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首页> 外文期刊>The Journal of biological chemistry >Mutations in the Putative Dimer-Dimer Interfaces of the Measles Virus Hemagglutinin Head Domain Affect Membrane Fusion Triggering
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Mutations in the Putative Dimer-Dimer Interfaces of the Measles Virus Hemagglutinin Head Domain Affect Membrane Fusion Triggering

机译:麻疹病毒血凝素头部域的推定二聚体 - 二聚体界面中的突变影响膜融合触发

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Measles virus (MV), an enveloped RNA virus belonging to the Paramyxoviridae family, enters the cell through membrane fusion mediated by two viral envelope proteins, an attachment protein hemagglutinin (H) and a fusion (F) protein. The crystal structure of the receptor-binding head domain of MV-H bound to its cellular receptor revealed that the MV-H head domain forms a tetrameric assembly (dimer of dimers), which occurs in two forms (forms I and II). In this study, we show that mutations in the putative dimer-dimer interface of the head domain in either form inhibit the ability of MV-H to support membrane fusion, without greatly affecting its cell surface expression, receptor binding, and interaction with the F protein. Notably, some anti-MV-H neutralizing monoclonal antibodies are directed to the region around the dimer-dimer interface in form I rather than receptor-binding sites. These observations suggest that the dimer-dimer interactions of the MV-H head domain, especially that in form I, contribute to triggering membrane fusion, and that conformational shift of head domain tetramers plays a role in the process. Furthermore, our results indicate that although the stalk and transmembrane regions may be mainly responsible for the tetramer formation of MV-H, the head domain alone can form tetramers, albeit at a low efficiency.
机译:麻疹病毒(MV)是属于副乳酰胺族家族的包裹的RNA病毒,通过由两个病毒包膜蛋白,附着蛋白质血凝素(H)和融合(F)蛋白介导的膜融合来进入细胞。与其细胞受体结合的MV-H的受体结合头结构域的晶体结构显示,MV-H头结构域形成四聚体组件(二聚体的二聚体),其以两种形式(I和II)形成。在该研究中,我们表明头部结构域的推定二聚体 - 二聚体界面中的突变在任一形式中抑制MV-H支持膜融合的能力,而不会大大影响其细胞表面表达,受体结合和与F的相互作用蛋白质。值得注意的是,一些抗MV-H中和单克隆抗体涉及到形式I而不是受体结合位点的二聚体二聚体界面周围的区域。这些观察结果表明,MV-H主结构域的二聚二聚体相互作用,尤其是在形式I中,有助于触发膜融合,并且头部结构域四聚体的构象变化在该过程中起着作用。此外,我们的结果表明,虽然茎和跨膜区主要负责MV-H的四聚体形成,但单独的头部结构域可以形成四聚体,尽管以低效率。

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