Reddy Tyler, Sansom Mark S P
Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, UK.
Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, UK.
Structure. 2016 Mar 1;24(3):375-82. doi: 10.1016/j.str.2015.12.011. Epub 2016 Jan 28.
The dengue virion is surrounded by an envelope of membrane proteins surrounding a lipid bilayer. We have combined the cryoelectron microscopy structures of the membrane proteins (PDB: 3J27) with a lipid bilayer whose composition is based on lipidomics data for insect cell membranes, to obtain a near-atomic resolution computational model of the envelope of the dengue virion. A coarse-grained molecular dynamics simulation on the microsecond timescale enables analysis of key biophysical properties of the dengue outer envelope. Properties analyzed include area per lipid values (for a spherical virion with a mixed lipid composition), bilayer thickness, and lipid diffusion coefficients. Despite the absence of cholesterol from the lipid bilayer, the virion exhibits biophysical robustness (slow lipid diffusion alongside stable bilayer thickness, virion diameter, and shape) that matches the cholesterol-rich membrane of influenza A, with similarly anomalous diffusion of lipids. Biophysical robustness of the envelope may confer resilience to environmental perturbations.
登革病毒粒子被一层围绕脂质双层的膜蛋白包膜所包围。我们将膜蛋白的冷冻电子显微镜结构(蛋白质数据银行编号:3J27)与基于昆虫细胞膜脂质组学数据的脂质双层相结合,以获得登革病毒粒子包膜的近原子分辨率计算模型。在微秒时间尺度上进行的粗粒度分子动力学模拟能够分析登革病毒外膜的关键生物物理特性。分析的特性包括每个脂质的面积值(对于具有混合脂质组成的球形病毒粒子)、双层厚度和脂质扩散系数。尽管脂质双层中没有胆固醇,但该病毒粒子表现出与甲型流感富含胆固醇的膜相匹配的生物物理稳健性(脂质扩散缓慢,同时双层厚度、病毒粒子直径和形状稳定),脂质也有类似的异常扩散。包膜的生物物理稳健性可能赋予其对环境扰动的恢复力。