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Combined ligand and structure-based virtual screening approaches for identification of novel AChE inhibitors

机译:组合配体和基于结构的虚拟筛选方法,用于鉴定新型ACHE抑制剂

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The excessive activity of acetylcholinesterase enzyme (AChE) causes different neuronal problems, especially dementia and neuronal cell deaths. Food and Drug Administration (FDA) approved drugs donepezil, rivastigmine, tacrine and galantamine are AChE inhibitors and in the treatment of Alzheimer's disease (AD) these drugs are currently prescribed. However, these inhibitors have various adverse side effects. Therefore, there is a great need for the novel selective AChE inhibitors with fewer adverse side effects for the effective treatment. In this study, combined ligand-based and structure-based virtual screening approaches were used to identify new hit compounds from small molecules library of National Cancer Institute (NCI) containing approximately 265,000 small molecules. In the present study, we developed a computational pipeline method to predict the binding affinities of the studied compounds at the specific target sites. For this purpose, a text mining study was carried out initially and compounds containing the keyword "indol" were considered. The therapeutic activity values against AD were screened using the binary quantitative structure activity relationship (QSAR) models. We then performed docking, molecular dynamics (MD) simulations and free energy analysis to clarify the interactions between selected ligands and enzyme. Thus, in this study we identified new promising hit compounds from a large database that may be used to inhibit the enzyme activity of AChE.
机译:乙酰胆碱酯酶酶的过量活性(ACHE)引起不同的神经元问题,尤其是痴呆和神经元细胞死亡。食品和药物管理局(FDA)批准的药物Dentpezil,RIVASTIGMINE,甲锭和加兰汀是ACHE抑制剂,并且在治疗阿尔茨海默病(AD)这些药物目前处方。然而,这些抑制剂具有各种不良副作用。因此,新颖的选择性疼痛抑制剂具有较少的不良副作用的新选择性疼痛抑制剂对有效处理。在该研究中,基于组合的基于配体和基于结构的虚拟筛选方法用于鉴定来自含有约265,000个小分子的国家癌症研究所(NCI)的小分子库中的新麦芽化合物。在本研究中,我们开发了一种计算管道方法,以预测所研究的化合物在特定靶位位点的结合亲和力。为此目的,首先进行文本采矿研究,并考虑含有关键词“Indol”的化合物。使用二元定量结构活动关系(QSAR)模型来筛选对AD的治疗活性值。然后,我们进行了对接,分子动力学(MD)模拟和自由能量分析,以阐明所选配体和酶之间的相互作用。因此,在该研究中,我们确定了来自大型数据库的新有希望的击中化合物,该化合物可用于抑制疼痛酶活性。

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