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Nonphagocytic Oxidase 1 Causes Death in Lung Epithelial Cells via a TNF-RI–JNK Signaling Axis

机译:非吞噬性氧化酶1通过TNF-RI–JNK信号轴导致肺上皮细胞死亡

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摘要

Airway epithelial cells are simultaneously exposed to and produce cytokines and reactive oxygen species (ROS) in inflammatory settings. The signaling events and the physiologic outcomes of exposure to these inflammatory mediators remain to be elucidated. Previously we demonstrated that in cultured mouse lung epithelial cells exposed to bolus administration of H2O2, TNF-α–induced NF-κB activity was inhibited, whereas c-Jun-N-terminal kinase (JNK) activation was enhanced via a mechanism involving TNF receptor-1 (TNF-RI). In this study we used the nonphagocytic NADPH oxidase (Nox1) to study the effects of endogenously produced ROS on a line of mouse alveolar type II epithelial cells. Nox1 expression and activation inhibited TNF-α–induced inhibitor of κB kinase (IKK), and NF-κB while promoting JNK activation and cell death. Nox1-induced JNK activation and cell death were attenuated through expression of a dominant-negative TNF-RI construct, implicating a role for TNF-RI in Nox1 signaling. Furthermore, Nox1 used the TNF-RI adaptor protein TNF-receptor–associated factor-2 (TRAF2), and the redox-regulated JNK MAP3K, apoptosis signal kinase-1 (ASK1), to activate JNK. In addition, ASK1 siRNA attenuated both Nox1-induced JNK activity and cell death. Collectively, these studies suggest a mechanism by which ROS produced in lung epithelial cells activate JNK and cause cell death using TNF-RI and the TRAF2–ASK1 signaling axis.
机译:气道上皮细胞在炎性环境中同时接触并产生细胞因子和活性氧(ROS)。暴露于这些炎症介质的信号传递事件和生理结果仍有待阐明。先前我们证明了在大剂量施用H2O2的培养的小鼠肺上皮细胞中,TNF-α诱导的NF-κB活性被抑制,而c-Jun-N端激酶(JNK)的激活通过涉及TNF受体的机制得以增强-1(TNF-RI)。在这项研究中,我们使用了非吞噬性NADPH氧化酶(Nox1)来研究内源性产生的ROS对小鼠II型肺泡上皮细胞系的影响。 Nox1的表达和激活抑制TNF-α诱导的κB激酶(IKK)和NF-κB抑制剂,同时促进JNK激活和细胞死亡。 Nox1诱导的JNK激活和细胞死亡通过显性阴性TNF-RI构建体的表达而减弱,这暗示了TNF-RI在Nox1信号传导中的作用。此外,Nox1使用TNF-RI衔接子蛋白TNF受体相关因子2(TRAF2)和氧化还原调节的JNK MAP3K细胞凋亡信号激酶1(ASK1)来激活JNK。此外,ASK1 siRNA减弱了Nox1诱导的JNK活性和细胞死亡。总的来说,这些研究提出了一种机制,通过这种机制,肺上皮细胞中产生的ROS可以利用TNF-RI和TRAF2-ASK1信号转导轴激活JNK并导致细胞死亡。

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