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酰腙类化合物的合成及对.. 漆酶抑制活性构效关系研究

Synthesis and Structure-Activity Relationship Studies of Hydrazide-Hydrazones as Inhibitors of Laccase from .

机构信息

Department of Micro, Nano and Bioprocess Engineering, Faculty of Chemistry, Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.

Department of Bioorganic Chemistry, Faculty of Chemistry, Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.

出版信息

Molecules. 2020 Mar 10;25(5):1255. doi: 10.3390/molecules25051255.

Abstract

A series of hydrazide-hydrazones , the imine derivatives of hydrazides and aldehydes bearing benzene rings, were screened as inhibitors of laccase from . Laccase is a copper-containing enzyme which inhibition might prevent or reduce the activity of the plant pathogens that produce it in various biochemical processes. The kinetic and molecular modeling studies were performed and for selected compounds, the docking results were discussed. Seven 4-hydroxybenzhydrazide (4-HBAH) derivatives exhibited micromolar activity = 24-674 µM with the predicted and desirable competitive type of inhibition. The structure-activity relationship (SAR) analysis revealed that a slim salicylic aldehyde framework had a pivotal role in stabilization of the molecules near the substrate docking site. Furthermore, the presence of phenyl and bulky -butyl substituents in position 3 in salicylic aldehyde fragment favored strong interaction with the substrate-binding pocket in laccase. Both 3- and 4-HBAH derivatives containing larger 3--butyl-5-methyl- or 3,5-di--butyl-2-hydroxy-benzylidene unit, did not bind to the active site of laccase and, interestingly, acted as non-competitive ( = 32.0 µM) or uncompetitive ( = 17.9 µM) inhibitors, respectively. From the easily available laccase inhibitors only sodium azide, harmful to environment and non-specific, was over 6 times more active than the above compounds.

摘要

一系列酰腙 - 腙类化合物,即酰肼与含苯环的醛的亚胺衍生物,被筛选为漆酶抑制剂。漆酶是一种含铜酶,其抑制作用可能会阻止或降低产生它的植物病原体在各种生化过程中的活性。进行了动力学和分子建模研究,并对选定的化合物讨论了对接结果。七种 4-羟基苯甲酰肼(4-HBAH)衍生物表现出微摩尔活性(IC50=24-674μM),具有预期的和理想的竞争性抑制类型。结构-活性关系(SAR)分析表明,苗条的水杨酸醛骨架在稳定靠近底物结合位点的分子方面起着关键作用。此外,在水杨酸醛片段的 3 位存在苯基和大的叔丁基取代基有利于与漆酶的底物结合口袋进行强烈相互作用。含有较大的 3--叔丁基-5-甲基-或 3,5-二--叔丁基-2-羟基苯亚甲基单元的 3-和 4-HBAH 衍生物均不能与漆酶的活性位点结合,有趣的是,它们分别作为非竞争性(IC50=32.0μM)或竞争性抑制剂(IC50=17.9μM)发挥作用。在所研究的易得的漆酶抑制剂中,只有对环境有害且非特异性的叠氮化钠的活性比上述化合物高 6 倍以上。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a17a/7179439/301f2fcb0a12/molecules-25-01255-sch001.jpg

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