Fisher C L, Tainer J A, Pique M E, Getzoff E D
Department of Molecular Biology, Research Institute of Scripps Clinic, La Jolla, CA 92037.
J Mol Graph. 1990 Sep;8(3):125-32, 145. doi: 10.1016/0263-7855(90)80052-h.
To study the effect of protein flexibility on electrostatic recognition, we have devised two novel computer graphic representations of the changes in the electrostatic field of a protein resulting from its internal motions. The atomic structure of Cu, Zn superoxide dismutase was minimized, and the 200 lowest frequency normal modes of the enzyme were determined. Individual and combined normal-mode vibrations were visualized interactively with the program Flex. Normal-mode motions are fast enough (approximately 10(-11) s cycle-1) to evade solvent damping, thus allowing long-range electrostatic interactions to dominate. The changing electrostatic environment of the protein was examined by animating precalculated frames of electrostatic field vectors with GRAMPS. With Vu, changes in electrostatic potential were displayed as variations in the color-coding of dots lying on a consensus surface that maintains the protein's shape. The consensus surface was calculated with the program Sphinx, and was derived from spherical harmonic approximations of expanded molecular surfaces. The ability to view the effects of molecular motions interactively should be useful in understanding the relationships of protein structure to function.
为了研究蛋白质柔性对静电识别的影响,我们设计了两种新颖的计算机图形表示法,用于呈现蛋白质内部运动引起的静电场变化。对铜锌超氧化物歧化酶的原子结构进行了能量最小化处理,并确定了该酶的200个最低频率的简正模式。通过Flex程序以交互方式可视化单个和组合的简正模式振动。简正模式运动速度足够快(约10^(-11) 秒/周期),能够避开溶剂阻尼,从而使长程静电相互作用占主导地位。利用GRAMPS对预先计算的静电场矢量帧进行动画处理,以此来研究蛋白质不断变化的静电环境。使用Vu时,静电势的变化以位于保持蛋白质形状的共表面上的点的颜色编码变化来显示。共表面是用Sphinx程序计算得出的,它源自扩展分子表面的球谐近似。以交互方式查看分子运动影响的能力,对于理解蛋白质结构与功能的关系应该是有用的。