Department of Biochemistry and Molecular Biology, Penn State University, University Park, PA, 16802, USA.
Department of Medicine, Penn State University College of Medicine, Hershey, PA, 17033, USA.
Sci Rep. 2021 Feb 10;11(1):3498. doi: 10.1038/s41598-021-83076-5.
Human papillomavirus (HPV) is a significant health burden and leading cause of virus-induced cancers. HPV is epitheliotropic and its replication is tightly associated with terminal keratinocyte differentiation making production and purification of high titer virus preparations for research problematic, therefore alternative HPV production methods have been developed for virological and structural studies. In this study we use HPV16 quasivirus, composed of HPV16 L1/L2 capsid proteins with a packaged cottontail rabbit papillomavirus genome. We have achieved the first high resolution, 3.1 Å, structure of HPV16 by using a local subvolume refinement approach. The high resolution enabled us to build L1 unambiguously and identify L2 protein strands. The L2 density is incorporated adjacent to conserved L1 residues on the interior of the capsid. Further interpretation with our own software for Icosahedral Subvolume Extraction and Correlated Classification revealed flexibility, on the whole-particle level through diameter analysis and local movement with inter-capsomer analysis. Inter-capsomer expansion or contraction, governed by the connecting arms, showed no bias in the magnitude or direction of capsomer movement. We propose that papillomavirus capsids are dynamic and capsomers move as rigid bodies connected by flexible linkers. The resulting virus structure will provide a framework for continuing biochemical, genetic and biophysical research for papillomaviruses. Furthermore, our approach has allowed insight into the resolution barrier that has previously been a limitation in papillomavirus structural studies.
人乳头瘤病毒(HPV)是一个重大的健康负担,也是病毒引起癌症的主要原因。HPV 具有上皮嗜性,其复制与终末角质形成细胞分化密切相关,这使得研究用高滴度病毒制剂的生产和纯化成为一个问题,因此已经开发了替代 HPV 生产方法,用于病毒学和结构研究。在这项研究中,我们使用了 HPV16 准病毒,它由 HPV16 的 L1/L2 衣壳蛋白和包装的棉尾兔乳头瘤病毒基因组组成。我们使用局部子体积细化方法首次获得了 HPV16 的高分辨率、3.1Å 结构。高分辨率使我们能够明确构建 L1 并确定 L2 蛋白链。L2 密度与衣壳内部保守的 L1 残基相邻。进一步使用我们自己的二十面体子体积提取和相关分类软件进行解释,通过直径分析和整体粒子水平上的局部运动以及帽间分析,揭示了整体的灵活性。帽间的扩张或收缩由连接臂控制,帽间运动的幅度或方向没有偏向。我们提出乳头瘤病毒衣壳是动态的,帽间作为连接的刚性体移动,由柔性接头连接。所得病毒结构将为继续进行乳头瘤病毒的生化、遗传和生物物理研究提供框架。此外,我们的方法使我们能够深入了解以前一直是乳头瘤病毒结构研究的限制因素的分辨率障碍。