Raharjo Sentot Joko, Mahdi Chanif, Nurdiana Nurdiana, Kikuchi Takheshi, Fatchiyah Fatchiyah
Biology Doctoral Program, Faculty of Science, Brawijaya University, Malang 65141, Indonesia ; Academic of Pharmacy and Food Analysis, Putra Indonesia Malang, Malang 65123, Indonesia.
Chemistry Department, Faculty of Science, Brawijaya University, Malang 65123, Indonesia.
Adv Bioinformatics. 2014;2014:850628. doi: 10.1155/2014/850628. Epub 2014 Nov 17.
To understand the structural features that dictate the selectivity of the two isoforms of the prostaglandin H2 synthase (PGHS/COX), the three-dimensional (3D) structure of COX-1/COX-2 was assessed by means of binding energy calculation of virtual molecular dynamic with using ligand alpha-Patchouli alcohol isomers. Molecular interaction studies with COX-1 and COX-2 were done using the molecular docking tools by Hex 8.0. Interactions were further visualized by using Discovery Studio Client 3.5 software tool. The binding energy of molecular interaction was calculated by AMBER12 and Virtual Molecular Dynamic 1.9.1 software. The analysis of the alpha-Patchouli alcohol isomer compounds showed that all alpha-Patchouli alcohol isomers were suggested as inhibitor of COX-1 and COX-2. Collectively, the scoring binding energy calculation (with PBSA Model Solvent) of alpha-Patchouli alcohol isomer compounds (CID442384, CID6432585, CID3080622, CID10955174, and CID56928117) was suggested as candidate for a selective COX-1 inhibitor and CID521903 as nonselective COX-1/COX-2.
为了解决定前列腺素H2合酶(PGHS/COX)两种同工型选择性的结构特征,通过使用配体α-广藿香醇异构体进行虚拟分子动力学结合能计算,评估了COX-1/COX-2的三维(3D)结构。使用Hex 8.0分子对接工具对COX-1和COX-2进行分子相互作用研究。使用Discovery Studio Client 3.5软件工具进一步可视化相互作用。通过AMBER12和虚拟分子动力学1.9.1软件计算分子相互作用的结合能。对α-广藿香醇异构体化合物的分析表明,所有α-广藿香醇异构体均被认为是COX-1和COX-2的抑制剂。总体而言,α-广藿香醇异构体化合物(CID442384、CID6432585、CID3080622、CID10955174和CID56928117)的评分结合能计算(采用PBSA模型溶剂)被建议作为选择性COX-1抑制剂的候选物,而CID521903作为非选择性COX-1/COX-2抑制剂的候选物。