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Discovery of a novel acetylcholinesterase inhibitor by structure-based virtual screening techniques

机译:通过基于结构的虚拟筛选技术发现一种新型的乙酰胆碱酯酶抑制剂

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Acetylcholinesterase (AChE) is considered to be one of the most important targets for the treatment of Alzheimer's disease (AD). Previously our group has reported a series of tacrine-based hybrids as potent AChE inhibitors (AChEI). To discover more novel scaffolds, molecular docking and dynamics stimulation were applied to acquire the binding models of AChE with the most prominent compounds from our work. A structure-based pharmacophore model plus shape constraints was generated from the binding models and it was then employed to virtually screen commercial databases, giving a focused hit list of candidates. Subsequently, we scored the hit compounds by their molecular binding energies, which were calculated by MM/PBSA method. Fifteen compounds were selected and purchased for testing their anti-AChE effects, while seven of them showed inhibitory effects with IC 50 values ranging from 1.5 to 9.8 μM. The drug-like properties of these compounds, including Log D, A log P, molecular volume and Lipinski rule of five, were also calculated. Compounds 12 and 16 (IC 50 = 2.5 and 1.5 μM, respectively) exhibited potent activity and acceptable drug-like properties, thus might serve as leads for further modification. The data suggest that the presented model might be a valid approach for identification and development of new AChEIs.
机译:乙酰胆碱酯酶(AChE)被认为是治疗阿尔茨海默氏病(AD)的最重要靶标之一。先前,我们的研究小组报道了一系列基于他克林的杂种作为有效的AChE抑制剂(AChEI)。为了发现更多新颖的支架,我们通过分子对接和动力学刺激来获得AChE与最突出化合物的结合模型。从绑定模型中生成基于结构的药效团模型加上形状约束,然后将其用于虚拟筛选商业数据库,从而给出候选的重点命中列表。随后,我们通过分子结合能对命中化合物进行了评分,这些分子结合能通过MM / PBSA方法计算得出。选择并购买了15种化合物来测试其抗AChE的作用,而其中7种具有抑制作用,IC 50值在1.5至9.8μM之间。还计算了这些化合物的类药物性质,包括Log D,A log P,分子体积和Lipinski规则(五个)。化合物12和16(IC 50分别为2.5和1.5μM)表现出有效的活性和可接受的类药物特性,因此可作为进一步修饰的线索。数据表明,提出的模型可能是识别和开发新的AChEI的有效方法。

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