首页> 美国卫生研究院文献>Journal of Virology >Cysteines in the Stalk of the Nipah Virus G Glycoprotein Are Located in a Distinct Subdomain Critical for Fusion Activation
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Cysteines in the Stalk of the Nipah Virus G Glycoprotein Are Located in a Distinct Subdomain Critical for Fusion Activation

机译:Nipah病毒G糖蛋白茎中的半胱氨酸位于对融合激活至关重要的不同亚域中

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摘要

Paramyxoviruses initiate entry through the concerted action of the tetrameric attachment glycoprotein (HN, H, or G) and the trimeric fusion glycoprotein (F). The ectodomains of HN/H/G contain a stalk region important for oligomeric stability and for the F triggering resulting in membrane fusion. Paramyxovirus HN, H, and G form a dimer-of-dimers consisting of disulfide-linked dimers through their stalk domain cysteines. The G attachment protein stalk domain of the highly pathogenic Nipah virus (NiV) contains a distinct but uncharacterized cluster of three cysteine residues (C146, C158, C162). On the basis of a panoply of assays, we report that C158 and C162 of NiV-G likely mediate covalent subunit dimerization, while C146 mediates the stability of higher-order oligomers. For HN or H, mutation of stalk cysteines attenuates but does not abrogate the ability to trigger fusion. In contrast, the NiV-G stalk cysteine mutants were completely deficient in triggering fusion, even though they could still bind the ephrinB2 receptor and associate with F. Interestingly, all cysteine stalk mutants exhibited constitutive exposure of the Mab45 receptor binding-enhanced epitope, previously implicated in F triggering. The enhanced binding of Mab45 to the cysteine mutants relative to wild-type NiV-G, without the addition of the receptor, implicates the stalk cysteines in the stabilization of a pre-receptor-bound conformation and the regulation of F triggering. Sequence alignments revealed that the stalk cysteines were adjacent to a proline-rich microdomain unique to the Henipavirus genus. Our data propose that the cysteine cluster in the NiV-G stalk functions to maintain oligomeric stability but is more importantly involved in stabilizing a unique microdomain critical for triggering fusion.
机译:副粘病毒通过四聚体附着糖蛋白(HN,H或G)和三聚体融合糖蛋白(F)的协同作用启动进入。 HN / H / G的胞外域包含茎区域,该区域对于寡聚稳定性和F触发(导致膜融合)很重要。副粘病毒HN,H和G通过其茎域半胱氨酸形成由二硫键连接的二聚体组成的二聚体二聚体。高致病性尼帕病毒(NiV)的G附着蛋白茎域包含三个半胱氨酸残基(C146,C158,C162)的独特但未表征的簇。基于一系列检测,我们报道NiV-G的C158和C162可能介导共价亚基二聚化,而C146介导高阶低聚物的稳定性。对于HN或H,茎半胱氨酸的突变会减弱但不会消除触发融合的能力。相反,尽管NiV-G茎半胱氨酸突变体仍可以结合ephrinB2受体并与F结合,但它们在触发融合方面是完全不足的。有趣的是,所有半胱氨酸茎突变体均表现出Mab45受体结合增强抗原决定簇的组成性暴露。与F触发有关。相对于野生型NiV-G,Mab45与半胱氨酸突变体的结合增强,而没有添加受体,这意味着茎半胱氨酸参与了受体结合前构象的稳定和F触发的调控。序列比对揭示,茎半胱氨酸与富含肝炎病毒属的独特的富含脯氨酸的微结构域相邻。我们的数据表明,NiV-G茎中的半胱氨酸簇起维持寡聚稳定性的作用,但更重要的是参与稳定对触发融合至关重要的独特微区。

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