首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Dual Oxidase 2 (Duox2) Regulates Pannexin 1-mediated ATP Release in Primary Human Airway Epithelial Cells via Changes in Intracellular pH and Not H2O2 Production
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Dual Oxidase 2 (Duox2) Regulates Pannexin 1-mediated ATP Release in Primary Human Airway Epithelial Cells via Changes in Intracellular pH and Not H2O2 Production

机译:双氧化酶2(Duox2)通过细胞内pH的变化而不是H2O2的产生来调节人呼吸道上皮细胞中Pannexin 1介导的ATP释放

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摘要

Human airway epithelial cells express pannexin 1 (Panx1) channels to release ATP, which regulates mucociliary clearance. Airway inflammation causes mucociliary dysfunction. Exposure of primary human airway epithelial cell cultures to IFN-γ for 48 h did not alter Panx1 protein expression but significantly decreased ATP release in response to hypotonic stress. The IFN-γ-induced functional down-regulation of Panx1 was due to the up-regulation of dual oxidase 2 (Duox2). Duox2 suppression by siRNA led to an increase in ATP release in control cells and restoration of ATP release in cells treated with IFN-γ. Both effects were reduced by the pannexin inhibitor probenecid. Duox2 up-regulation stoichiometrically increases H2O2 and proton production. H2O2 inhibited Panx1 function temporarily by formation of disulfide bonds at the thiol group of its terminal cysteine. Long-term exposure to H2O2, however, had no inhibitory effect. To assess the role of cellular acidification upon IFN-γ treatment, fully differentiated airway epithelial cells were exposed to ammonium chloride to alkalinize the cytosol. This led to a 2-fold increase in ATP release in cells treated with IFN-γ that was also inhibited by probenecid. Duox2 knockdown also partially corrected IFN-γ-mediated acidification. The direct correlation between intracellular pH and Panx1 open probability was shown in oocytes. Therefore, airway epithelial cells release less ATP in response to hypotonic stress in an inflammatory environment (IFN-γ exposure). Decreased Panx1 function is a response to cell acidification mediated by IFN-γ-induced up-regulation of Duox2, representing a novel mechanism for mucociliary dysfunction in inflammatory airway diseases.
机译:人气道上皮细胞表达pannexin 1(Panx1)通道以释放ATP,从而调节粘膜纤毛清除。气道炎症引起粘膜纤毛功能障碍。将原代人气道上皮细胞培养物暴露于IFN-γ48 h不会改变Panx1蛋白的表达,但会显着降低对低渗应激的ATP释放。 IFN-γ诱导的Panx1功能下调是由于双重氧化酶2(Duox2)的上调。 siRNA对Duox2的抑制导致对照细胞中ATP释放增加,而用IFN-γ处理的细胞中ATP释放恢复。潘尼辛抑制剂丙磺舒降低了这两种作用。 Duox2上调化学计量增加了H2O2和质子的产生。 H2O2通过在其末端半胱氨酸的巯基上形成二硫键来暂时抑制Panx1的功能。但是,长期暴露于H2O2没有抑制作用。为了评估细胞酸化在IFN-γ处理中的作用,将完全分化的气道上皮细胞暴露于氯化铵以碱化细胞溶质。这导致用IFN-γ处理的细胞中ATP释放增加2倍,而丙磺舒也抑制了该释放。 Duox2敲低还部分纠正了IFN-γ介导的酸化作用。在卵母细胞中显示了细胞内pH和Panx1开放可能性之间的直接相关性。因此,在炎性环境(IFN-γ暴露)下,对低渗应激的反应,气道上皮细胞释放较少的ATP。 Panx1功能下降是由IFN-γ诱导的Duox2上调介导的细胞酸化反应,代表炎症性气道疾病粘膜纤毛功能障碍的新机制。

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