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强效芳香酶抑制剂及其抑制作用的分子机制。

Potent aromatase inhibitors and molecular mechanism of inhibitory action.

机构信息

Key Laboratory of Medicinal Chemistry for Natural Resource, Ministry of Education, School of Chemical Science and Technology, Yunnan University, Kunming 650091, PR China.

Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, NC 27695-7905, USA.

出版信息

Eur J Med Chem. 2018 Jan 1;143:426-437. doi: 10.1016/j.ejmech.2017.11.057. Epub 2017 Nov 22.

Abstract

Estrogen is a significant factor in the maintenance and progression of hormone-dependent breast cancer. As well known, aromatase mediates the production of estrogen. Thus, inhibition of aromatase with chemical molecules has been considered to be an effective treatment for estrogen receptor-positive (ER+) breast cancer. In this work, we designed and synthesized a series of novel non-steroidal molecules containing 2-phenylindole scaffold and moiety of either imidazole or 1,2,4-triazole to enhance their binding capacity with the aromatase. Among these molecules, a compound named as 8o was confirmed experimentally to have the highest inhibitory activity to aromatase. Further cell activity assay proved that compound 8o has low cytotoxicity and is a promising lead for developing novel aromatase inhibitors. Molecular modeling and simulation techniques were performed to identify the binding modes of letrozole and 8o with the aromatase. Analysis of energy of the two compound-aromatase complexes revealed that the 8o has low binding energy (strong binding affinity) to the aromatase as compared to letrozole, which was in accordance with the experimental results. As concluded, a combination of experimental and computational approaches facilitates us to understand the molecular mechanism of inhibitory action and discover more potent non-steroidal AIs against aromatase, thereby opening up a novel therapeutic strategy for hormone-dependent breast cancer.

摘要

雌激素是激素依赖性乳腺癌发生和发展的重要因素。众所周知,芳香酶介导雌激素的生成。因此,用化学分子抑制芳香酶已被认为是治疗雌激素受体阳性(ER+)乳腺癌的有效方法。在这项工作中,我们设计并合成了一系列含有 2-苯基吲哚骨架和咪唑或 1,2,4-三唑部分的新型非甾体分子,以增强它们与芳香酶的结合能力。在这些分子中,一种名为 8o 的化合物被实验证实对芳香酶具有最高的抑制活性。进一步的细胞活性测定证明,化合物 8o 具有低细胞毒性,是开发新型芳香酶抑制剂的有前途的先导化合物。进行了分子建模和模拟技术,以确定来曲唑和 8o 与芳香酶的结合模式。对两种化合物-芳香酶复合物的能量分析表明,与来曲唑相比,8o 与芳香酶的结合能(结合亲和力)较低,这与实验结果一致。总之,实验和计算方法的结合使我们能够理解抑制作用的分子机制,并发现更多针对芳香酶的强效非甾体类 AI,从而为激素依赖性乳腺癌开辟了新的治疗策略。

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