School of Life Sciences, Lanzhou University, Lanzhou 730000, PR China; Institute of Urology, Lanzhou University Second Hospital, Key Laboratory of Urological Diseases in Gansu Province, Gansu Nephro-Urological Clinical Center, Lanzhou, Gansu 730000, PR China.
School of Life Sciences, Lanzhou University, Lanzhou 730000, PR China.
J Hazard Mater. 2016 Apr 15;307:193-201. doi: 10.1016/j.jhazmat.2015.12.045. Epub 2015 Dec 29.
The compound p-nitrophenol, which shows the anti-androgenic activity, can easily become anthropogenic pollutants and pose a threat to the environment and human health. Previous work indicates that the anti-androgenic mechanism of p-nitrophenol is complex and may involve several components in the AR signaling pathway, but the molecular details of how p-nitrophenol inhibits AR signaling are still not quite clear. Here, we characterized p-nitrophenol binds to the FK1 domain of an AR positive regulator FKBP51 with micromolar affinity and structural analysis of FK1 domain in complex with p-nitrophenol revealed that p-nitrophenol occupies a hydrophobic FK1 pocket that is vital for AR activity enhancement. Molecular dynamics simulation indicated that p-nitrophenol is stably bound to the FK1 pocket and the hotspot residues that involved p-nitrophenol binding are mainly hydrophobic and overlap with the AR interaction site. Furthermore, we showed that p-nitrophenol inhibits the androgen-dependent growth of human prostate cancer cells, possibly through down-regulating the expression levels of AR activated downstream genes. Taken together, our data suggests that p-nitrophenol suppresses the AR signaling pathway at least in part by blocking the interaction between AR and its positive regulator FKBP51. We believe that our findings could provide new guidelines for assessing the potential health effects of p-nitrophenol.
具有抗雄激素活性的化合物对硝基苯酚很容易成为人为污染物,对环境和人类健康构成威胁。先前的工作表明,对硝基苯酚的抗雄激素作用机制复杂,可能涉及 AR 信号通路中的几个成分,但对硝基苯酚如何抑制 AR 信号的分子细节尚不清楚。在这里,我们证实了对硝基苯酚以微摩尔亲和力结合到 AR 正调节剂 FKBP51 的 FK1 结构域上,对 FK1 结构域与对硝基苯酚复合物的结构分析表明,对硝基苯酚占据了一个对 AR 活性增强至关重要的疏水性 FK1 口袋。分子动力学模拟表明,对硝基苯酚稳定地结合到 FK1 口袋中,涉及对硝基苯酚结合的热点残基主要是疏水性的,与 AR 相互作用位点重叠。此外,我们表明对硝基苯酚通过下调 AR 激活的下游基因的表达水平来抑制雄激素依赖性的人前列腺癌细胞生长。总之,我们的数据表明,对硝基苯酚至少部分通过阻断 AR 与其正调节剂 FKBP51 之间的相互作用来抑制 AR 信号通路。我们相信,我们的研究结果可以为评估对硝基苯酚的潜在健康影响提供新的指导。