Zhou Shenggao, Rogers Kathleen E, de Oliveira César Augusto F, Baron Riccardo, Cheng Li-Tien, Dzubiella Joachim, Li Bo, McCammon J Andrew
Department of Mathematics and Center for Theoretical Biological Physics, University of California , San Diego, La Jolla, California 92093-0112, United States.
J Chem Theory Comput. 2013 Sep 10;9(9):4195-4204. doi: 10.1021/ct400232m. Epub 2013 Aug 1.
The synthetic host cucurbit[7]uril (CB[7]) binds aromatic guests or metal complexes with ultrahigh affinity compared with that typically displayed in protein-ligand binding. Due to its small size, CB[7] serves as an ideal receptor-ligand system for developing computational methods for molecular recognition. Here, we apply the recently developed variational implicit-solvent model (VISM), numerically evaluated by the level-set method, to study hydration effects in the high-affinity binding of the B2 bicyclo[2.2.2]octane derivative to CB[7]. For the unbound host, we find that the host cavity favors the hydrated state over the dry state due to electrostatic effects. For the guest binding, we find reasonable agreement to experimental binding affinities. Dissection of the individual VISM free-energy contributions shows that the major driving forces are water-mediated hydrophobic interactions and the intrinsic (vacuum) host-guest van der Waals interactions. These findings are in line with recent experiments and molecular dynamics simulations with explicit solvent. It is expected that the level-set VISM, with further refinement on the electrostatic descriptions, can efficiently predict molecular binding and recognition in a wide range of future applications.
合成主体葫芦[7]脲(CB[7])与芳香客体或金属配合物结合时,具有超高亲和力,相比之下,这种亲和力在蛋白质 - 配体结合中通常并不常见。由于其尺寸较小,CB[7]成为开发分子识别计算方法的理想受体 - 配体系统。在此,我们应用最近开发的变分隐式溶剂模型(VISM),通过水平集方法进行数值评估,以研究B2双环[2.2.2]辛烷衍生物与CB[7]高亲和力结合中的水合作用。对于未结合的主体,我们发现由于静电效应,主体空腔更倾向于水合状态而非干燥状态。对于客体结合,我们发现与实验结合亲和力有合理的一致性。对各个VISM自由能贡献的剖析表明,主要驱动力是水介导的疏水相互作用以及内在(真空)主体 - 客体范德华相互作用。这些发现与最近的实验以及显式溶剂分子动力学模拟结果一致。预计经过进一步完善静电描述的水平集VISM能够在未来广泛的应用中有效地预测分子结合和识别。