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通过使用SYSDOC程序进行对接研究预测1-苄基-4-[(5,6-二甲氧基-1-茚满酮-2-基)甲基]哌啶在乙酰胆碱酯酶中的结合位点。

Prediction of the binding site of 1-benzyl-4-[(5,6-dimethoxy-1-indanon-2-yl)methyl]piperidine in acetylcholinesterase by docking studies with the SYSDOC program.

作者信息

Pang Y P, Kozikowski A P

机构信息

Neurochemistry Research, Mayo Foundation for Medical Education and Research, Jacksonville, FL 32224, USA.

出版信息

J Comput Aided Mol Des. 1994 Dec;8(6):683-93. doi: 10.1007/BF00124015.

Abstract

In the preceding paper we reported on a docking study with the SYSDOC program for predicting the binding sites of huperzine A in acetylcholinesterase (AChE) [Pang, Y.-P. and Kozikowski, A.P., J. Comput.-Aided Mol. Design, 8 (1994) 669]. Here we present a prediction of the binding sites of 1-benzyl-4-[(5,6-dimethoxy-1-indanon-2-yl)methyl]piperidine (E2020) in AChE by the same method. E2020 is one of the most potent and selective reversible inhibitors of AChE, and this molecule has puzzled researchers, partly due to its flexible structure, in understanding how it binds to AChE. Based on the results of docking 1320 different conformers of E2020 into 69 different conformers of AChE and on the pharmacological data reported for E2020 and its analogs, we predict that both the R- and the S-isomer of E2020 span the whole binding cavity of AChE, with the ammonium group interacting mainly with Trp84, Phe330 and Asp72, the phenyl group interacting mainly with Trp84 and Phe330, and the indanone moiety interacting mainly with Tyr70 and Trp279. The topography of the calculated E2020 binding sites provides insights into understanding the high potency of E2020 in the inhibition of AChE and provides hints as to possible structural modifications for identifying improved AChE inhibitors as potential therapeutics for the palliative treatment of Alzheimer's disease.

摘要

在之前的论文中,我们报道了一项使用SYSDOC程序进行的对接研究,用于预测石杉碱甲在乙酰胆碱酯酶(AChE)中的结合位点[庞玉平,科齐科夫斯基,A.P.,《计算机辅助分子设计杂志》,8(1994)669]。在此,我们通过相同方法展示了对1-苄基-4-[(5,6-二甲氧基-1-茚满酮-2-基)甲基]哌啶(E2020)在AChE中结合位点的预测。E2020是AChE最有效且最具选择性的可逆抑制剂之一,该分子在理解其如何与AChE结合方面让研究人员感到困惑,部分原因是其结构具有灵活性。基于将1320个不同构象的E2020对接至69个不同构象的AChE的结果以及所报道的E2020及其类似物的药理学数据,我们预测E2020的R-异构体和S-异构体均跨越AChE的整个结合腔,铵基团主要与Trp84、Phe330和Asp72相互作用,苯基主要与Trp84和Phe330相互作用,茚满酮部分主要与Tyr70和Trp279相互作用。计算得到的E2020结合位点的拓扑结构有助于理解E2020对AChE抑制作用的高效性,并为识别改进的AChE抑制剂作为阿尔茨海默病姑息治疗的潜在疗法提供可能的结构修饰线索。

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