Department of Biochemistry, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland.
ChemMedChem. 2010 Jul 5;5(7):1007-14. doi: 10.1002/cmdc.201000085.
A procedure based on semi-empirical quantum mechanical (QM) calculations of interaction energy is proposed for the rapid screening of compound poses generated by high-throughput docking. Small molecules (consisting of 2-10 atoms and termed "probes") are overlapped with polar groups in the binding site of the protein target. The interaction energy values between each compound pose and the probes, calculated by a semi-empirical Hamiltonian, are used as filters. The QM probe method does not require fixed partial charges and takes into account polarization and charge-transfer effects which are not captured by conventional force fields. The procedure is applied to screen approximately 100 million poses (of 2.7 million commercially available compounds) obtained by high-throughput docking in the ATP binding site of the tyrosine kinase erythropoietin-producing human hepatocellular carcinoma receptor B4 (EphB4). Three QM probes on the hinge region and one at the entrance pocket are employed to select for binding affinity, while a QM probe on the side chain of the so-called gatekeeper residue (a hypervariable residue in the kinome) is used to enforce selectivity. The poses with favorable interactions with the five QM probes are filtered further for hydrophobic matching and low ligand strain. In this way, a single-digit micromolar inhibitor of EphB4 with a relatively good selectivity profile is identified in a multimillion-compound library upon experimental tests of only 23 molecules.
提出了一种基于半经验量子力学(QM)计算相互作用能的方法,用于快速筛选高通量对接生成的化合物构象。小分子(由 2-10 个原子组成,称为“探针”)与蛋白质靶标结合位点中的极性基团重叠。用半经验哈密顿量计算每个化合物构象与探针之间的相互作用能值,并用作筛选器。QM 探针方法不需要固定的部分电荷,并考虑了传统力场无法捕捉的极化和电荷转移效应。该方法应用于筛选约 1 亿个构象(来自 270 万种商业上可获得的化合物),这些构象是通过酪氨酸激酶促红细胞生成素产生的人肝癌细胞受体 B4(EphB4)的 ATP 结合位点的高通量对接获得的。在 hinge 区域使用三个 QM 探针和一个在入口口袋的探针来选择结合亲和力,而在所谓的“守门员残基”(激酶组中的一个高变残基)的侧链上使用一个 QM 探针来增强选择性。与五个 QM 探针有良好相互作用的构象进一步进行疏水性匹配和低配体应变筛选。通过仅对 23 种分子进行实验测试,从数百万种化合物库中鉴定出 EphB4 的单位数微摩尔抑制剂,其选择性特征相对较好。