Jiménez-Moreno Ester, Jiménez-Osés Gonzalo, Gómez Ana M, Santana Andrés G, Corzana Francisco, Bastida Agatha, Jiménez-Barbero Jesus, Asensio Juan Luis
Instituto de Química Orgánica (IQOG-CSIC) , Juan de la Cierva 3 , 28006 Madrid , Spain . Email:
Dept. Química and Centro de Investigación en Síntesis Química , Universidad de La Rioja , Logroño , Spain.
Chem Sci. 2015 Nov 1;6(11):6076-6085. doi: 10.1039/c5sc02108a. Epub 2015 Jul 30.
CH/π interactions play a key role in a large variety of molecular recognition processes of biological relevance. However, their origins and structural determinants in water remain poorly understood. In order to improve our comprehension of these important interaction modes, we have performed a quantitative experimental analysis of a large data set comprising 117 chemically diverse carbohydrate/aromatic stacking complexes, prepared through a dynamic combinatorial approach recently developed by our group. The obtained free energies provide a detailed picture of the structure-stability relationships that govern the association process, opening the door to the rational design of improved carbohydrate-based ligands or carbohydrate receptors. Moreover, this experimental data set, supported by quantum mechanical calculations, has contributed to the understanding of the main driving forces that promote complex formation, underlining the key role played by coulombic and solvophobic forces on the stabilization of these complexes. This represents the most quantitative and extensive experimental study reported so far for CH/π complexes in water.
CH/π相互作用在大量具有生物学相关性的分子识别过程中起着关键作用。然而,它们在水中的起源和结构决定因素仍知之甚少。为了增进我们对这些重要相互作用模式的理解,我们对一个包含117种化学性质各异的碳水化合物/芳香族堆积复合物的大数据集进行了定量实验分析,这些复合物是通过我们小组最近开发的动态组合方法制备的。所获得的自由能提供了支配缔合过程的结构-稳定性关系的详细图景,为合理设计改进的基于碳水化合物的配体或碳水化合物受体打开了大门。此外,这个由量子力学计算支持的实验数据集有助于理解促进复合物形成的主要驱动力,强调了库仑力和疏溶剂力在稳定这些复合物中所起的关键作用。这是迄今为止报道的关于水中CH/π复合物最具定量性和广泛性的实验研究。