Department of Physics, Florida International University, Miami, Florida, 33199, USA.
Biomolecular Sciences Institute, Florida International University, Miami, Florida, 33199, USA.
Sci Rep. 2018 Jun 27;8(1):9776. doi: 10.1038/s41598-018-28077-7.
The Ebola filovirus causes severe hemorrhagic fever with a high fatality rate in humans. The primary structural matrix protein VP40 displays transformer-protein characteristics and exists in different conformational and oligomeric states. VP40 plays crucial roles in viral assembly and budding at the plasma membrane of the infected cells and is capable of forming virus-like particles without the need for other Ebola proteins. However, no experimental three-dimensional structure for any filovirus VP40 cylindrical assembly matrix is currently available. Here, we use a protein-protein docking approach to develop cylindrical assembly models for an Ebola virion and also for a smaller structural matrix that does not contain genetic material. These models match well with the 2D averages of cryo-electron tomograms of the authentic virion. We also used all-atom molecular dynamics simulations to investigate the stability and dynamics of the cylindrical models and the interactions between the side-by-side hexamers to determine the amino acid residues that are especially important for stabilizing the hexamers in the cylindrical ring configuration matrix assembly. Our models provide helpful information to better understand the assembly processes of filoviruses and such structural studies may also lead to the design and development of antiviral drugs.
埃博拉丝状病毒会导致人类出现严重的出血热,并伴有高死亡率。主要结构基质蛋白 VP40 表现出转化蛋白的特征,并存在于不同的构象和寡聚状态。VP40 在受感染细胞的质膜处的病毒组装和出芽过程中发挥关键作用,并且无需其他埃博拉蛋白即可形成病毒样颗粒。然而,目前尚无任何丝状病毒 VP40 圆柱形组装基质的实验三维结构。在这里,我们使用蛋白-蛋白对接方法为埃博拉病毒粒子和不包含遗传物质的较小结构基质开发了圆柱形组装模型。这些模型与真实病毒粒子的冷冻电镜断层扫描 2D 平均值非常吻合。我们还使用全原子分子动力学模拟来研究圆柱形模型的稳定性和动力学以及并排六聚体之间的相互作用,以确定对稳定六聚体在圆柱形环构象基质组装中特别重要的氨基酸残基。我们的模型提供了有助于更好地了解丝状病毒组装过程的信息,并且这种结构研究也可能导致抗病毒药物的设计和开发。