Chemical and Physical Biology, Centro de Investigaciones Biológicas, CSIC, Ramiro de Maeztu 9, 28040 Madrid, Spain.
Chemistry. 2011 Apr 18;17(17):4821-9. doi: 10.1002/chem.201002872. Epub 2011 Mar 14.
The structural features of a representative set of five complexes of octyl α- and β-mannosides with some members of a new generation of chiral tripodal diaminopyrrolic receptors, namely, (R)-5 and (S)- and (R)-7, have been investigated in solution and in the solid state by a combined X-ray, NMR spectroscopy, and molecular modeling approach. In the solid state, the binding arms of the free receptors 7 delimit a cleft in which two solvent molecules are hydrogen bonded to the pyrrolic groups and to the benzenic scaffold. In a polar solvent (CD(3)CN), chemical shift and intermolecular NOE data, assisted by molecular modeling calculations, ascertained the binding modes of the interaction between the receptor and the glycoside for these complexes. Although a single binding mode was found to adequately describe the complex of the acyclic receptor 5 with the α-mannoside, for the complexes of the cyclic receptors 7 two different binding modes were required to simultaneously fit all the experimental data. In all cases, extensive binding through hydrogen bonding and CH-π interactions is responsible for the affinities measured in the same solvent. Furthermore, the binding modes closely account for the recognition preferences observed toward the anomeric glycosides and for the peculiar enantiodiscrimination properties exhibited by the chiral receptors.
采用 X 射线、NMR 光谱和分子建模相结合的方法,研究了一组具有代表性的五种辛基α-和β-甘露糖苷与新一代手性三脚架二氨基吡咯受体(即(R)-5 和(S)-和(R)-7)某些成员的复合物在溶液中和固态中的结构特征。在固态中,游离受体 7 的结合臂限定了一个缝隙,其中两个溶剂分子通过氢键与吡咯基团和苯环支架结合。在极性溶剂(CD(3)CN)中,化学位移和分子间 NOE 数据,辅以分子建模计算,确定了在这些复合物中受体与糖苷之间相互作用的结合模式。尽管发现单一的结合模式足以描述非环受体 5 与α-甘露糖苷的复合物,但对于环状受体 7 的复合物,需要两种不同的结合模式才能同时拟合所有实验数据。在所有情况下,通过氢键和 CH-π 相互作用的广泛结合负责在相同溶剂中测量的亲和力。此外,结合模式很好地解释了对端基糖苷的识别偏好以及手性受体表现出的特殊对映体选择性。