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High-Throughput Screening for TLR3–IFN Regulatory Factor 3 Signaling Pathway Modulators Identifies Several Antipsychotic Drugs as TLR Inhibitors

机译:TLR3-IFN调节因子3信号通路调节剂的高通量筛选确定了几种抗精神病药作为TLR抑制剂

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TLR3 is one of the major innate immune sensors of dsRNA. The signal transduction pathway activated by TLR3, upon binding to dsRNA, leads to the activation of two major transcription factors: NF-κB and IFN regulatory factor (IRF) 3. In an effort to identify specific chemical modulators of TLR3–IRF3 signal transduction pathway, we developed a cell-based readout system. Using the IFN-stimulated gene 56 promoter-driven firefly luciferase gene stably integrated in a TLR3-expressing HEK293 cell line, we were able to generate a cell line where treatment with dsRNA resulted in a dose-dependent induction of luciferase activity. A screen of two pharmacologically active compound libraries using this system identified a number of TLR3–IRF3 signaling pathway modulators. Among them we focused on a subset of inhibitors and characterized their mode of action. Several antipsychotic drugs, such as sertraline, trifluoperazine, and fluphenazine, were found to be direct inhibitors of the innate immune signaling pathway. These inhibitors also showed the ability to inhibit IFN-stimulated gene 56 induction mediated by TLR4 and TLR7/8 pathways. Interestingly, they did not show significant effects on TLR3-, TLR7-, and TLR8-mediated NF-κB activation. Detailed analysis of the signaling pathway indicated that these drugs might be exerting their inhibitory effects on IRF3 via PI3K signaling pathway. The data presented in this study provide mechanistic explanation of possible anti-inflammatory roles of some antipsychotic drugs.
机译:TLR3是dsRNA的主要先天免疫传感器之一。 TLR3激活的信号转导途径与dsRNA结合后,导致两个主要转录因子的激活:NF-κB和IFN调节因子(IRF)3。为确定TLR3-IRF3信号转导途径的特定化学调节剂,我们开发了一个基于单元的读出系统。使用稳定地整合在表达TLR3的HEK293细胞系中的IFN刺激基因56启动子驱动的萤火虫萤光素酶基因,我们能够生成一种细胞系,用dsRNA处理可导致剂量依赖的萤光素酶活性诱导。使用该系统对两个具有药理活性的化合物库进行了筛选,确定了许多TLR3-IRF3信号通路调节剂。在我们当中,我们集中于抑制剂的子集并表征了它们的作用方式。几种抗精神病药,例如舍曲林,三氟拉嗪和氟奋乃静,被发现是先天免疫信号通路的直接抑制剂。这些抑制剂还显示出抑制由TLR4和TLR7 / 8途径介导的IFN刺激的基因56诱导的能力。有趣的是,它们对TLR3-,TLR7-和TLR8介导的NF-κB活化没有显着影响。信号通路的详细分析表明,这些药物可能通过PI3K信号通路对IRF3发挥抑制作用。这项研究中提供的数据为某些抗精神病药物可能具有的抗炎作用提供了机械解释。

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