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基于多氟烷基-2-亚氨基-1,3-二酮骨架的新型强效双功能羧酸酯酶抑制剂。

Novel potent bifunctional carboxylesterase inhibitors based on a polyfluoroalkyl-2-imino-1,3-dione scaffold.

机构信息

Institute of Physiologically Active Compounds Russian Academy of Sciences, Chernogolovka, 142432, Russia.

Institute of Physiologically Active Compounds Russian Academy of Sciences, Chernogolovka, 142432, Russia; Emanuel Institute of Biochemical Physics Russian Academy of Sciences, Moscow, 119334, Russia.

出版信息

Eur J Med Chem. 2021 Jun 5;218:113385. doi: 10.1016/j.ejmech.2021.113385. Epub 2021 Mar 15.

Abstract

An expanded series of alkyl 2-arylhydrazinylidene-3-oxo-3-polyfluoroalkylpropionates (HOPs) 3 was obtained via Cu(OAc)-catalyzed azo coupling. All were nanomolar inhibitors of carboxylesterase (CES), while moderate or weak inhibitors of acetylcholinesterase and butyrylcholinesterase. Steady-state kinetics studies showed that HOPs 3 are mixed type inhibitors of the three esterases. Molecular docking studies demonstrated that two functional groups in the structure of HOPs, trifluoromethyl ketone (TFK) and ester groups, bind to the CES active site suggesting subsequent reactions: formation of a tetrahedral adduct, and a slow hydrolysis reaction. The results of molecular modeling allowed us to explain some structure-activity relationships of CES inhibition by HOPs 3: their selectivity toward CES in comparison with cholinesterases and the high selectivity of pentafluoroethyl-substituted HOP 3p to hCES1 compared to hCES2. All compounds were predicted to have good intestinal absorption and blood-brain barrier permeability, low cardiac toxicity, good lipophilicity and aqueous solubility, and reasonable overall drug-likeness. HOPs with a TFK group and electron-donor substituents in the arylhydrazone moiety were potent antioxidants. All compounds possessed low cytotoxicity and low acute toxicity. Overall, a new promising type of bifunctional CES inhibitors has been found that are able to interact with the active site of the enzyme with the participation of two functional groups. The results indicate that HOPs have the potential to be good candidates as human CES inhibitors for biomedicinal applications.

摘要

通过 Cu(OAc) 催化的偶氮偶联反应,得到了一系列扩展的烷基 2-芳基腙基-3-氧代-3-多氟烷基丙酰基(HOP)3。所有 HOP 3 都是羧酯酶(CES)的纳摩尔抑制剂,同时也是乙酰胆碱酯酶和丁酰胆碱酯酶的中等或弱抑制剂。稳态动力学研究表明,HOP 3 是三种酯酶的混合类型抑制剂。分子对接研究表明,HOP 3 结构中的两个官能团,三氟甲基酮(TFK)和酯基,与 CES 活性位点结合,提示随后发生反应:形成四面体加合物,以及缓慢的水解反应。分子建模的结果使我们能够解释 HOP 3 对 CES 抑制的一些构效关系:与胆碱酯酶相比,它们对 CES 的选择性,以及与 hCES2 相比,五氟乙基取代的 HOP 3p 对 hCES1 的高选择性。所有化合物都被预测具有良好的肠道吸收和血脑屏障通透性、低心脏毒性、良好的亲脂性和水溶解度,以及合理的整体药物样特性。具有 TFK 基团和芳基腙部分供电子取代基的 HOP 是有效的抗氧化剂。所有化合物均具有低细胞毒性和低急性毒性。总体而言,发现了一种新的有前途的双功能 CES 抑制剂类型,它能够通过两个官能团与酶的活性位点相互作用。结果表明,HOP 具有作为人类 CES 抑制剂用于生物医学应用的潜力。

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