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口袋灵活性在关键残基精氨酸 394 调节雌激素受体 α 中的作用。

Role of pocket flexibility in the modulation of estrogen receptor alpha by key residue arginine 394.

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, Nanjing University, Nanjing, China.

出版信息

Environ Toxicol Chem. 2011 Feb;30(2):330-6. doi: 10.1002/etc.389.

DOI:10.1002/etc.389
PMID:21038436
Abstract

Estradiol derivatives, with similar structures as estradiol (E2) or estradiol metabolites, have been recognized to have detrimental health effects on wildlife and humans. However, data at the molecular level about interactions of these compounds with biological targets are still lacking. Herein, a flexible docking approach was used to characterize the molecular interaction of nine estradiol derivatives with estrogen receptor alpha (ERα) in the ligand-binding domain. All ligands were docked in the buried hydrophobic cavity of the steroid hormone pocket. In addition, the plasticity of an active site was also identified by reversing amino acid arginine 394 for better ligand-receptor binding affinity. Finally, bioassays based on genetically modified yeast strains were used to validate the quality of molecular simulation because of their rapidity and high sensitivity. The experimental findings about logarithm values of the median effective concentration (EC50) value had a linear correlation with computational binding affinity from molecular docking, which described a pattern of interaction between estradiol derivatives and ER. The estrogenic activity of all compounds, although more or less lower than E2, was proved to possess high severe environmental risks. Considering the sidechain flexibility in the ligand binding pocket, 17α-ethylestradiol-3-cyclopentylether was reported to correlate highly significantly with known induced fit conformational changes based upon proof-of-principle calculations on human ERα with the preservation of a strong salt bridge between glutamic acid 353 and arginine 394.

摘要

雌二醇衍生物与雌二醇(E2)或雌二醇代谢物具有相似的结构,已被认为对野生动物和人类的健康有不利影响。然而,关于这些化合物与生物靶标相互作用的分子水平数据仍然缺乏。在此,采用灵活的对接方法来描述 9 种雌二醇衍生物与雌激素受体α(ERα)在配体结合域中的分子相互作用。所有配体都被对接在甾体激素口袋的埋藏疏水性腔中。此外,还通过反转氨基酸精氨酸 394 来确定活性位点的可变性,以提高配体-受体结合亲和力。最后,由于其快速性和高灵敏度,使用基于基因改造酵母菌株的生物测定来验证分子模拟的质量。基于对数中值有效浓度(EC50)值的实验结果与分子对接的计算结合亲和力具有线性相关性,这描述了雌二醇衍生物与 ER 之间的相互作用模式。所有化合物的雌激素活性虽然或多或少低于 E2,但被证明具有很高的严重环境风险。考虑到配体结合口袋中的侧链灵活性,据报道,17α-乙基雌二醇-3-环戊醚与已知的诱导契合构象变化高度相关,这是基于对人类 ERα 的原理验证计算得出的,并且在谷氨酸 353 和精氨酸 394 之间保持着强烈的盐桥。

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