State Key Laboratory of Environmental Chemistry and Eco-toxicology, Research Center for Eco-environmental Sciences , Chinese Academy of Sciences , 18 Shuangqing Road , P.O. Box 2871, Beijing 100085 , China.
College of Resources and Environment , University of Chinese Academy of Sciences , Beijing 100039 , People's Republic of China.
Environ Sci Technol. 2018 Aug 7;52(15):8894-8902. doi: 10.1021/acs.est.8b02509. Epub 2018 Jul 27.
Estrogen-related receptor γ (ERRγ) is an orphan nuclear receptor having functional cross-talk with classical estrogen receptors. Here, we investigated whether ERRγ is a potential target of polybrominated diphenyl ethers (PBDEs) and their hydroxylated metabolites (OH-PBDEs). By using a fluorescence competitive binding method established in our laboratory, the binding potencies of 30 PBDEs/OH-PBDEs with ERRγ were determined for the first time. All of the tested OH-PBDEs and some PBDEs bound to ERRγ with K values ranging from 0.13-13.61 μM. The OH-PBDEs showed much higher binding potency than their parent PBDEs. A quantitative structure-activity relationship (QSAR) model was developed to analyze the chemical binding potencies in relation to their structural and chemical characteristics. The QSAR model indicated that the molecular size, relative ratios of aromatic atoms, and hydrogen bond donors and acceptors were crucial factors for PBDEs/OH-PBDEs binding. By using a reporter gene assay, we found that most of the low-brominated PBDEs/OH-PBDEs exerted agonistic activity toward ERRγ, while high-brominated PBDEs/OH-PBDEs had no effect on the basal ERRγ activity. The docking results showed that the low-brominated PBDEs/OH-PBDEs tended to take an agonistic binding mode while the high-brominated ones tended to take an antagonistic binding mode. Overall, our results suggest ERRγ to be a potential novel target for PBDEs/OH-PBDEs.
雌激素相关受体 γ (ERRγ) 是一种孤儿核受体,与经典的雌激素受体具有功能交叉对话。在这里,我们研究了 ERRγ 是否是多溴二苯醚 (PBDEs) 及其羟基代谢物 (OH-PBDEs) 的潜在靶标。通过使用我们实验室建立的荧光竞争结合方法,首次测定了 30 种 PBDEs/OH-PBDEs 与 ERRγ 的结合效力。所有测试的 OH-PBDEs 和一些 PBDEs 与 ERRγ 的结合 K 值范围为 0.13-13.61 μM。OH-PBDEs 与 ERRγ 的结合效力明显高于其母体 PBDEs。建立了定量构效关系 (QSAR) 模型,以分析与结构和化学特性相关的化学结合效力。QSAR 模型表明,分子大小、芳香原子的相对比例以及氢键供体和受体是 PBDEs/OH-PBDEs 结合的关键因素。通过报告基因检测,我们发现大多数低溴代 PBDEs/OH-PBDEs 对 ERRγ 表现出激动作用,而高溴代 PBDEs/OH-PBDEs 对基础 ERRγ 活性没有影响。对接结果表明,低溴代 PBDEs/OH-PBDEs 倾向于采取激动剂结合模式,而高溴代 PBDEs/OH-PBDEs 倾向于采取拮抗剂结合模式。总体而言,我们的研究结果表明 ERRγ 可能是 PBDEs/OH-PBDEs 的一个潜在新型靶标。