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人芳香酶(CYP19A1)的酶促作用及抑制机制:基于量子力学/分子力学和经典分子动力学模拟的计算视角

Enzymatic and Inhibition Mechanism of Human Aromatase (CYP19A1) Enzyme. A Computational Perspective from QM/MM and Classical Molecular Dynamics Simulations.

作者信息

Sgrignani Jacopo, Cavalli Andrea, Colombo Giorgio, Magistrato Alessandra

机构信息

CNR-IOM-Democritos National Simulation Center c/o International School for advanced Studies (SISSA/ISAS) via Bonomea 265, Trieste, Italy.

出版信息

Mini Rev Med Chem. 2016;16(14):1112-24. doi: 10.2174/1389557516666160623101129.

Abstract

The enzyme human aromatase (HA), a member of the cytochrome P450 family, catalyses in a highly specific and peculiar manner the conversion of estrogens to androgens. Thus, this enzyme is a relevant target for inhibitor design for the treatment of breast cancer and currently there are several HA inhibitors employed in clinical practice. The HA crystal structure was solved only in 2009 and, since then, several studies have been done to characterize a variety of its structural, dynamical and mechanistic properties. In the last decade, the predictive power and the accuracy of computer simulations techniques, either relying on force field or on "ab initio" description of the system, has enormously increased. This was mainly due to the development of more accurate algorithms, which allow accelerating the time-scale accessible by simulations techniques, and to the increase of computer power. Hence, computer simulations can now accurately paint an atomistic picture to the molecular mechanism of biomolecules providing also an estimate of the kinetic and thermodynamic properties of the enzyme at increasingly quantitative level. In this review, on the basis of selected examples taken from our work, we summarize current active research topics concerning HA enzyme, with a focus on computational studies. In particular, we will illustrate current results and novel hypothesis concerning the final (rate-determining) aromatization step promoted by this enzyme, on how the structural/dynamics/functional properties of HA are modulated in a membrane lipophilic environment, and finally on novel possible (allosteric) inhibition mechanisms which may modulate estrogen production in HA.

摘要

人芳香化酶(HA)是细胞色素P450家族的成员之一,它以高度特异性和独特的方式催化雌激素向雄激素的转化。因此,这种酶是乳腺癌治疗中抑制剂设计的一个相关靶点,目前有几种HA抑制剂应用于临床实践。HA的晶体结构直到2009年才得到解析,从那时起,人们开展了多项研究来表征其各种结构、动力学和机制特性。在过去十年中,无论是基于力场还是基于系统的“从头算”描述的计算机模拟技术的预测能力和准确性都有了极大提高。这主要归功于更精确算法的发展,这些算法能够加快模拟技术可达到的时间尺度,以及计算机能力的提升。因此,计算机模拟现在能够精确地描绘生物分子分子机制的原子水平图像,还能在越来越定量的水平上估计酶的动力学和热力学性质。在这篇综述中,基于我们工作中选取的实例,我们总结了当前关于HA酶的活跃研究主题,重点是计算研究。特别是,我们将阐述关于该酶促进的最终(速率决定)芳香化步骤的当前结果和新假设,关于HA的结构/动力学/功能特性在膜脂环境中是如何被调节的,以及最后关于可能调节HA中雌激素产生的新的(变构)抑制机制。

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