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虚拟筛选鉴定出天然 Keap1-Nrf2 PPI 抑制剂通过 Nrf2-mir214-Traf3 轴缓解炎症性骨质疏松症。

Virtual screening identified natural Keap1-Nrf2 PPI inhibitor alleviates inflammatory osteoporosis through Nrf2-mir214-Traf3 axis.

机构信息

Department of Orthopedic Surgery, The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang, China; Orthopedic Research Institute of Zhejiang University, Hangzhou, Zhejiang, China; Key Laboratory of Motor System Disease Research and Precision Therapy of Zhejiang Province Hangzhou, Zhejiang, China.

Department of Orthopedic Surgery, The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang, China; Orthopedic Research Institute of Zhejiang University, Hangzhou, Zhejiang, China; Key Laboratory of Motor System Disease Research and Precision Therapy of Zhejiang Province Hangzhou, Zhejiang, China.

出版信息

Free Radic Biol Med. 2021 Aug 1;171:365-378. doi: 10.1016/j.freeradbiomed.2021.05.020. Epub 2021 May 14.

Abstract

Overactive osteoclastogenesis is involved in the inflammatory bone loss and could be target for therapy. Here, we applied transcription factor enrichment analysis using public inflammatory osteolysis datasets and identified Nrf2 as the potential therapeutic target. Additionally, in-silico screening was performed to dig out Nrf2-Keap1 PPI inhibitor and Forsythoside-β was found to be the best-performing PHG compound. We firstly tested the effect of Forsythoside-β in inflammatory osteoporosis models and found it was able to attenuate the bone loss by inhibiting osteoclastogenesis and activating Nrf2-signaling in vivo. Forsythoside-β was capable to suppress the differentiation of osteoclast in time and dose-dependent manners in vitro. Further, Forsythoside-β could inhibit the production of reactive oxygen species and induce Nrf2 nuclear-translocation by interrupting Nrf2-Keap1 PPI. Recently, Nrf2 was identified as the epigenetic regulator modulating levels of miRNA in various diseases. We discovered that Forsythoside-β could suppress the expression of mir-214-3p, one of most variable miRNAs during osteoclastogenesis. To clarify the undermining mechanism, by utilizing chip-seq dataset, we found that Nrf2 could bind to promoter of mir-214-3p and further regulate this miRNA. Collectively, Forsythoside-β was able to prevent bone loss through Nrf2-mir-214-3p-Traf3 axis, which could be a promising candidate for treating inflammatory bone loss in the future.

摘要

破骨细胞过度活化参与炎症性骨丢失,可能成为治疗的靶点。在这里,我们应用公共炎症性骨溶解数据集进行转录因子富集分析,确定 Nrf2 是潜在的治疗靶点。此外,还进行了基于计算机的筛选,以挖掘 Nrf2-Keap1 PPI 抑制剂,发现 Forsythoside-β 是表现最佳的 PHG 化合物。我们首先在炎症性骨质疏松模型中测试了 Forsythoside-β 的作用,发现它能够通过抑制破骨细胞生成和激活体内 Nrf2 信号通路来减轻骨丢失。Forsythoside-β 能够在体外以时间和剂量依赖的方式抑制破骨细胞的分化。此外,Forsythoside-β 可以通过中断 Nrf2-Keap1 PPI 来抑制活性氧的产生并诱导 Nrf2 核易位。最近,Nrf2 被鉴定为表观遗传调节剂,可调节各种疾病中 miRNA 的水平。我们发现 Forsythoside-β 可以抑制 mir-214-3p 的表达,mir-214-3p 是破骨细胞生成过程中变化最大的 miRNA 之一。为了阐明其破坏机制,我们利用芯片-seq 数据集发现,Nrf2 可以结合 mir-214-3p 的启动子并进一步调节该 miRNA。总之,Forsythoside-β 能够通过 Nrf2-mir-214-3p-Traf3 轴预防骨丢失,这可能是未来治疗炎症性骨丢失的有前途的候选药物。

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