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The interplays between Crimean-Congo hemorrhagic fever virus (CCHFV) M segment-encoded accessory proteins and structural proteins promote virus assembly and infectivity

机译:克里米尔刚果出血热病毒(CCHFV)M段编码的辅助蛋白和结构蛋白质之间的相互作用促进了病毒组装和感染性

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摘要

Crimean-Congo hemorrhagic fever virus (CCHFV) is a tick-borne orthonairovirus that has become a serious threat to the public health. CCHFV has a single-stranded, tripartite RNA genome composed of L, M, and S segments. Cleavage of the M polyprotein precursor generates the two envelope glycoproteins (GPs) as well as three secreted nonstructural proteins GP38 and GP85 or GP160, representing GP38 only or GP38 linked to a mucin-like protein (MLD), and a double-membrane-spanning protein called NSm. Here, we examined the relevance of each M-segment non-structural proteins in virus assembly, egress and infectivity using a well-established CCHFV virus-like-particle system (tc-VLP). Deletion of MLD protein had no impact on infectivity although it reduced by 60% incorporation of GPs into particles. Additional deletion of GP38 abolished production of infectious tc-VLPs. The loss of infectivity was associated with impaired Gc maturation and exclusion from the Golgi, showing that Gn is not sufficient to target CCHFV GPs to the site of assembly. Consistent with this, efficient complementation was achieved in cells expressing MLD-GP38 in trans with increased levels of preGc to Gc conversion, co-targeting to the Golgi, resulting in particle incorporation and restored infectivity. Contrastingly, a MLD-GP38 variant retained in the ER allowed preGc cleavage but failed to rescue miss-localization or infectivity. NSm deletion, conversely, did not affect trafficking of Gc but interfered with Gc processing, particle formation and secretion. NSm expression affected N-glycosylation of different viral proteins most likely due to increased speed of trafficking through the secretory pathway. This highlights a potential role of NSm in overcoming Golgi retention and facilitating CCHFV egress. Thus, deletions of GP38 or NSm demonstrate their important role on CCHFV particle production and infectivity. GP85 is an essential viral factor for preGc cleavage, trafficking and Gc incorporation into particles, whereas NSm protein is involved in CCHFV assembly and virion secretion.
机译:克里米亚刚果出血热病毒(CCHFV)是蜱传统的正交病毒,已成为对公共卫生的严重威胁。 CCHFV具有由L,M和S段组成的单链的三方RNA基因组。 M多蛋白前体的切割产生两个包膜糖蛋白(GPS)以及三种分泌的非结构蛋白GP38和GP85或GP160,其仅为GP38或与粘蛋白样蛋白(MLD)连接的GP38,以及双膜跨越蛋白质称为NSM。在这里,我们使用良好建立的CCHFV病毒样粒子系统(TC-VLP)检查了每种M段非结构蛋白在病毒组件中的相关性,出口和感染性的相关性。缺失MLD蛋白对感染性没有影响,尽管它将GPS掺入颗粒中的60%减少。 GP38的额外删除废除了传染性TC-VLP的生产。感染性的丧失与GOLGI的GC成熟和排除有损,表明GN不足以将CCHFV GPS靶向组装部位。符合这一致的,在跨越MLD-GP38的细胞中实现了有效的互补,随着GOLGI的CO-GORGI的CO-GORGI水平增加,导致颗粒掺入和恢复的感染性。比较的是,保留在ER中的MLD-GP38变体允许PREGC切割,但未拯救错过局部化或感染性。 NSM删除,相反,不影响贩运GC但干扰GC加工,粒子形成和分泌。由于通过分泌途径的贩运速度增加,NSM表达影响了不同病毒蛋白的N-糖基化。这突出了NSM在克服Golgi保留和促进CCHFV出口时的潜在作用。因此,GP38或NSM的缺失证明了它们对CCHFV颗粒生产和感染性的重要作用。 GP85是PREGC切割,贩运和GC掺入颗粒的必要病毒因素,而NSM蛋白参与CCHFV组装和病毒虫分泌。

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