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Integration of common feature pharmacophore modeling and in vitro study to identify potent AChE inhibitors

机译:整合通用特征药效团模型和体外研究以鉴定有效的AChE抑制剂

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摘要

Alzheimer's disease is a progressive neurodegenerative disorder arising due to genetic and non-genetic causes. One of the major therapies adapted for symptomatic Alzheimer's disease is by targeting acetylcholinesterase enzyme based on the cholinergic hypothesis. Acetylcholinesterase is a substrate-specific enzyme that degrades the neuro-transmitter acetylcholine. An optimum level of acetylcholine should be maintained in the brain for its proper function. In order to identify potent and selective acetylcholinesterase inhibitors we adopted an integrated in silico and bioassay methodologies. In silico approach involves creating chemical features based 3D-pharmacophore models using AChE specific inhibitors. This model was then used for sequential virtual screening from the small molecule databases. Finally, five molecules were selected on the basis of the best docking scores and pharmacokinetics properties. These molecules were subjected to docking analysis with the recently solved crystal structure of human acetylcholinesterase enzyme, in order to reveal its binding mode and interactions at the dual binding sites of the enzyme. The acetylcholinesterase enzyme inhibitory activity of these five lead molecules was further assessed by in-vitro analysis.
机译:阿尔茨海默氏病是由于遗传和非遗传原因引起的进行性神经退行性疾病。适用于症状性阿尔茨海默氏病的主要疗法之一是基于胆碱能假说靶向乙酰胆碱酯酶。乙酰胆碱酯酶是降解神经递质乙酰胆碱的底物特异性酶。为了保持其正常功能,应在大脑中维持最佳水平的乙酰胆碱。为了鉴定有效的和选择性的乙酰胆碱酯酶抑制剂,我们采用了计算机模拟和生物分析相结合的方法。计算机方法涉及使用AChE特异性抑制剂创建基于化学特征的3D-药效团模型。然后将该模型用于从小分子数据库进行顺序虚拟筛选。最后,根据最佳对接得分和药代动力学特性选择了五个分子。这些分子与人乙酰胆碱酯酶最近解析的晶体结构进行了对接分析,以揭示其结合模式和在酶的双重结合位点的相互作用。通过体外分析进一步评估了这五个先导分子的乙酰胆碱酯酶抑制活性。

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