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植物多酚对谷胱甘肽还原酶的抑制作用。

Inhibition of glutathione reductase by plant polyphenols.

作者信息

Zhang K, Yang E B, Tang W Y, Wong K P, Mack P

机构信息

Department of Experimental Surgery, Singapore General Hospital, Singapore.

出版信息

Biochem Pharmacol. 1997 Nov 1;54(9):1047-53. doi: 10.1016/s0006-2952(97)00315-8.

Abstract

The effects of forty-one plant polyphenols on the activity of glutathione reductase (GSH-RD) were studied. These polyphenols showed varying degrees of concentration-dependent inhibition on the enzyme, with IC50 values that varied from approximately 40 microM to 1 mM. 4'-Hydroxychalcone and tannic acid were among the more potent inhibitors, with IC50 values of 47.3 and 50.4 microM, respectively. Different classes of polyphenols varied in potency in the following order: chalcones > tannic acid > flavonoids > coumarins > catechins. Analysis of structure-activity relationships showed certain chemical structures to be important for the inhibition of GSH-RD: (a) C-5 and C-7 hydroxylations in the A-ring, a carbonyl group at C-4, and the B-ring attached to C-2 in flavonoids; (b) C-2' and C-4' hydroxylations in chalcones; and (c) C-6 and C-7 hydroxylations in coumarins. The inhibition of GSH-RD by tannic acid and quercetin was time dependent and irreversible, whereas that by 4'-hydroxychalcone and esculin was reversible but not time dependent. Enhanced inhibition of GSH-RD by the four polyphenols 4'-hydroxychalcone, quercetin, butein, and acacetin was observed in the presence of NADPH. Kinetic studies showed that both tannic acid and 4'-hydroxychalcone exhibited non-competitive inhibition on GSH-RD towards glutathione disulfide.

摘要

研究了41种植物多酚对谷胱甘肽还原酶(GSH-RD)活性的影响。这些多酚对该酶表现出不同程度的浓度依赖性抑制,IC50值在约40 microM至1 mM之间变化。4'-羟基查耳酮和单宁酸是较强的抑制剂,IC50值分别为47.3和50.4 microM。不同类别的多酚在效力上按以下顺序变化:查耳酮>单宁酸>黄酮类>香豆素>儿茶素。构效关系分析表明,某些化学结构对GSH-RD的抑制作用很重要:(a)黄酮类化合物A环中的C-5和C-7羟基化、C-4处的羰基以及与C-2相连的B环;(b)查耳酮中的C-2'和C-4'羟基化;(c)香豆素中的C-6和C-7羟基化。单宁酸和槲皮素对GSH-RD的抑制是时间依赖性且不可逆的,而4'-羟基查耳酮和七叶苷对其抑制是可逆的但不依赖时间。在存在NADPH的情况下,观察到4'-羟基查耳酮、槲皮素、布特因和刺槐素这四种多酚对GSH-RD的抑制作用增强。动力学研究表明,单宁酸和4'-羟基查耳酮对GSH-RD针对谷胱甘肽二硫化物均表现出非竞争性抑制。

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