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Orthobunyavirus Ultrastructure and the Curious Tripodal Glycoprotein Spike

机译:正念珠病毒超微结构和好奇的三脚架糖蛋白突增

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摘要

The genus Orthobunyavirus within the family Bunyaviridae constitutes an expanding group of emerging viruses, which threaten human and animal health. Despite the medical importance, little is known about orthobunyavirus structure, a prerequisite for understanding virus assembly and entry. Here, using electron cryo-tomography, we report the ultrastructure of Bunyamwera virus, the prototypic member of this genus. Whilst Bunyamwera virions are pleomorphic in shape, they display a locally ordered lattice of glycoprotein spikes. Each spike protrudes 18 nm from the viral membrane and becomes disordered upon introduction to an acidic environment. Using sub-tomogram averaging, we derived a three-dimensional model of the trimeric pre-fusion glycoprotein spike to 3-nm resolution. The glycoprotein spike consists mainly of the putative class-II fusion glycoprotein and exhibits a unique tripod-like arrangement. Protein–protein contacts between neighbouring spikes occur at membrane-proximal regions and intra-spike contacts at membrane-distal regions. This trimeric assembly deviates from previously observed fusion glycoprotein arrangements, suggesting a greater than anticipated repertoire of viral fusion glycoprotein oligomerization. Our study provides evidence of a pH-dependent conformational change that occurs during orthobunyaviral entry into host cells and a blueprint for the structure of this group of emerging pathogens.
机译:Bunyaviridae家族中的正痘病毒属构成了不断扩大的新兴病毒,威胁着人类和动物的健康。尽管具有医学上的重要性,但对于了解正畸病毒的结构(了解病毒组装和进入的先决条件)知之甚少。在这里,使用电子冷冻断层扫描,我们报告该属的原型成员Bunyamwera病毒的超微结构。尽管Bunyamwera病毒体的形状是多形的,但它们显示出糖蛋白刺突的局部有序晶格。每个尖峰从病毒膜突出18 nm,并在引入酸性环境后变得无序。使用子层析图平均,我们得出了三聚体融合前糖蛋白加标至3 nm分辨率的三维模型。糖蛋白刺突主要由推定的II类融合糖蛋白组成,并表现出独特的三脚架状排列。相邻尖峰之间的蛋白-蛋白接触发生在膜近端区域,而尖峰内接触发生在膜远端区域。此三聚体装配体与先前观察到的融合糖蛋白排列方式不同,表明病毒融合糖蛋白寡聚化比预期的要多。我们的研究提供了在正丁病毒进入宿主细胞期间发生的pH依赖性构象变化的证据,以及这组新兴病原体结构的蓝图。

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