含有亲和标签(RLCMV / STREP-NP)的核蛋白酶(NP)的重组LCMV的产生及其用于捕获受感染细胞中的NP-互蛋白酶。我们的蛋白质组学方法与遗传学和药理验证测定相结合,鉴定了ATPase Na + / K +转运亚基α1(ATP1A1)和Prohibitin(PHB)作为Pro病毒因子。基于细胞的测定揭示了ATP1A1和PHB涉及病毒生命周期的不同步骤。因此,我们观察到对LCMV倍增的协同抑制作用与ATP1A1和PHB抑制剂的组合。我们展示ATP1A1抑制剂抑制兰萨病毒和坦率#1的乘法,jun&#000的活衰减疫苗菌株; N病毒,表明在病毒繁殖中的ATP1A1在遗传相关的哺乳动物病毒中被保守。我们的研究结果表明,临床批准的ATP1A1的抑制剂,如Digoxin,可以重新培养,以治疗哺乳动物治疗人类的感染。

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