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亨德拉病毒附着糖蛋白的二聚体结构:组装方式保守的证据。

Dimeric architecture of the Hendra virus attachment glycoprotein: evidence for a conserved mode of assembly.

机构信息

Division of Structural Biology, Wellcome Trust Centre for Human Genetics, University of Oxford, Roosevelt Drive, Oxford OX3 7BN, United Kingdom.

出版信息

J Virol. 2010 Jun;84(12):6208-17. doi: 10.1128/JVI.00317-10. Epub 2010 Apr 7.

Abstract

Hendra virus is a negative-sense single-stranded RNA virus within the Paramyxoviridae family which, together with Nipah virus, forms the Henipavirus genus. Infection with bat-borne Hendra virus leads to a disease with high mortality rates in humans. We determined the crystal structure of the unliganded six-bladed beta-propeller domain and compared it to the previously reported structure of Hendra virus attachment glycoprotein (HeV-G) in complex with its cellular receptor, ephrin-B2. As observed for the related unliganded Nipah virus structure, there is plasticity in the Glu579-Pro590 and Lys236-Ala245 ephrin-binding loops prior to receptor engagement. These data reveal that henipaviral attachment glycoproteins undergo common structural transitions upon receptor binding and further define the structural template for antihenipaviral drug design. Our analysis also provides experimental evidence for a dimeric arrangement of HeV-G that exhibits striking similarity to those observed in crystal structures of related paramyxovirus receptor-binding glycoproteins. The biological relevance of this dimer is further supported by the positional analysis of glycosylation sites from across the paramyxoviruses. In HeV-G, the sites lie away from the putative dimer interface and remain accessible to alpha-mannosidase processing on oligomerization. We therefore propose that the overall mode of dimer assembly is conserved for all paramyxoviruses; however, while the geometry of dimerization is rather closely similar for those viruses that bind flexible glycan receptors, significant (up to 60 degrees ) and different reconfigurations of the subunit packing (associated with a significant decrease in the size of the dimer interface) have accompanied the independent switching to high-affinity protein receptor binding in Hendra and measles viruses.

摘要

亨德拉病毒是副黏病毒科中的一种负义单链 RNA 病毒,与尼帕病毒一起构成亨德拉病毒属。感染蝙蝠携带的亨德拉病毒会导致人类死亡率很高的疾病。我们测定了无配体六叶β-螺旋桨结构域的晶体结构,并将其与之前报道的亨德拉病毒附着糖蛋白(HeV-G)与细胞受体 Ephrin-B2 复合物的结构进行了比较。与相关的无配体尼帕病毒结构一样,在与受体结合之前,Glu579-Pro590 和 Lys236-Ala245 埃夫林结合环具有可塑性。这些数据表明,亨德拉病毒附着糖蛋白在与受体结合时经历常见的结构转变,并进一步定义了抗亨德拉病毒药物设计的结构模板。我们的分析还为 HeV-G 的二聚体排列提供了实验证据,该排列与在相关副粘病毒受体结合糖蛋白的晶体结构中观察到的排列非常相似。这种二聚体的生物学相关性进一步得到了跨副粘病毒糖基化位点位置分析的支持。在 HeV-G 中,这些位点位于假定的二聚体界面之外,并且在寡聚化时仍然可以接受α-甘露糖苷酶处理。因此,我们提出所有副粘病毒的总体二聚体组装模式都是保守的;然而,虽然那些结合灵活聚糖受体的病毒的二聚化几何形状非常相似,但在亨德拉病毒和麻疹病毒中独立切换到高亲和力蛋白受体结合时,亚基包装的显著(高达 60 度)和不同的重排(与二聚体界面的大小显著降低)伴随着发生。

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