Pang Yuan-Ping, Perola Emanuele, Xu Kun, Prendergast Franklyn G.
Mayo Clinic Cancer Center, Mayo Foundation for Medical Education and Research, 200 First Street SW, Rochester, Minnesota 55905.
J Comput Chem. 2001 Nov 30;22(15):1750-1771. doi: 10.1002/jcc.1129.
The completion of the Human Genome Project, the growing effort on proteomics, and the Structural Genomics Initiative have recently intensified the attention being paid to reliable computer docking programs able to identify molecules that can affect the function of a macromolecule through molecular complexation. We report herein an automated computer docking program, EUDOC, for prediction of ligand-receptor complexes from 3D receptor structures, including metalloproteins, and for identification of a subset enriched in drug leads from chemical databases. This program was evaluated from the standpoints of force field and sampling issues using 154 experimentally determined ligand-receptor complexes and four "real-life" applications of the EUDOC program. The results provide evidence for the reliability and accuracy of the EUDOC program. In addition, key principles underlying molecular recognition, and the effects of structural water molecules in the active site and different atomic charge models on docking results are discussed. Copyright 2001 John Wiley & Sons, Inc. J Comput Chem 22: 1750-1771, 2001
人类基因组计划的完成、蛋白质组学研究的不断深入以及结构基因组学计划,最近都使得人们更加关注可靠的计算机对接程序,这些程序能够通过分子络合作用识别出可影响大分子功能的分子。我们在此报告一种自动化计算机对接程序EUDOC,它可根据三维受体结构(包括金属蛋白)预测配体 - 受体复合物,并从化学数据库中识别出富含药物先导物的子集。使用154个实验确定的配体 - 受体复合物以及EUDOC程序的四个“实际应用”,从力场和采样问题的角度对该程序进行了评估。结果证明了EUDOC程序的可靠性和准确性。此外,还讨论了分子识别的关键原理,以及活性位点中结构水分子和不同原子电荷模型对接结果的影响。版权所有2001约翰威立父子公司。《计算化学杂志》2001年第22卷,第1750 - 1771页