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Crystal Structure and Carbohydrate Analysis of Nipah Virus Attachment Glycoprotein: a Template for Antiviral and Vaccine Design

机译:Nipah病毒附着糖蛋白的晶体结构和碳水化合物分析:抗病毒和疫苗设计的模板。

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摘要

Two members of the paramyxovirus family, Nipah virus (NiV) and Hendra virus (HeV), are recent additions to a growing number of agents of emergent diseases which use bats as a natural host. Identification of ephrin-B2 and ephrin-B3 as cellular receptors for these viruses has enabled the development of immunotherapeutic reagents which prevent virus attachment and subsequent fusion. Here we present the structural analysis of the protein and carbohydrate components of the unbound viral attachment glycoprotein of NiV glycoprotein (NiV-G) at a 2.2-Å resolution. Comparison with its ephrin-B2-bound form reveals that conformational changes within the envelope glycoprotein are required to achieve viral attachment. Structural differences are particularly pronounced in the 579-590 loop, a major component of the ephrin binding surface. In addition, the 236-245 loop is rather disordered in the unbound structure. We extend our structural characterization of NiV-G with mass spectrometric analysis of the carbohydrate moieties. We demonstrate that NiV-G is largely devoid of the oligomannose-type glycans that in viruses such as human immunodeficiency virus type 1 and Ebola virus influence viral tropism and the host immune response. Nevertheless, we find putative ligands for the endothelial cell lectin, LSECtin. Finally, by mapping structural conservation and glycosylation site positions from other members of the paramyxovirus family, we suggest the molecular surface involved in oligomerization. These results suggest possible pathways of virus-host interaction and strategies for the optimization of recombinant vaccines.
机译:副粘病毒家族的两个成员,Nipah病毒(NiV)和Hendra病毒(HeV),是最近越来越多的以蝙蝠为天然宿主的突发疾病病原体的成员。将ephrin-B2和ephrin-B3鉴定为这些病毒的细胞受体已使开发能够防止病毒附着和随后融合的免疫治疗剂成为可能。在这里,我们以2.2Å的分辨率对NiV糖蛋白(NiV-G)的未结合病毒附着糖蛋白的蛋白质和碳水化合物成分进行结构分析。与其与ephrin-B2结合的形式的比较表明,包膜糖蛋白内的构象变化是实现病毒附着所必需的。结构差异在ephrin结合表面的主要成分579-590环中尤为明显。此外,236-245环的未结合结构相当混乱。我们通过对碳水化合物部分进行质谱分析来扩展NiV-G的结构表征。我们证明了NiV-G在很大程度上缺乏寡甘露糖型聚糖,这种病毒在诸如人类免疫缺陷病毒1型和埃博拉病毒等病毒中会影响病毒的向性和宿主免疫反应。然而,我们发现了内皮细胞凝集素LSECtin的推定配体。最后,通过映射副粘病毒家族其他成员的结构保守性和糖基化位点位置,我们建议参与寡聚的分子表面。这些结果表明病毒-宿主相互作用的可能途径和优化重组疫苗的策略。

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