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新型苯甲酰胺类多靶标化合物的合成、AChE 和 BACE1 抑制活性及分子对接研究。

New Benzamides as Multi-Targeted Compounds: A Study on Synthesis, AChE and BACE1 Inhibitory Activity and Molecular Docking.

机构信息

Department of Organic Chemistry, Medical University of Białystok, Mickiewicza Street 2A, 15-222 Białystok, Poland.

Department of Physical Chemistry, Faculty of Chemistry, University of Białystok, Ciołkowskiego 1K Street, 15-245 Białystok, Poland.

出版信息

Int J Mol Sci. 2023 Oct 4;24(19):14901. doi: 10.3390/ijms241914901.

Abstract

The synthesis of eleven new and previously undescribed benzamides was designed. These compounds were specifically projected as potential inhibitors of the enzymes acetylcholinesterase (AChE) and β-secretase (BACE1). N,N'-(1,4-phenylene)bis(3-methoxybenzamide) was most active against AChE, with an inhibitory concentration of AChE IC = 0.056 µM, while the IC for donepezil was 0.046 µM. This compound was also the most active against the BACE1 enzyme. The IC value was 9.01 µM compared to that for quercetin, with IC = 4.89 µM. Quantitative results identified this derivative to be the most promising. Molecular modeling was performed to elucidate the potential mechanism of action of this compound. Dynamic simulations showed that new ligands only had a limited stabilizing effect on AChE, but all clearly reduced the flexibility of the enzyme. It can, therefore, be concluded that a possible mechanism of inhibition increases the stiffness and decreases the flexibility of the enzyme, which obviously impedes its proper function. An analysis of the H-bonding patterns suggests a different mechanism (from other ligands) when interacting the most active derivative with the enzyme.

摘要

设计了 11 种新的和以前未描述的苯甲酰胺的合成。这些化合物被特别设计为乙酰胆碱酯酶(AChE)和β-分泌酶(BACE1)的潜在抑制剂。N,N'-(1,4-亚苯基)双(3-甲氧基苯甲酰胺)对 AChE 的抑制活性最强,AChE 的抑制浓度 IC = 0.056 µM,而多奈哌齐的 IC = 0.046 µM。该化合物对 BACE1 酶也最活跃。与槲皮素的 IC = 4.89 µM 相比,其 IC 值为 9.01 µM。定量结果表明该衍生物最有前途。进行了分子模拟以阐明该化合物的潜在作用机制。动态模拟表明,新配体仅对 AChE 具有有限的稳定作用,但所有配体都明显降低了酶的灵活性。因此,可以得出结论,抑制的可能机制是增加酶的刚性并降低其灵活性,这显然会阻碍其正常功能。氢键模式的分析表明,与最活跃的衍生物与酶相互作用时,存在不同的机制(与其他配体不同)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d2f/10573752/3b3e9c95609f/ijms-24-14901-g001.jpg

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