Munshi Parthapratim, Guru Row Tayur N
Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore 560012, India.
Acta Crystallogr B. 2006 Aug;62(Pt 4):612-26. doi: 10.1107/S0108768106017393. Epub 2006 Jul 12.
The topological features of the charge densities, rho(r), of three bioactive molecules, 2-thiouracil [2,3-dihydro-2-thioxopyrimidin-4(1H)-one], cytosine [4-aminopyrimidin-2(1H)-one] monohydrate and salicylic acid (2-hydroxybenzoic acid), have been determined from high-resolution X-ray diffraction data at 90 K. The corresponding results are compared with the periodic theoretical calculations, based on theoretical structure factors, performed using DFT (density-functional theory) at the B3LYP/6-31G** level. The molecules pack in the crystal lattices via weak intermolecular interactions as well as strong hydrogen bonds. All the chemical bonds, including the intra- and intermolecular interactions in all three compounds, have been quantitatively described by topological analysis based on Bader's quantum theory of 'Atoms In Molecules'. The roles of interactions such as C-H...O, C-H...S, C-H...pi and pi...pi have been investigated quantitatively in the presence of strong hydrogen bonds such as O-H...O, N-H...O and N-H...S, based on the criteria proposed by Koch and Popelier to characterize hydrogen bonds and van der Waals interactions. The features of weak intermolecular interactions, such as S...S in 2-thiouracil, the hydrogen bonds generated from the water molecule in cytosine monohydrate and the formation of the dimer via strong hydrogen bonds in salicylic acid, are highlighted on a quantum basis. Three-dimensional electrostatic potentials over the molecular surfaces emphasize the preferable binding sites in the structure and the interaction features of the atoms in the molecules, which are crucial for drug-receptor recognition.
通过在90K下的高分辨率X射线衍射数据,确定了三种生物活性分子(2-硫尿嘧啶[2,3-二氢-2-硫代嘧啶-4(1H)-酮]、胞嘧啶[4-氨基嘧啶-2(1H)-酮]一水合物和水杨酸(2-羟基苯甲酸))的电荷密度ρ(r)的拓扑特征。将相应结果与基于理论结构因子的周期性理论计算进行比较,该计算使用密度泛函理论(DFT)在B3LYP/6-31G**水平上进行。这些分子通过弱分子间相互作用以及强氢键堆积在晶格中。基于巴德的“分子中的原子”量子理论,通过拓扑分析对所有三种化合物中的所有化学键,包括分子内和分子间相互作用进行了定量描述。基于科赫和波佩利尔提出的表征氢键和范德华相互作用的标准,在存在O-H...O、N-H...O和N-H...S等强氢键的情况下,对C-H...O、C-H...S、C-H...π和π...π等相互作用的作用进行了定量研究。在量子基础上突出了弱分子间相互作用的特征,如2-硫尿嘧啶中的S...S、胞嘧啶一水合物中水分子产生的氢键以及水杨酸中通过强氢键形成的二聚体。分子表面的三维静电势强调了结构中优选的结合位点以及分子中原子的相互作用特征,这对于药物-受体识别至关重要。