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基于金刚烷基衍生物的胆碱酯酶抑制活性及其分子对接研究

Cholinesterase Inhibitory Activities of Adamantyl-Based Derivatives and Their Molecular Docking Studies.

作者信息

Kwong Huey Chong, Mah Siau Hui, Chia Tze Shyang, Quah Ching Kheng, Lim Gin Keat, Kumar C S Chidan

机构信息

School of Chemical Sciences, Universiti Sains Malaysia, Penang 11800 USM, Malaysia.

School of Biosciences, Taylor's University, Lakeside Campus, 47500 Subang Jaya, Selangor, Malaysia.

出版信息

Molecules. 2017 Jun 17;22(6):1005. doi: 10.3390/molecules22061005.

Abstract

Adamantyl-based compounds are clinically important for the treatments of type 2 diabetes and for their antiviral abilities, while many more are under development for other pharmaceutical uses. This study focused on the acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) inhibitory activities of adamantyl-based ester derivatives with various substituents on the phenyl ring using Ellman's colorimetric method. Compound with a 2,4-dichloro electron-withdrawing substituent on the phenyl ring exhibited the strongest inhibition effect against AChE, with an IC value of 77.15 µM. Overall, the adamantyl-based ester with the mono-substituent at position 3 of the phenyl ring exhibited good AChE inhibition effects with an ascending order for the substituents: Cl < NO₂ < CH₃ < OCH₃. Furthermore, compounds with electron-withdrawing groups (Cl and NO₂) substituted at position 3 on their phenyl rings demonstrated stronger AChE inhibition effects, in comparison to their respective positional isomers. On the other hand, compound with a 3-methoxyphenyl ring showed the highest inhibition effect against BChE, with an IC value of 223.30 µM. Molecular docking analyses were conducted for potential AChE and BChE inhibitors, and the results demonstrated that the peripheral anionic sites of target proteins were predominant binding sites for these compounds through hydrogen bonds and halogen interactions instead of hydrophobic interactions in the catalytic active site.

摘要

基于金刚烷基的化合物在2型糖尿病治疗及其抗病毒能力方面具有临床重要性,同时还有更多此类化合物正在开发用于其他药物用途。本研究使用埃尔曼比色法,聚焦于苯环上带有各种取代基的基于金刚烷基的酯衍生物的乙酰胆碱酯酶(AChE)和丁酰胆碱酯酶(BChE)抑制活性。苯环上带有2,4 - 二氯吸电子取代基的化合物对AChE表现出最强的抑制作用,IC值为77.15 µM。总体而言,苯环3位带有单取代基的基于金刚烷基的酯对AChE表现出良好的抑制作用,取代基的抑制作用呈升序排列:Cl < NO₂ < CH₃ < OCH₃。此外,与各自的位置异构体相比,苯环3位被吸电子基团(Cl和NO₂)取代的化合物对AChE表现出更强的抑制作用。另一方面,带有3 - 甲氧基苯环的化合物对BChE表现出最高的抑制作用,IC值为223.30 µM。对潜在的AChE和BChE抑制剂进行了分子对接分析,结果表明,靶蛋白的外周阴离子位点是这些化合物的主要结合位点,通过氢键和卤素相互作用而非催化活性位点的疏水相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf19/6152672/3a28c7ba8eb1/molecules-22-01005-g001.jpg

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