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亨尼帕病毒对宿主细胞的识别:尼帕病毒G附着糖蛋白及其与ephrin-B3复合物的晶体结构

Host cell recognition by the henipaviruses: crystal structures of the Nipah G attachment glycoprotein and its complex with ephrin-B3.

作者信息

Xu Kai, Rajashankar Kanagalaghatta R, Chan Yee-Peng, Himanen Juha P, Broder Christopher C, Nikolov Dimitar B

机构信息

Structural Biology Program, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY 10021, USA.

出版信息

Proc Natl Acad Sci U S A. 2008 Jul 22;105(29):9953-8. doi: 10.1073/pnas.0804797105. Epub 2008 Jul 16.

Abstract

Nipah virus (NiV) and Hendra virus are the type species of the highly pathogenic paramyxovirus genus Henipavirus, which can cause severe respiratory disease and fatal encephalitis infections in humans, with case fatality rates approaching 75%. NiV contains two envelope glycoproteins, the receptor-binding G glycoprotein (NiV-G) that facilitates attachment to host cells and the fusion (F) glycoprotein that mediates membrane merger. The henipavirus G glycoproteins lack both hemagglutinating and neuraminidase activities and, instead, engage the highly conserved ephrin-B2 and ephrin-B3 cell surface proteins as their entry receptors. Here, we report the crystal structures of the NiV-G both in its receptor-unbound state and in complex with ephrin-B3, providing, to our knowledge, the first view of a paramyxovirus attachment complex in which a cellular protein is used as the virus receptor. Complex formation generates an extensive protein-protein interface around a protruding ephrin loop, which is inserted in the central cavity of the NiV-G beta-propeller. Analysis of the structural data reveals the molecular basis for the highly specific interactions of the henipavirus G glycoproteins with only two members (ephrin-B2 and ephrin-B3) of the very large ephrin family and suggests how they mediate in a unique fashion both cell attachment and the initiation of membrane fusion during the virus infection processes. The structures further suggest that the NiV-G/ephrin interactions can be effectively targeted to disrupt viral entry and provide the foundation for structure-based antiviral drug design.

摘要

尼帕病毒(NiV)和亨德拉病毒是高致病性副粘病毒属亨尼帕病毒的代表种,可导致人类严重的呼吸道疾病和致命的脑炎感染,病死率接近75%。尼帕病毒包含两种包膜糖蛋白,即促进与宿主细胞附着的受体结合G糖蛋白(NiV-G)和介导膜融合的融合(F)糖蛋白。亨尼帕病毒的G糖蛋白既缺乏血凝活性也缺乏神经氨酸酶活性,而是以高度保守的ephrin-B2和ephrin-B3细胞表面蛋白作为其进入受体。在此,我们报告了处于受体未结合状态以及与ephrin-B3形成复合物状态下的NiV-G的晶体结构,据我们所知,这首次展示了一种以细胞蛋白作为病毒受体的副粘病毒附着复合物。复合物的形成在一个突出的ephrin环周围产生了广泛的蛋白质-蛋白质界面,该环插入到NiV-Gβ-螺旋桨的中央腔中。对结构数据的分析揭示了亨尼帕病毒G糖蛋白仅与非常大的ephrin家族中的两个成员(ephrin-B2和ephrin-B3)发生高度特异性相互作用的分子基础,并表明它们如何以独特的方式在病毒感染过程中介导细胞附着和膜融合的起始。这些结构进一步表明,NiV-G/ephrin相互作用可以被有效地靶向破坏病毒进入,并为基于结构的抗病毒药物设计提供基础。

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