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一种源自甘草的甾体抑制剂对3α,20β-羟基类固醇脱氢酶的抑制机制。

Mechanism of inhibition of 3 alpha, 20 beta-hydroxysteroid dehydrogenase by a licorice-derived steroidal inhibitor.

作者信息

Ghosh D, Erman M, Wawrzak Z, Duax W L, Pangborn W

机构信息

Hauptman-Woodward Medical Research Institute, Buffalo, NY 14203-1196.

出版信息

Structure. 1994 Oct 15;2(10):973-80. doi: 10.1016/s0969-2126(94)00099-9.

Abstract

BACKGROUND

Bacterial 3 alpha, 20 beta-hydroxysteroid dehydrogenase (3 alpha, 20 beta-HSD) reversibly oxidizes the 3 alpha and 20 beta hydroxyl groups of androstanes and pregnanes and uses nicotinamide adenine dinucleotide as a cofactor. 3 alpha, 20 beta-HSD belongs to a family of short-chain dehydrogenases that has a highly conserved Tyr-X-X-X-Lys sequence. The family includes mammalian enzymes involved in hypertension, digestion, fertility and spermatogenesis. Several members of the enzyme family, including 3 alpha, 20 beta-HSD, are competitively inhibited by glycyrrhizic acid, a steroidal compound found in licorice, and its derivative, carbenoxolone, an anti-inflammatory glucocorticoid.

RESULTS

The three-dimensional structure of the enzyme-carbenoxolone complex has been determined and refined at 2.2 A resolution to a crystallographic R-factor of 19.4%. The hemisuccinate side chain of carbenoxolone makes a hydrogen bond with the hydroxyl group of the conserved residue Tyr152 and occupies the position of the nicotinamide ring of the cofactor. The occupancies of the inhibitor in four independent catalytic sites refine to 100%, 95%, 54% and 36%.

CONCLUSIONS

The steroid binds at the catalytic site in a mode much like the previously proposed mode of binding of the substrate cortisone. No bound cofactor molecules were found. The varying occupancy of steroid molecules observed in the four catalytic sites is either due to packing differences or indicates a cooperative effect among the four sites. The observed binding accounts for the inhibition of 3 alpha, 20 beta-HSD.

摘要

背景

细菌3α,20β-羟基类固醇脱氢酶(3α,20β-HSD)可逆地氧化雄烷和孕烷的3α和20β羟基,并使用烟酰胺腺嘌呤二核苷酸作为辅因子。3α,20β-HSD属于短链脱氢酶家族,该家族具有高度保守的Tyr-X-X-X-Lys序列。该家族包括参与高血压、消化、生育和精子发生的哺乳动物酶。该酶家族的几个成员,包括3α,20β-HSD,受到甘草中发现的甾体化合物甘草酸及其衍生物、抗炎糖皮质激素甘珀酸的竞争性抑制。

结果

已确定并精制了酶-甘珀酸复合物的三维结构,分辨率为2.2埃,晶体学R因子为19.4%。甘珀酸的半琥珀酸侧链与保守残基Tyr152的羟基形成氢键,并占据辅因子烟酰胺环的位置。抑制剂在四个独立催化位点的占有率分别精制为100%、95%、54%和36%。

结论

类固醇以一种与先前提出的底物可的松结合模式非常相似的方式结合在催化位点。未发现结合的辅因子分子。在四个催化位点观察到的类固醇分子占有率的变化要么是由于堆积差异,要么表明四个位点之间存在协同效应。观察到的结合解释了3α,20β-HSD的抑制作用。

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