Horiuchi T, Go N
Protein Engineering Research Institute, Suita, Japan.
Proteins. 1991;10(2):106-16. doi: 10.1002/prot.340100204.
A method is presented to describe the internal motions of proteins obtained from molecular dynamics or Monte Carlo simulations as motions of normal mode variables. This method calculates normal mode variables by projecting trajectories of these simulations onto the axes of normal modes and expresses the trajectories as a linear combination of normal mode variables. This method is applied to the result of the molecular dynamics and the Monte Carlo simulations of human lysozyme. The motion of the lowest frequency mode extracted from the simulations represents the hinge bending motion very faithfully. Analysis of the obtained motions of the normal mode variables provides an explanation of the anharmonic aspects of protein dynamics as due first to the anharmonicity of the actual potential energy surface near a minimum and second to trans-minimum conformational changes.
本文提出了一种方法,将分子动力学或蒙特卡罗模拟得到的蛋白质内部运动描述为简正模式变量的运动。该方法通过将这些模拟的轨迹投影到简正模式轴上计算简正模式变量,并将轨迹表示为简正模式变量的线性组合。该方法应用于人类溶菌酶的分子动力学和蒙特卡罗模拟结果。从模拟中提取的最低频率模式的运动非常忠实地代表了铰链弯曲运动。对所获得的简正模式变量运动的分析解释了蛋白质动力学的非谐性,这首先是由于最小值附近实际势能面的非谐性,其次是由于越过最小值的构象变化。