Institute of Biochemistry and Molecular Medicine, Medical Faculty, University of Bern, CH-3012 Bern, Switzerland.
Division of Neurological Sciences, Vetsuisse Faculty, University of Bern, CH-3001 Bern, Switzerland.
Proc Natl Acad Sci U S A. 2023 Feb 7;120(6):e2208866120. doi: 10.1073/pnas.2208866120. Epub 2023 Jan 30.
Canine distemper virus (CDV) is an enveloped RNA morbillivirus that triggers respiratory, enteric, and high incidence of severe neurological disorders. CDV induces devastating outbreaks in wild and endangered animals as well as in domestic dogs in countries associated with suboptimal vaccination programs. The receptor-binding tetrameric attachment (H)-protein is part of the morbilliviral cell entry machinery. Here, we present the cryo-electron microscopy (cryo-EM) structure and supramolecular organization of the tetrameric CDV H-protein ectodomain. The structure reveals that the morbilliviral H-protein is composed of three main domains: stalk, neck, and heads. The most unexpected feature was the inherent asymmetric architecture of the CDV H-tetramer being shaped by the neck, which folds into an almost 90° bent conformation with respect to the stalk. Consequently, two non-contacting receptor-binding H-head dimers, which are also tilted toward each other, are located on one side of an intertwined four helical bundle stalk domain. Positioning of the four protomer polypeptide chains within the neck domain is guided by a glycine residue (G158), which forms a hinge point exclusively in two protomer polypeptide chains. Molecular dynamics simulations validated the stability of the asymmetric structure under near physiological conditions and molecular docking showed that two receptor-binding sites are fully accessible. Thus, this spatial organization of the CDV H-tetramer would allow for concomitant protein interactions with the stalk and head domains without steric clashes. In summary, the structure of the CDV H-protein ectodomain provides new insights into the morbilliviral cell entry system and offers a blueprint for next-generation structure-based antiviral drug discovery.
犬瘟热病毒 (CDV) 是一种有包膜的 RNA 副黏病毒,可引发呼吸道、肠道,并导致高发病率的严重神经紊乱。CDV 会在与不理想的疫苗接种计划相关的国家中的野生和濒危动物以及家养犬中引发毁灭性的爆发。受体结合的四聚体附着 (H)-蛋白是副黏病毒细胞进入机制的一部分。在这里,我们展示了四聚体 CDV H-蛋白外域的冷冻电子显微镜 (cryo-EM) 结构和超分子组织。该结构表明,副黏病毒 H-蛋白由三个主要结构域组成:茎、颈和头部。最出乎意料的特征是 CDV H-四聚体的固有不对称结构由颈形成,颈相对于茎折叠成几乎 90°的弯曲构象。因此,两个不接触的受体结合 H-头部二聚体,也彼此倾斜,位于相互交织的四螺旋束茎结构域的一侧。位于颈部结构域内的四个原聚体多肽链的定位由甘氨酸残基 (G158) 指导,该残基仅在两个原聚体多肽链中形成铰链点。分子动力学模拟验证了在近生理条件下不对称结构的稳定性,分子对接表明两个受体结合位点完全可及。因此,CDV H-四聚体的这种空间组织将允许与茎和头部结构域同时进行蛋白相互作用,而不会发生空间冲突。总之,CDV H-蛋白外域的结构为副黏病毒细胞进入系统提供了新的见解,并为下一代基于结构的抗病毒药物发现提供了蓝图。