Molecular Defenses Section, Laboratory of Host Defenses, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland, United States of America.
PLoS One. 2011;6(12):e28198. doi: 10.1371/journal.pone.0028198. Epub 2011 Dec 1.
NADPH oxidase-2 (Nox2)/gp91(phox) and p47(phox) deficient mice are prone to hyper-inflammatory responses suggesting a paradoxical role for Nox2-derived reactive oxygen species (ROS) as anti-inflammatory mediators. The molecular basis for this mode of control remains unclear. Here we demonstrate that IFNγ/LPS matured p47(phox-/-)-ROS deficient mouse dendritic cells (DC) secrete more IL-12p70 than similarly treated wild type DC, and in an in vitro co-culture model IFNγ/LPS matured p47(phox-/-) DC bias more ovalbumin-specific CD4(+) T lymphocytes toward a Th1 phenotype than wild type (WT) DC through a ROS-dependent mechanism linking IL-12p70 expression to regulation of p38-MAPK activation. The Nox2-dependent ROS production in DC negatively regulates proinflammatory IL-12 expression in DC by constraining p38-MAPK activity. Increasing endogenous H(2)O(2) attenuates p38-MAPK activity in IFNγ/LPS stimulated WT and p47(phox-/-) DC, which suggests that endogenous Nox 2-derived ROS functions as a secondary messenger in the activated p38-MAPK signaling pathway during IL-12 expression. These findings indicate that ROS, generated endogenously by innate and adaptive immune cells, can function as important secondary messengers that can regulate cytokine production and immune cell cross-talk to control during the inflammatory response.
NADPH 氧化酶-2(Nox2)/gp91(phox)和 p47(phox)缺陷小鼠易发生过度炎症反应,表明 Nox2 衍生的活性氧(ROS)作为抗炎介质具有矛盾作用。这种控制模式的分子基础仍不清楚。在这里,我们证明 IFNγ/LPS 成熟的 p47(phox-/-)-ROS 缺陷小鼠树突状细胞(DC)分泌的 IL-12p70 多于类似处理的野生型 DC,并且在体外共培养模型中,IFNγ/LPS 成熟的 p47(phox-/-)DC 通过 ROS 依赖性机制将更多的卵清蛋白特异性 CD4(+)T 淋巴细胞偏向 Th1 表型比野生型(WT)DC,该机制将 IL-12p70 表达与调节 p38-MAPK 激活联系起来。DC 中的 Nox2 依赖性 ROS 产生通过限制 p38-MAPK 活性来负调节 DC 中的促炎 IL-12 表达。增加内源性 H2O2 可减弱 IFNγ/LPS 刺激的 WT 和 p47(phox-/-)DC 中的 p38-MAPK 活性,这表明内源性 Nox2 衍生的 ROS 作为激活的 p38-MAPK 信号通路中的第二信使在 IL-12 表达过程中起作用。这些发现表明,固有和适应性免疫细胞产生的 ROS 可以作为重要的第二信使,调节细胞因子产生和免疫细胞串扰,以控制炎症反应。