Montana Biotechnology Center, The University of Montana, Missoula, MT 59812, USA.
Viruses. 2012 Jan;4(1):83-101. doi: 10.3390/v4010083. Epub 2012 Jan 13.
Arenaviruses comprise a diverse family of enveloped negative-strand RNA viruses that are endemic to specific rodent hosts worldwide. Several arenaviruses cause severe hemorrhagic fevers in humans, including Junín and Machupo viruses in South America and Lassa fever virus in western Africa. Arenavirus entry into the host cell is mediated by the envelope glycoprotein complex, GPC. The virion is endocytosed on binding to a cell-surface receptor, and membrane fusion is initiated in response to physiological acidification of the endosome. As with other class I virus fusion proteins, GPC-mediated membrane fusion is promoted through a regulated sequence of conformational changes leading to formation of the classical postfusion trimer-of-hairpins structure. GPC is, however, unique among the class I fusion proteins in that the mature complex retains a stable signal peptide (SSP) as a third subunit, in addition to the canonical receptor-binding and fusion proteins. We will review the curious properties of the tripartite GPC complex and describe evidence that SSP interacts with the fusion subunit to modulate pH-induced activation of membrane fusion. This unusual solution to maintaining the metastable prefusion state of GPC on the virion and activating the class I fusion cascade at acidic pH provides novel targets for antiviral intervention.
沙粒病毒属于包膜负链 RNA 病毒大家族,在全球范围内局限于特定的啮齿动物宿主。有几种沙粒病毒会导致人类出现严重的出血热,包括南美洲的胡宁病毒和马丘波病毒,以及西非的拉萨热病毒。沙粒病毒进入宿主细胞是由包膜糖蛋白复合物 GPC 介导的。病毒颗粒与细胞表面受体结合后被内吞,然后在内体酸化时启动膜融合。与其他 I 类病毒融合蛋白一样,GPC 介导的膜融合是通过一系列调节的构象变化来促进的,这些变化导致形成经典的融合三聚体发夹结构。然而,GPC 在 I 类融合蛋白中是独一无二的,因为成熟的复合物除了具有经典的受体结合和融合蛋白外,还保留了一个稳定的信号肽(SSP)作为第三个亚基。我们将回顾三聚体 GPC 复合物的奇特性质,并描述证据表明 SSP 与融合亚基相互作用,调节 pH 诱导的膜融合激活。这种维持 GPC 在病毒上的亚稳定前融合状态并在酸性 pH 下激活 I 类融合级联反应的独特方法为抗病毒干预提供了新的靶点。