Wang J, Kollman P A, Kuntz I D
Department of Pharmaceutical Chemistry, University of California, San Francisco 94143-0446, USA.
Proteins. 1999 Jul 1;36(1):1-19.
A flexible ligand docking protocol based on a divide-and-conquer strategy is investigated. This approach first separates total search space into conformation and orientation space. It uses a grid-based method to sample the conformation of an unbound ligand and to select the low-energy conformers. Rigid docking is then carried out to locate the low-energy binding orientations for these conformers. These docking structures are subsequently subjected to structure refinement including molecular mechanics minimization, conformational scanning at the binding site and a short period of molecular dynamics-based simulated annealing. This approach has been applied to twelve ligand-protein complexes with three to sixteen rotatable bonds. The docked lowest-energy structures have root mean square deviations ranging from 0.64 A to 2.01 A with respect to the corresponding crystal structures. The effect of atomic charges and van der Waals parameters on the docking results, and the role of the dielectric constant in the conformation sampling are discussed in detail. A fragment-based docking approach that takes advantages of the divide-and-conquer strategy has also been explored and the results are compared with those produced by a whole molecule-based approach.
研究了一种基于分治策略的灵活配体对接方案。该方法首先将总搜索空间分为构象空间和取向空间。它使用基于网格的方法对未结合配体的构象进行采样,并选择低能构象异构体。然后进行刚性对接,以确定这些构象异构体的低能结合取向。随后,对这些对接结构进行结构优化,包括分子力学最小化、结合位点的构象扫描以及基于分子动力学的短时间模拟退火。该方法已应用于具有3至16个可旋转键的12个配体-蛋白质复合物。对接的最低能量结构相对于相应晶体结构的均方根偏差范围为0.64 Å至2.01 Å。详细讨论了原子电荷和范德华参数对对接结果的影响,以及介电常数在构象采样中的作用。还探索了一种利用分治策略的基于片段的对接方法,并将结果与基于全分子的方法产生的结果进行了比较。