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新型乙酰胆碱酯酶抑制剂的合成及混合 SAR 性质建模。

Synthesis and Hybrid SAR Property Modeling of Novel Cholinesterase Inhibitors.

机构信息

Regional Centre of Advanced Technologies and Materials, Czech Advanced Technology and Research Institute, Palacky University, Slechtitelu 27, 78371 Olomouc, Czech Republic.

Department of Chemistry, University of Silesia, Szkolna 9, 40007 Katowice, Poland.

出版信息

Int J Mol Sci. 2021 Mar 26;22(7):3444. doi: 10.3390/ijms22073444.

Abstract

A library of novel 4-{[(benzyloxy)carbonyl]amino}-2-hydroxybenzoic acid amides was designed and synthesized in order to provide potential acetyl- and butyrylcholinesterase (AChE/BChE) inhibitors; the in vitro inhibitory profile and selectivity index were specified. Benzyl (3-hydroxy-4-{[2-(trifluoromethoxy)phenyl]carbamoyl}phenyl)carbamate was the best AChE inhibitor with the inhibitory concentration of IC = 36.05 µM in the series, while benzyl {3-hydroxy-4-[(2-methoxyphenyl)carbamoyl]phenyl}-carbamate was the most potent BChE inhibitor (IC = 22.23 µM) with the highest selectivity for BChE (SI = 2.26). The cytotoxic effect was evaluated in vitro for promising AChE/BChE inhibitors. The newly synthesized adducts were subjected to the quantitative shape comparison with the generation of an averaged pharmacophore pattern. Noticeably, three pairs of fairly similar fluorine/bromine-containing compounds can potentially form the activity cliff that is manifested formally by high structure-activity landscape index (SALI) numerical values. The molecular docking study was conducted for the most potent AChE/BChE inhibitors, indicating that the hydrophobic interactions were overwhelmingly generated with Gln119, Asp70, Pro285, Thr120, and Trp82 aminoacid residues, while the hydrogen bond (HB)-donor ones were dominated with Thr120. π-stacking interactions were specified with the Trp82 aminoacid residue of chain A as well. Finally, the stability of chosen liganded enzymatic systems was assessed using the molecular dynamic simulations. An attempt was made to explain the noted differences of the selectivity index for the most potent molecules, especially those bearing unsubstituted and fluorinated methoxy group.

摘要

为了提供潜在的乙酰胆碱酯酶(AChE)和丁酰胆碱酯酶(BChE)抑制剂,设计并合成了新型 4-{[(苄氧基)羰基]氨基}-2-羟基苯甲酸酰胺库;指定了体外抑制谱和选择性指数。在该系列中,苄基(3-羟基-4-{[2-(三氟甲氧基)苯基]氨基甲酰基}苯基)氨基甲酸酯是最好的 AChE 抑制剂,其抑制浓度的 IC = 36.05 µM,而苄基{3-羟基-4-[(2-甲氧基苯基)氨基甲酰基]苯基}-氨基甲酸酯是最有效的 BChE 抑制剂(IC = 22.23 µM),对 BChE 的选择性最高(SI = 2.26)。对有前途的 AChE/BChE 抑制剂进行了体外细胞毒性评价。新合成的加合物经过定量构效关系比较,生成了平均药效基团模式。值得注意的是,三对相当相似的含氟/溴化合物可以潜在地形成活性悬崖,这在高结构活性景观指数(SALI)数值上得到了正式体现。对最有效的 AChE/BChE 抑制剂进行了分子对接研究,表明疏水性相互作用主要与 Gln119、Asp70、Pro285、Thr120 和 Trp82 氨基酸残基产生,而氢键(HB)供体主要与 Thr120 产生。还指定了与链 A 中 Trp82 氨基酸残基的 π-堆积相互作用。最后,使用分子动力学模拟评估了所选配体酶系统的稳定性。试图解释对最有效分子的选择性指数的差异,特别是那些带有未取代和氟化甲氧基的分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f6d/8037530/a9537ebfcb14/ijms-22-03444-sch001.jpg

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