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Determination and analysis of agonist and antagonist potential of naturally occurring flavonoids for estrogen receptor (ERα) by various parameters and molecular modelling approach

机译:通过各种参数和分子建模方法测定和分析天然类黄酮对雌激素受体(ERα)的激动剂和拮抗剂潜力

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摘要

Most estrogen receptor α (ERα) ligands target the ligand binding domain (LBD). Agonist 17β-estradiol (E2) and tamoxifen (TM, known SERM), bind to the same site within the LBD. However, structures of ligand-bound complexes show that E2 and TM induce different conformations of helix 12 (H12). During the molecular modelling studies of some naturally occurring flavonoids such as quercetin, luteolin, myricetin, kaempferol, naringin, hesperidin, galangin, baicalein and epicatechin with human ERα (3ERT and 1GWR), we observed that most of the ligands bound to the active site pocket of both 3ERT and 1GWR. The docking scores, interaction analyses, and conformation of H12 provided the data to support for the estrogenic or antiestrogenic potential of these flavonoids to a limited degree. Explicit molecular dynamics for 50 ns was performed to identify the stability and compatibility pattern of protein-ligand complex and RMSD were obtained. Baicalein, epicatechin, and kaempferol with 1GWR complex showed similar RMSD trend with minor deviations in the protein backbone RMSD against 1GWR-E2 complex that provided clear indications that ligands were stable throughout the explicit molecular simulations in the protein and outcome of naringin-3ERT complex had an upward trend but stable throughout the simulations and all molecular dynamics showed stability with less than overall 1 Å deviation throughout the simulations. To examine their estrogenic or antiestrogenic potential, we studied the effect of the flavonoids on viability, progesterone receptor expression and 3xERE/3XERRE-driven reporter gene expression in ERα positive and estrogen responsive MCF-7 breast cancer cells. Epicatechin, myricetin, and kaempferol showed estrogenic potential at 5 µM concentration.
机译:大多数雌激素受体α(ERα)配体靶向配体结合域(LBD)。激动剂17β-雌二醇(E2)和他莫昔芬(TM,称为SERM)与LBD内的相同位点结合。但是,配体结合的复合物的结构表明E2和TM诱导了螺旋12(H12)的不同构象。在对某些天然存在的类黄酮(例如槲皮素,木犀草素,杨梅素,山奈酚,柚皮苷,橙皮苷,高良姜精,黄ical素和表儿茶素)与人ERα(3ERT和1GWR)进行分子建模研究时,我们观察到大多数配体均与活性位点结合3ERT和1GWR的口袋。 H12的对接分数,相互作用分析和构象为有限程度地支持这些类黄酮的雌激素或抗雌激素潜力提供了数据。进行了50 ns的显式分子动力学分析,以鉴定蛋白质-配体复合物和RMSD的稳定性和相容性模式。黄ical素,表儿茶素和山emp酚与1GWR复合物表现出相似的RMSD趋势,蛋白质骨架RMSD与1GWR-E2复合物的偏差较小,这清楚地表明配体在蛋白质的整个分子模拟过程中都是稳定的,而naringin-3ERT复合物具有上升趋势,但在整个模拟过程中保持稳定,并且所有分子动力学均显示出稳定性,在整个模拟过程中偏差均小于整体1Å。为了检查它们的雌激素或抗雌激素潜力,我们研究了类黄酮对ERα阳性和雌激素反应性MCF-7乳腺癌细胞的活力,孕酮受体表达和3xERE / 3XERRE驱动的报告基因表达的影响。表儿茶素,杨梅素和山奈酚在5μM浓度下显示雌激素潜能。

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