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首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >Docking based virtual screening and molecular dynamics study to identify potential monoacylglycerol lipase inhibitors
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Docking based virtual screening and molecular dynamics study to identify potential monoacylglycerol lipase inhibitors

机译:基于对接的虚拟筛选和分子动力学研究,以识别潜在的单酰基甘油脂酶抑制剂

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Monoacylglycerol lipase (MAGL) is one of the key enzymes of the endocannabinoid system (ECS). It hydrolyzes one of the major endocannabinoid, 2-arachidonoylglycerol (2-AG), an endogenous full agonist at G protein coupled cannabinoid receptors CB1 and CB2. Numerous studies showed that MGL inhibitors are potentially useful for the treatment of pain, inflammation, cancer and CNS disorders. These provocative findings suggested that pharmacological inhibition of MAGL function may confer significant therapeutic benefits. In this study, we presented hybrid ligand and structure-based approaches to obtain a novel set of virtual leads as MAGL inhibitors. The constraints used in this study, were Glide score, binding free energy estimates and ADME properties to screen the ZINC database, containing approximately 21 million compounds. A total of seven virtual hits were obtained, which showed significant binding affinity towards MAGL protein. Ligand, ZINC24092691 was employed in complex form with the protein MAGL, for molecular dynamics simulation study, because of its excellent glide score, binding free energy and ADME properties. The RMSD of ZINC24092691 was observed to stay at 0.1 nm (1 ?) in most of the trajectories, which further confirmed its ability to inhibit the protein MAGL. The hits were then evaluated for their ability to inhibit human MAGL. The compound ZINC24092691 displayed the noteworthy inhibitory activity reducing MAGL activity to 21.15% at 100 nM concentration, with an IC50 value of 10 nM.
机译:单酰基甘油脂酶(MAGL)是内源性大麻素系统(ECS)的关键酶之一。它水解一种主要的内源性大麻素2-花生四烯酰基甘油(2-AG),这是一种在G蛋白偶联的大麻素受体CB1和CB2上的内源性完全激动剂。大量研究表明,MGL抑制剂可潜在地用于治疗疼痛,炎症,癌症和中枢神经系统疾病。这些具有启发性的发现表明,MAGL功能的药理抑制作用可能会带来明显的治疗益处。在这项研究中,我们提出了混合配体和基于结构的方法来获得一组新的虚拟线索作为MAGL抑制剂。在这项研究中使用的约束条件是滑翔分数,结合自由能估计值和ADME特性以筛选包含约2100万种化合物的ZINC数据库。总共获得了七个虚拟命中,显示出对MAGL蛋白的显着结合亲和力。配体ZINC24092691以其复合物形式与MAGL蛋白一起用于分子动力学模拟研究,因为它具有出色的滑移得分,结合自由能和ADME特性。观察到ZINC24092691的RMSD在大多数轨迹中都停留在0.1 nm(1?),这进一步证实了其抑制蛋白MAGL的能力。然后评估这些命中物抑制人MAGL的能力。化合物ZINC24092691在100 nM浓度下显示出显着的抑制活性,将MAGL活性降低至21.15%,IC50值为10 nM。

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