Department of Medicinal Chemistry and Pharmacognosy, Faculty of Pharmacy, Jordan University of Science and Technology, P.O. Box 3030, Irbid 22110, Jordan.
Molecules. 2012 Nov 22;17(12):13740-58. doi: 10.3390/molecules171213740.
Within this study, a unique 3D structure-based pharmacophore model of the enzyme glyoxalase-1 (Glo-1) has been revealed. Glo-1 is considered a zinc metalloenzyme in which the inhibitor binding with zinc atom at the active site is crucial. To our knowledge, this is the first pharmacophore model that has a selective feature for a "zinc binding group" which has been customized within the structure-based pharmacophore model of Glo-1 to extract ligands that possess functional groups able to bind zinc atom solely from database screening. In addition, an extensive 2D similarity search using three diverse similarity techniques (Tanimoto, Dice, Cosine) has been performed over the commercially available "Zinc Clean Drug-Like Database" that contains around 10 million compounds to help find suitable inhibitors for this enzyme based on known inhibitors from the literature. The resultant hits were mapped over the structure based pharmacophore and the successful hits were further docked using three docking programs with different pose fitting and scoring techniques (GOLD, LibDock, CDOCKER). Nine candidates were suggested to be novel Glo-1 inhibitors containing the "zinc binding group" with the highest consensus scoring from docking.
在这项研究中,揭示了一种独特的基于 3D 结构的酶甘油醛-1(Glo-1)药效团模型。Glo-1 被认为是一种锌金属酶,抑制剂与活性部位的锌原子结合是至关重要的。据我们所知,这是第一个具有“锌结合基团”选择性特征的药效团模型,该模型已在 Glo-1 的基于结构的药效团模型中进行了定制,以从数据库筛选中提取仅具有能够与锌原子结合的功能基团的配体。此外,还使用三种不同的相似性技术(Tanimoto、Dice、Cosine)对市售的“Zinc Clean Drug-Like Database”(包含约 1000 万个化合物)进行了广泛的 2D 相似性搜索,以帮助根据文献中的已知抑制剂为该酶找到合适的抑制剂。将得到的命中映射到基于结构的药效团上,并使用三种具有不同构象拟合和评分技术(GOLD、LibDock、CDOCKER)的对接程序对成功的命中进行进一步对接。从对接中得到的最高共识评分中,建议了 9 种可能的新型 Glo-1 抑制剂,它们都含有“锌结合基团”。