Joshi Kaustubh A, Patil Dinannath D, Gejji Shridhar P
Department of Chemistry, University of Pune, Pune, 411 007, India.
J Mol Model. 2009 Apr;15(4):383-90. doi: 10.1007/s00894-008-0411-z. Epub 2008 Dec 9.
Hydroxyquinolone derivatives have proven to be useful for inhibition at the glycine binding site of N-methyl-D-aspartate (NMDA) receptor. In this work the electronic structure, molecular electrostatic potential (MESP) and vibrational characteristics of a set of C(3) substituted 4-hydroxyquino-2-lone (HQ) derivatives, which act as Glycine/NMDA receptor antagonists, have been investigated using the density functional calculations. In the optimized structures a substituent at the C(3) site of HQ tends to adopt a helical structure. MESP investigations reveal that the ligands showing better inhibition activity should possess electron-rich regions extending over the substituent and carbonyl group of HQ. A correlation of inhibitory activity to the molecular electrostatic potential topography at the carbonyl oxygen as well as to the molecular electron density topography turns out to be a significant output of the investigation.
羟基喹诺酮衍生物已被证明可用于抑制N-甲基-D-天冬氨酸(NMDA)受体的甘氨酸结合位点。在这项工作中,使用密度泛函计算研究了一组作为甘氨酸/NMDA受体拮抗剂的C(3)取代4-羟基喹诺-2-酮(HQ)衍生物的电子结构、分子静电势(MESP)和振动特性。在优化结构中,HQ的C(3)位点上的取代基倾向于采用螺旋结构。MESP研究表明,表现出更好抑制活性的配体应具有延伸至HQ取代基和羰基的富电子区域。抑制活性与羰基氧处的分子静电势形貌以及分子电子密度形貌之间的相关性是该研究的一项重要成果。