Yang Lei, Song Guang, Carriquiry Alicia, Jernigan Robert L
Program of Bioinformatics and Computational Biology, Department of Biochemistry, Biophysics, and Molecular Biology, L.H. Baker Center for Bioinformatics and Biological Statistics, Iowa State University, Ames, IA 50011, USA.
Structure. 2008 Feb;16(2):321-30. doi: 10.1016/j.str.2007.12.011.
The large number of available HIV-1 protease structures provides a remarkable sampling of conformations of the different conformational states, which can be viewed as direct structural information about the dynamics of the HIV-1 protease. After structure matching, we apply principal component analysis (PCA) to obtain the important apparent motions for both bound and unbound structures. There are significant similarities between the first few key motions and the first few low-frequency normal modes calculated from a static representative structure with an elastic network model (ENM), strongly suggesting that the variations among the observed structures and the corresponding conformational changes are facilitated by the low-frequency, global motions intrinsic to the structure. Similarities are also found when the approach is applied to an NMR ensemble, as well as to molecular dynamics (MD) trajectories. Thus, a sufficiently large number of experimental structures can directly provide important information about protein dynamics, but ENM can also provide similar sampling of conformations.
大量现有的HIV-1蛋白酶结构提供了不同构象状态的显著构象样本,这些构象状态可被视为有关HIV-1蛋白酶动力学的直接结构信息。在结构匹配之后,我们应用主成分分析(PCA)来获得结合态和游离态结构的重要表观运动。最初的几个关键运动与通过弹性网络模型(ENM)从静态代表性结构计算出的最初几个低频正常模式之间存在显著相似性,这强烈表明观察到的结构之间的差异以及相应的构象变化是由该结构固有的低频全局运动促成的。当该方法应用于核磁共振集合以及分子动力学(MD)轨迹时,也发现了相似性。因此,足够数量的实验结构可以直接提供有关蛋白质动力学的重要信息,但ENM也可以提供类似的构象样本。