Berglund A, De Rosa M C, Wold S
Laboratory of Molecular Biophysics, Oxford, U.K.
J Comput Aided Mol Des. 1997 Nov;11(6):601-12. doi: 10.1023/a:1007983320854.
Three categories of molecular flexibility are defined. A novel method of aligning partly flexible molecules with each other is described. The binding mode of one of these molecules to its receptor site was already well known from previous crystallographic studies, and this known binding mode was used to predict the binding mode of the other molecules at their receptor. The predictions were checked by comparison with previous observations, and were correct. Two novel methods were combined in this research. It was necessary to take account of the conformational changes which occur when each ligand molecule binds to the protein, and a new release of programme Grid was used for this. It was also necessary to analyse the Grid results in order to distinguish the role of each chemical group at the receptor site. This was done by applying hierarchical principal component analysis (Hi-PCA) methods to the descriptors obtained from Grid.
定义了三类分子柔性。描述了一种将部分柔性分子相互比对的新方法。其中一个分子与其受体位点的结合模式已从先前的晶体学研究中为人熟知,这种已知的结合模式被用于预测其他分子在其受体处的结合模式。通过与先前的观察结果进行比较来检验预测,结果是正确的。本研究中结合了两种新方法。有必要考虑每个配体分子与蛋白质结合时发生的构象变化,为此使用了程序Grid的新版本。还需要分析Grid结果,以区分受体位点上每个化学基团的作用。这是通过将层次主成分分析(Hi-PCA)方法应用于从Grid获得的描述符来完成的。