Timmins Joanna, Schoehn Guy, Kohlhaas Christine, Klenk Hans-Dieter, Ruigrok Rob W H, Weissenhorn Winfríed
European Molecular Biology Laboratory, 6 rue Jules Horowitz, 38042 Grenoble, France.
Virology. 2003 Aug 1;312(2):359-68. doi: 10.1016/s0042-6822(03)00260-5.
The matrix protein VP40 from Ebola virus plays an important role in the assembly process of virus particles by interacting with cellular factors, cellular membranes, and the ribonuclearprotein particle complex. Here we show that the N-terminal domain of VP40 folds into a mixture of two different oligomeric states in vitro, namely hexameric and octameric ringlike structures, as detected by gel filtration chromatography, chemical cross-linking, and electron microscopy. Octamer formation depends largely on the interaction with nucleic acids, which in turn confers in vitro SDS resistance. Refolding experiments with a nucleic acid free N-terminal domain preparation reveal a mostly dimeric form of VP40, which is transformed into an SDS resistant octamer upon incubation with E. coli nucleic acids. In addition, we demonstrate that the N-terminal domain of Marburg virus VP40 also folds into ringlike structures, similar to Ebola virus VP40. Interestingly, Marburg virus VP40 rings reveal a high tendency to polymerize into rods composed of stacked rings. These results may suggest distinct roles for different oligomeric forms of VP40 in the filovirus life cycle.
埃博拉病毒的基质蛋白VP40通过与细胞因子、细胞膜和核糖核蛋白颗粒复合物相互作用,在病毒颗粒的组装过程中发挥重要作用。在此,我们表明,通过凝胶过滤色谱、化学交联和电子显微镜检测,VP40的N端结构域在体外折叠成两种不同寡聚状态的混合物,即六聚体和八聚体环状结构。八聚体的形成很大程度上取决于与核酸的相互作用,这反过来又赋予了体外抗SDS能力。用无核酸的N端结构域制剂进行的复性实验揭示了VP40主要为二聚体形式,与大肠杆菌核酸一起孵育后可转化为抗SDS的八聚体。此外,我们证明马尔堡病毒VP40的N端结构域也折叠成环状结构,类似于埃博拉病毒VP40。有趣的是,马尔堡病毒VP40环显示出高度聚合成由堆叠环组成的杆状结构的倾向。这些结果可能表明VP40的不同寡聚形式在丝状病毒生命周期中具有不同作用。