Laboratory of Physical Chemistry, Swiss Federal Institute of Technology, ETH, Zurich, Switzerland.
J Comput Aided Mol Des. 2011 Aug;25(8):709-16. doi: 10.1007/s10822-011-9453-x. Epub 2011 Jul 7.
Docking algorithms for computer-aided drug discovery and design often ignore or restrain the flexibility of the receptor, which may lead to a loss of accuracy of the relative free enthalpies of binding. In order to evaluate the contribution of receptor flexibility to relative binding free enthalpies, two host-guest systems have been examined: inclusion complexes of α-cyclodextrin (αCD) with 1-chlorobenzene (ClBn), 1-bromobenzene (BrBn) and toluene (MeBn), and complexes of DNA with the minor-groove binding ligands netropsin (Net) and distamycin (Dist). Molecular dynamics simulations and free energy calculations reveal that restraining of the flexibility of the receptor can have a significant influence on the estimated relative ligand-receptor binding affinities as well as on the predicted structures of the biomolecular complexes. The influence is particularly pronounced in the case of flexible receptors such as DNA, where a 50% contribution of DNA flexibility towards the relative ligand-DNA binding affinities is observed. The differences in the free enthalpy of binding do not arise only from the changes in ligand-DNA interactions but also from changes in ligand-solvent interactions as well as from the loss of DNA configurational entropy upon restraining.
计算机辅助药物发现和设计中的对接算法通常忽略或限制受体的灵活性,这可能导致结合的相对自由焓的准确性丧失。为了评估受体灵活性对相对结合自由焓的贡献,研究了两个主客体体系:α-环糊精(αCD)与 1-氯苯(ClBn)、1-溴苯(BrBn)和甲苯(MeBn)的包合物,以及 DNA 与小沟结合配体 netropsin(Net)和 distamycin(Dist)的复合物。分子动力学模拟和自由能计算表明,限制受体的灵活性会对估计的相对配体-受体结合亲和力以及生物分子复合物的预测结构产生重大影响。在受体如 DNA 等柔性受体的情况下,这种影响尤为明显,其中观察到 DNA 灵活性对相对配体-DNA 结合亲和力的贡献为 50%。结合自由焓的差异不仅源于配体-DNA 相互作用的变化,还源于配体-溶剂相互作用的变化以及在限制时 DNA 构象熵的损失。