Yu Yanmin, Chipot Christophe, Cai Wensheng, Shao Xueguang
Department of Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, P R China.
J Phys Chem B. 2006 Mar 30;110(12):6372-8. doi: 10.1021/jp056751a.
The interaction of three cyclodextrins (CDs), viz. beta-CD, heptakis (2,6-di-O-methyl)-beta-CD (DM-beta-CD), and 2-hydroxypropyl-beta-CD (HP-beta-CD), with cholesterol was investigated using molecular dynamics (MD) simulations. The free energy along the reaction pathway delineating the inclusion of cholesterol into each CD was computed using the adaptive biasing force method. The association constant and the corresponding association free energy were derived by integrating the potential of mean force (PMF) over a representative ordering parameter. The results show that the free energy profiles possess two local minima corresponding to roughly equally probable binding modes. Among the three CDs, DM-beta-CD exhibits the highest propensity to associate with cholesterol. Ranking for binding cholesterol, viz. DM-beta-CD > HP-beta-CD > beta-CD, agrees nicely with experiment. Partitioning of the PMF into free energy components illuminates that entering of cholesterol into the CD cavity is driven mainly by electrostatic interactions, whereas deeper inclusion results from van der Waals forces and solvation effects. Additional MD simulations were performed to investigate the structural stability of the host-guest complexes near the free energy minima. The present results demonstrate that association of cholesterol and CDs follows two possible binding modes. Although the latter are thermodynamically favorable for all CDs, one of the two inclusion complexes appears to be preferred kinetically in the case of DM-beta-CD.
使用分子动力学(MD)模拟研究了三种环糊精(CDs),即β-环糊精、七(2,6-二-O-甲基)-β-环糊精(DM-β-环糊精)和2-羟丙基-β-环糊精(HP-β-环糊精)与胆固醇的相互作用。使用自适应偏置力方法计算了沿着描述胆固醇包含在每个CD中的反应路径的自由能。通过在代表性排序参数上对平均力势(PMF)进行积分,得出缔合常数和相应的缔合自由能。结果表明,自由能分布具有两个局部最小值,对应于大致同等可能的结合模式。在这三种CDs中,DM-β-环糊精与胆固醇缔合的倾向最高。胆固醇结合的排序,即DM-β-环糊精>HP-β-环糊精>β-环糊精,与实验结果非常吻合。将PMF划分为自由能成分表明,胆固醇进入CD腔主要由静电相互作用驱动,而更深层次的包含则来自范德华力和溶剂化效应。进行了额外的MD模拟,以研究自由能最小值附近主客体复合物的结构稳定性。目前的结果表明,胆固醇与CDs的缔合遵循两种可能的结合模式。尽管后者对所有CDs在热力学上都是有利的,但在DM-β-环糊精的情况下,两种包合物之一在动力学上似乎更受青睐。