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他克林衍生物作为阿尔茨海默病潜在乙酰胆碱酯酶(AChE)抑制剂的联合3D-QSAR、分子对接和分子动力学研究

Combined 3D-QSAR, molecular docking, and molecular dynamics study of tacrine derivatives as potential acetylcholinesterase (AChE) inhibitors of Alzheimer's disease.

作者信息

Zhou An, Hu Jianping, Wang Lirong, Zhong Guochen, Pan Jian, Wu Zeyu, Hui Ailing

机构信息

Institute of Natural Medicine, Hefei University of Technology, No. 193, Tunxi Road, Hefei, 230009, Anhui, China.

Anhui Province Key Laboratory of R&D of Chinese Medicine, Anhui University of Chinese Medicine, 103 Meishan Road, Hefei, 230038, Anhui, China.

出版信息

J Mol Model. 2015 Oct;21(10):277. doi: 10.1007/s00894-015-2797-8. Epub 2015 Oct 5.

Abstract

Acetylcholinesterase (AChE) is one of the key targets of drugs for treating Alzheimer's disease (AD). Tacrine is an approved drug with AChE-inhibitory activity. In this paper, 3D-QSAR, molecular docking, and molecular dynamics were carried out in order to study 60 tacrine derivatives and their AChE-inhibitory activities. 3D-QSAR modeling resulted in an optimal CoMFA model with q(2) = 0.552 and r(2) = 0.983 and an optimal CoMSIA model with q(2) = 0.581 and r(2) = 0.989. These QSAR models also showed that the steric and H-bond fields of these compounds are important influences on their activities. The interactions between these inhibitors and AChE were further explored through molecular docking and molecular dynamics simulation. A few key residues (Tyr70, Trp84, Tyr121, Trp279, and Phe330) at the binding site of AChE were identified. The results of this study improve our understanding of the mechanisms of AChE inhibitors and afford valuable information that should aid the design of novel potential AChE inhibitors. Graphical Abstract Superposition of backbone atoms of the lowest-energy structure obtained from MD simulation (magenta) onto those of the structure of the initial molecular docking model (green).

摘要

乙酰胆碱酯酶(AChE)是治疗阿尔茨海默病(AD)药物的关键靶点之一。他克林是一种已获批准的具有AChE抑制活性的药物。本文进行了三维定量构效关系(3D-QSAR)、分子对接和分子动力学研究,以考察60种他克林衍生物及其AChE抑制活性。3D-QSAR建模得到了一个最优的比较分子场分析(CoMFA)模型,其交叉验证系数q(2) = 0.552,相关系数r(2) = 0.983,以及一个最优的比较分子相似性指数分析(CoMSIA)模型,其q(2) = 0.581,r(2) = 0.989。这些QSAR模型还表明,这些化合物的空间场和氢键场对其活性有重要影响。通过分子对接和分子动力学模拟进一步探索了这些抑制剂与AChE之间的相互作用。确定了AChE结合位点的几个关键残基(Tyr70、Trp84、Tyr121、Trp279和Phe330)。本研究结果增进了我们对AChE抑制剂作用机制的理解,并提供了有价值的信息,有助于设计新型潜在的AChE抑制剂。图形摘要:将分子动力学模拟得到的最低能量结构的主链原子(品红色)叠加到初始分子对接模型结构的主链原子(绿色)上。

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