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首页> 外文期刊>MBio >Hepatitis C Virus Proteins Interact with the Endosomal Sorting Complex Required for Transport (ESCRT) Machinery via Ubiquitination To Facilitate Viral Envelopment
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Hepatitis C Virus Proteins Interact with the Endosomal Sorting Complex Required for Transport (ESCRT) Machinery via Ubiquitination To Facilitate Viral Envelopment

机译:丙型肝炎病毒蛋白通过泛素化与运输(ESCRT)机械所需的内体分选复合物相互作用,以促进病毒包膜

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ABSTRACT Enveloped viruses commonly utilize late-domain motifs, sometimes cooperatively with ubiquitin, to hijack the e ndosomal s orting c omplex r equired for t ransport (ESCRT) machinery for budding at the plasma membrane. However, the mechanisms underlying budding of viruses lacking defined late-domain motifs and budding into intracellular compartments are poorly characterized. Here, we map a network of hepatitis C virus (HCV) protein interactions with the ESCRT machinery using a mammalian-cell-based protein interaction screen and reveal nine novel interactions. We identify HRS (hepatocyte growth factor-regulated tyrosine kinase substrate), an ESCRT-0 complex component, as an important entry point for HCV into the ESCRT pathway and validate its interactions with the HCV nonstructural (NS) proteins NS2 and NS5A in HCV-infected cells. Infectivity assays indicate that HRS is an important factor for efficient HCV assembly. Specifically, by integrating capsid oligomerization assays, biophysical analysis of intracellular viral particles by continuous gradient centrifugations, proteolytic digestion protection, and RNase digestion protection assays, we show that HCV co-opts HRS to mediate a late assembly step, namely, envelopment. In the absence of defined late-domain motifs, K63-linked polyubiquitinated lysine residues in the HCV NS2 protein bind the HRS ubiquitin-interacting motif to facilitate assembly. Finally, ESCRT-III and VPS/VTA1 components are also recruited by HCV proteins to mediate assembly. These data uncover involvement of ESCRT proteins in intracellular budding of a virus lacking defined late-domain motifs and a novel mechanism by which HCV gains entry into the ESCRT network, with potential implications for other viruses. IMPORTANCE Viruses commonly bud at the plasma membrane by recruiting the host ESCRT machinery via conserved motifs termed late domains. The mechanism by which some viruses, such as HCV, bud intracellularly is, however, poorly characterized. Moreover, whether envelopment of HCV and other viruses lacking defined late domains is ESCRT mediated and, if so, what the entry points into the ESCRT pathway are remain unknown. Here, we report the interaction network of HCV with the ESCRT machinery and a critical role for HRS, an ESCRT-0 complex component, in HCV envelopment. Viral protein ubiquitination was discovered to be a signal for HRS binding and HCV assembly, thereby functionally compensating for the absence of late domains. These findings characterize how a virus lacking defined late domains co-opts ESCRT to bud intracellularly. Since the ESCRT machinery is essential for the life cycle of multiple viruses, better understanding of this virus-host interplay may yield targets for broad-spectrum antiviral therapies.
机译:摘要包膜病毒通常利用后域基序,有时与遍在蛋白协同作用,劫持等同于运输(ESCRT)机制的质体复合体,使其在质膜上萌芽。但是,缺乏明确的后期域基序和出芽进入细胞内区隔的病毒出芽的潜在机制却很差。在这里,我们使用基于哺乳动物细胞的蛋白质相互作用筛选图绘制了带有ESCRT机器的丙型肝炎病毒(HCV)蛋白质相互作用网络,并揭示了九种新颖的相互作用。我们将HRS(肝细胞生长因子调节的酪氨酸激酶底物)(一种ESCRT-0复合物)确定为HCV进入ESCRT途径的重要切入点,并验证其与HCV-中的HCV非结构性(NS)蛋白NS2和NS5A的相互作用被感染的细胞。感染性分析表明,HRS是有效进行HCV组装的重要因素。具体而言,通过整合衣壳寡聚化检测,通过连续梯度离心,蛋白水解消化保护和RNase消化保护检测对细胞内病毒颗粒的生物物理分析,我们表明HCV选择了HRS来介导组装后期,即包膜。在没有定义的后期结构域基序的情况下,HCV NS2蛋白中的K63连接的多泛素化赖氨酸残基与HRS泛素相互作用的基序结合,从而有助于组装。最后,HCRT蛋白还募集了ESCRT-III和VPS / VTA1组分来介导组装。这些数据揭示了ESCRT蛋白参与病毒的细胞内出芽的过程,该病毒缺乏明确的后域基序和一种新的机制,HCV通过这种新机制进入ESCRT网络,可能对其他病毒产生影响。重要信息病毒通常通过称为晚期结构域的保守基序募集宿主ESCRT机器,在质膜上发芽。但是,某些病毒(例如HCV)在细胞内发芽的机制尚不明确。此外,HCV和其他缺乏明确后期结构域的病毒的包封是否由ESCRT介导,如果这样,进入ESCRT途径的切入点仍是未知的。在这里,我们报告了HCV与ESCRT机器的相互作用网络,以及HCRT封装中HRS(ESCRT-0复杂组件)的关键作用。发现病毒蛋白泛素化是HRS结合和HCV组装的信号,从而在功能上补偿后期结构域的缺失。这些发现表征了缺乏确定的晚期结构域的病毒如何选择ESCRT在细胞内发芽。由于ESCRT机制对于多种病毒的生命周期至关重要,因此更好地了解这种病毒与宿主之间的相互作用可能会成为广谱抗病毒治疗的目标。

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