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配体几何结构对胆碱酯酶的影响——基于1-异吲哚啉酮的结构类似物与多奈哌齐的比较。

Influence of ligand geometry on cholinesterase enzyme - A comparison of 1-isoindolinone based structural analog with Donepezil.

作者信息

Upadhyay Sunil P, Singh Vikas, Sharma Ram, Zhou Jianping, Thapa Pritam, Johnson David K, Keightley Andrew, Chen Maohui, Suo William, Sharma Mukut

机构信息

Drug Discovery Program, KCVA Medical Center, Midwest Veterans' Biomedical Research Foundation, 4801 E. Linwood Blvd., Kansas City, MO 64128, United States.

Neurology and Neurodegeneration Research lab, Kansas City Veterans Affairs Medical Center, 4801 E. Linwood Blvd., Kansas City, MO 64128, United States.

出版信息

J Mol Struct. 2022 Jan 5;1247. doi: 10.1016/j.molstruc.2021.131385. Epub 2021 Aug 31.

Abstract

Donepezil (DNPZ) is one of the few FDA-approved widely used medication in the clinical care of Alzheimer's disease (AD) patients. To investigate the effect of geometry and to find the significance of an enol form if any in DNPZ on acetylcholinesterase (AChE) inhibition, we changed the tetrahedral geometry of DNPZ to planar trigonal pyramidal geometry by replacing the α-carbon atom next to ketone functionality with a nitrogen atom. To mimic 1-indanone in DNPZ, we selected 1-isoindolinone framework to synthesize 25 new DNPZ derivatives and characterized using H NMR, C NMR and ESI-MS spectroscopy methods. Drug likeliness profile for each compound was predicted using Molinspiration online software following Lipinski's rule. Commercially available assay kits were used to measure AChE and butyrylcholinesterase (BuChE) inhibitory effects. NIH/3T3 mouse embryonic fibroblast cell line was used to measure cytotoxic and proliferation effects using LDH and MTT assay, respectively. Compound #20 was selected for comparative computational docking, modelling and physicochemical studies. Our results show that DNPZ with tetrahedral geometry has 3-fold higher AChE inhibition as compared to compound #20 with planar trigonal pyramidal geometry. Our approach may be useful as a novel indirect method to study the significance of the enol form in DNPZ (or similar compounds), since constant interconversion between the keto and enol forms does not permit a direct determination of the effect of the enol form of DNPZ . Overall, we conclude that the tetrahedral is a better fit and any change in geometry significantly drives down the cholinesterase inhibitory effect of DNPZ.

摘要

多奈哌齐(DNPZ)是美国食品药品监督管理局(FDA)批准的少数几种在阿尔茨海默病(AD)患者临床护理中广泛使用的药物之一。为了研究几何结构的影响,并确定DNPZ中烯醇形式(若存在)对乙酰胆碱酯酶(AChE)抑制作用的重要性,我们通过用氮原子取代酮官能团旁边的α-碳原子,将DNPZ的四面体几何结构改变为平面三角锥形几何结构。为了模拟DNPZ中的1-茚满酮,我们选择1-异吲哚啉酮骨架来合成25种新的DNPZ衍生物,并使用氢核磁共振(H NMR)、碳核磁共振(C NMR)和电喷雾电离质谱(ESI-MS)光谱方法进行表征。按照Lipinski规则,使用Molinspiration在线软件预测每种化合物的药物相似性概况。使用市售检测试剂盒测量AChE和丁酰胆碱酯酶(BuChE)的抑制作用。分别使用乳酸脱氢酶(LDH)和噻唑蓝四氮唑溴盐(MTT)检测法,利用NIH/3T3小鼠胚胎成纤维细胞系测量细胞毒性和增殖作用。选择化合物#20进行比较性计算对接、建模和物理化学研究。我们的结果表明,与具有平面三角锥形几何结构的化合物#20相比,具有四面体几何结构的DNPZ对AChE的抑制作用高3倍。我们的方法可能作为一种新颖的间接方法,用于研究DNPZ(或类似化合物)中烯醇形式的重要性,因为酮式和烯醇式之间的持续相互转化不允许直接确定DNPZ烯醇形式的作用。总体而言,我们得出结论,四面体结构更合适,几何结构的任何变化都会显著降低DNPZ的胆碱酯酶抑制作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6433/8589283/c3fbf3ffd694/nihms-1739588-f0001.jpg

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