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对人17β-羟基类固醇脱氢酶1型底物抑制的新见解。

New insights into the substrate inhibition of human 17β-hydroxysteroid dehydrogenase type 1.

作者信息

Li Tang, Song Xiaohui, Stephen Preyesh, Yin Heng, Lin Sheng-Xiang

机构信息

Dalian Engineering Research Center for Carbohydrate Agricultural Preparations, Liaoning Provincial Key Laboratory of Carbohydrates, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China; CHU de Québec Research Center and Department of Molecular Medicine, Laval University, Québec, QC, Canada.

Dalian Engineering Research Center for Carbohydrate Agricultural Preparations, Liaoning Provincial Key Laboratory of Carbohydrates, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.

出版信息

J Steroid Biochem Mol Biol. 2023 Apr;228:106246. doi: 10.1016/j.jsbmb.2023.106246. Epub 2023 Jan 10.

Abstract

Human type 1 17β-hydroxysteroid dehydrogenase (17β-HSD1),a member of the short-chain dehydrogenase/reductase family, catalyzes the last step in the bioactivation of the most potent estrogen estradiol with high specificity and is thus involved in estrogen-dependent diseases. As an oxidoreductase, 17β-HSD1 can utilize both triphosphate and diphosphate cofactors in reaction at the molecular level, but more specific with triphosphate cofactor. The NADPH is much higher than NADP+ in living cells leading to preliminary reduction action. The enzyme also showed substrate-induced inhibition unprecedented in other members of 17β-HSDs. Our previous study elucidated the structural mechanism of substrate inhibition is due to the reversely bound estrone (E1) in the substrate-binding pocket of the enzyme resulting in a dead-end complex. However, the effect of the cofactor preference on the substrate inhibition of the enzyme is not yet clear. In the present study, we solved the ternary crystal structures of 17β-HSD1 in complex with E1 and cofactor analog NAD+ . Combined with molecular dynamics simulation using the enzyme with NADH/NADPH and different oriented E1 (normally oriented, E1N; reversely oriented, E1R), such ternary structure provides a complete picture of enzyme-substrate-cofactor interactions. The results reveal that different cofactors and substrate binding mode affect the allosteric effect between the two subunits of the enzyme. And the results from MD simulations confirmed that His plays a key role in the formation of dead-end complex in NADPH complex, and the absence of stable interaction between His and E1R in the NADH complex should be the main reason for its lack of substrate inhibition.

摘要

人类1型17β-羟基类固醇脱氢酶(17β-HSD1)是短链脱氢酶/还原酶家族的成员,它以高特异性催化最有效的雌激素雌二醇生物活化的最后一步,因此与雌激素依赖性疾病有关。作为一种氧化还原酶,17β-HSD1在分子水平的反应中既可以利用三磷酸辅因子也可以利用二磷酸辅因子,但对三磷酸辅因子更具特异性。在活细胞中,还原型辅酶II(NADPH)远高于氧化型辅酶II(NADP+),导致初步的还原作用。该酶还表现出17β-HSDs其他成员中前所未有的底物诱导抑制作用。我们之前的研究阐明,底物抑制的结构机制是由于酶的底物结合口袋中反向结合的雌酮(E1)导致形成了终止复合物。然而,辅因子偏好对该酶底物抑制的影响尚不清楚。在本研究中,我们解析了17β-HSD1与E1和辅因子类似物烟酰胺腺嘌呤二核苷酸(NAD+)复合物的三元晶体结构。结合使用含有还原型辅酶I/还原型辅酶II(NADH/NADPH)和不同取向E1(正常取向,E1N;反向取向,E1R)的酶进行的分子动力学模拟,这种三元结构提供了酶-底物-辅因子相互作用的完整图景。结果表明,不同的辅因子和底物结合模式会影响酶两个亚基之间的变构效应。分子动力学模拟结果证实,组氨酸(His)在NADPH复合物中终止复合物的形成中起关键作用,而在NADH复合物中His与E1R之间缺乏稳定相互作用应该是其缺乏底物抑制的主要原因。

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