State Key Laboratory of Natural Medicines, China Pharmaceutical University, No. 24 Tongjia Lane, Nanjing, 210009, China.
College of Chemical Engineering, Nanjing Forestry University, 159 Longpan Road, Nanjing, 210037, China.
Cell Biol Toxicol. 2023 Aug;39(4):1215-1235. doi: 10.1007/s10565-022-09737-x. Epub 2022 Jul 8.
Epimedii folium (EF) is an effective herbal medicine in osteoporosis treatment, but the clinical utilization of EF has been limited due to potential hepatotoxicity. The previous studies identified that baohuoside I (BI), the main active component of EF, was relevant to EF-induced liver injury. However, the mechanisms of BI causing direct injury to hepatocytes remain unclear. Here, we reveal that BI inhibits FXR-mediated signaling pathway via targeting estrogen receptor α (ER α), leading to the accumulation of bile acids (BAs). Targeted bile acid analyses show BI alters the BA composition and distribution, resulting in impaired BA homeostasis. Mechanistically, BI induces FXR-dependent hepatotoxicity at transcriptional level. Additionally, ER α is predicted to bind to the FXR promoter region based on transcription factor binding sites databases and we further demonstrate that ER α positively regulates FXR promoter activity and affects the expression of target genes involved in BA metabolism. Importantly, we discover that ER α and its mediated FXR transcription regulation might be involved in BI-induced liver injury via ligand-dependent ER α degradation. Collectively, our findings indicate that FXR is a newly discovered target gene of ER α mediated BI-induced liver injury, and suggest BI may be responsible for EF-induced liver injury.
淫羊藿叶(EF)是治疗骨质疏松症的有效草药,但由于潜在的肝毒性,EF 的临床应用受到限制。以前的研究表明,淫羊藿苷 I(BI)是 EF 的主要活性成分,与 EF 诱导的肝损伤有关。然而,BI 导致肝细胞直接损伤的机制尚不清楚。在这里,我们揭示 BI 通过靶向雌激素受体 α(ER α)抑制 FXR 介导的信号通路,导致胆汁酸(BAs)的积累。靶向胆汁酸分析表明 BI 改变了 BA 的组成和分布,导致 BA 动态平衡受损。在机制上,BI 在转录水平上诱导 FXR 依赖性肝毒性。此外,根据转录因子结合位点数据库预测 ER α 结合到 FXR 启动子区域,我们进一步证明 ER α 正向调节 FXR 启动子活性,并影响涉及 BA 代谢的靶基因的表达。重要的是,我们发现 ER α 及其介导的 FXR 转录调节可能通过配体依赖性 ER α 降解参与 BI 诱导的肝损伤。总之,我们的研究结果表明,FXR 是 ER α 介导的 BI 诱导肝损伤的一个新发现的靶基因,并表明 BI 可能是 EF 诱导肝损伤的原因。