首页> 外文期刊>Biochemical Pharmacology >Inhibition of human liver catechol-O-methyltransferase by tea catechins and their metabolites: structure-activity relationship and molecular-modeling studies.
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Inhibition of human liver catechol-O-methyltransferase by tea catechins and their metabolites: structure-activity relationship and molecular-modeling studies.

机译:茶儿茶素及其代谢产物对人肝儿茶酚-O-甲基转移酶的抑制作用:结构-活性关系和分子模型研究。

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摘要

(-)-Epigallocatechin-3-gallate (EGCG) is the major polyphenol present in green tea. We previously demonstrated that EGCG was both a substrate and potent inhibitor of human liver cytosolic catechol-O-methyltransferease (COMT). We now report the structure-activity relationship for the inhibition of COMT-catalyzed O-methylation of catecholestrogens in human liver cytosol by tea catechins and some of their metabolites. The most potent inhibitors were catechins with a galloyl-type D-ring, including EGCG (IC(50)=0.07 microM), 4''-O-methyl-EGCG (IC(50)=0.10 microM), 4',4''-di-O-methyl-EGCG (4',4''-DiMeEGCG) (IC(50)=0.15 microM), and (-)-epicatechin-3-gallate (ECG) (IC(50)=0.20 microM). Catechins without the D-ring showed two to three orders of magnitude less inhibitory potency. Enzyme kinetic analyses revealed that EGCG behaved as a mixed inhibitor, whereas 4',4''-di-O-methyl-EGCG exhibited competitive kinetics for the S-adenosylmethionine (SAM), and noncompetitive kinetics for the catechol binding site. These compounds may represent a new type of COMT inhibitor. In silico molecular-modeling studies using a homology model of human COMT were conducted to aid in the understanding the catalytic and inhibitory mechanisms. Either D-ring or B-ring of EGCG could be accommodated to the substrate binding pocket of human COMT. However, the close proximity (2.6A) of 4''-OH to the critical residue Lys144, the higher acidity of the hydroxyl groups of the D-ring, and the hydrophobic interactions between the D-ring and residues in the binding pocket greatly facilitated the interaction of the D-ring with the enzyme, and resulted in increased inhibitory potency. These results provide mechanistic insight into the inhibition of COMT by commonly consumed tea catechins.
机译:(-)-Epigallocatechin-3-gallate(EGCG)是绿茶中存在的主要多酚。我们先前证明了EGCG既是人类肝脏胞质儿茶酚-O-甲基转移酶(COMT)的底物又是有效抑制剂。现在,我们报告茶儿茶素及其某些代谢物对人肝细胞溶胶中儿茶酚雌激素的COMT催化O-甲基化抑制的构效关系。最有效的抑制剂是带有没食子酰基型D环的儿茶素,包括EGCG(IC(50)= 0.07 microM),4''-O-甲基-EGCG(IC(50)= 0.10 microM),4',4 ''-二-O-甲基-EGCG(4',4''-DiMeEGCG)(IC(50)= 0.15 microM)和(-)-epicatechin-3-gallate(ECG)(IC(50)= 0.20 microM)。没有D环的儿茶素类药物的抑制力降低了2至3个数量级。酶动力学分析表明,EGCG表现为混合抑制剂,而4',4''-di-O-甲基-EGCG对S-腺苷甲硫氨酸(SAM)表现出竞争动力学,对儿茶酚结合位点表现出非竞争性动力学。这些化合物可能代表了一种新型的COMT抑制剂。在计算机上使用人类COMT同源模型进行分子建模研究,以帮助理解催化和抑制机理。 EGCG的D环或B环均可容纳在人COMT的底物结合袋中。但是,4''-OH与关键残基Lys144紧密接近(2.6A),D环的羟基具有较高的酸度,并且D环与结合口袋中的残基之间的疏水相互作用极大促进了D环与酶的相互作用,并增加了抑制效力。这些结果为常用的茶儿茶素对COMT的抑制作用提供了机械的见解。

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