Agricultural Research Institute of the Hungarian Academy of Sciences, Department of Applied Genomics, H-2462 Martonvásár, Brunszvik u. 2. Hungary.
J Mol Graph Model. 2010 Feb 26;28(6):569-76. doi: 10.1016/j.jmgm.2009.12.002. Epub 2009 Dec 21.
The three-dimensional structures of two cucumovirus coat proteins (CP), namely Cucumber mosaic virus (CMV) and Tomato aspermy virus (TAV), were explored by molecular dynamics (MD) simulations. The N-terminal domain and the C-terminal tail of the CPs proved to be intrinsically unstructured protein regions in aqueous solution. The N-terminal alpha-helix had a partially unrolled conformation. The thermal factor analysis of the CP loop regions demonstrated that the CMV CP had more flexible loop regions than the TAV CP. The principal component analysis (PCA) of the MD trajectories showed that the first three eigenvectors represented the three main conformational motions in the CPs. The first motion components with the highest variance contribution described an opening movement between the hinge and the N-terminal domain of both CPs. The second eigenvector showed a closing motion, while the third eigenvector represented crosswise conformational fluctuations. These new findings, together with previous results, suggest that the hinge region of CPs plays a central role in the recognition and binding of viral RNA.
通过分子动力学(MD)模拟,研究了两种瓜类病毒外壳蛋白(CP)的三维结构,即黄瓜花叶病毒(CMV)和番茄不孕病毒(TAV)。CP 的 N 端结构域和 C 端尾部在水溶液中被证明是固有无规卷曲的蛋白质区域。CP 的 N 端α-螺旋具有部分展开的构象。CP 环区的热因子分析表明,CMV CP 比 TAV CP 具有更多的柔性环区。MD 轨迹的主成分分析(PCA)表明,前三个特征向量代表了 CP 中的三种主要构象运动。具有最高方差贡献的第一运动分量描述了 CP 铰链和 N 端结构域之间的开口运动。第二个特征向量显示了一个闭合运动,而第三个特征向量代表了横向构象波动。这些新发现与之前的结果一起表明,CP 的铰链区域在病毒 RNA 的识别和结合中起着核心作用。