首页> 外文OA文献 >Up-regulation and Sustained Activation of Stat1 Are Essential for Interferon-γ (IFN-γ)-induced Dual Oxidase 2 (Duox2) and Dual Oxidase A2 (DuoxA2) Expression in Human Pancreatic Cancer Cell Lines*
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Up-regulation and Sustained Activation of Stat1 Are Essential for Interferon-γ (IFN-γ)-induced Dual Oxidase 2 (Duox2) and Dual Oxidase A2 (DuoxA2) Expression in Human Pancreatic Cancer Cell Lines*

机译:Stat1的上调和持续激活对于干扰素-γ(IFN-γ)诱导的人胰腺癌细胞系中的双氧化酶2(Duox2)和双氧化酶A2(DuoxA2)表达必不可少*

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摘要

Dual oxidase 2 is a member of the NADPH oxidase (Nox) gene family that plays a critical role in the biosynthesis of thyroid hormone as well as in the inflammatory response of the upper airway mucosa and in wound healing, presumably through its ability to generate reactive oxygen species, including H2O2. The recently discovered overexpression of Duox2 in gastrointestinal malignancies, as well as our limited understanding of the regulation of Duox2 expression, led us to examine the effect of cytokines and growth factors on Duox2 in human tumor cells. We found that exposure of human pancreatic cancer cells to IFN-γ (but not other agents) produced a profound up-regulation of the expression of Duox2, and its cognate maturation factor DuoxA2, but not other members of the Nox family. Furthermore, increased Duox2/DuoxA2 expression was closely associated with a significant increase in the production of both intracellular reactive oxygen species and extracellular H2O2. Examination of IFN-γ-mediated signaling events demonstrated that in addition to the canonical Jak-Stat1 pathway, IFN-γ activated the p38-MAPK pathway in pancreatic cancer cells, and both played an important role in the induction of Duox2 by IFN-γ. Duox2 up-regulation following IFN-γ exposure is also directly associated with the binding of Stat1 to elements of the Duox2 promoter. Our findings suggest that the pro-inflammatory cytokine IFN-γ initiates a Duox2-mediated reactive oxygen cascade in human pancreatic cancer cells; reactive oxygen species production in this setting could contribute to the pathophysiologic characteristics of these tumors.
机译:双重氧化酶2是NADPH氧化酶(Nox)基因家族的成员,在甲状腺激素的生物合成以及上呼吸道粘膜的炎症反应和伤口愈合中起着关键作用,大概是因为它具有产生反应性的能力氧气,包括H2O2。最近发现胃肠道恶性肿瘤中Duox2的过表达,以及我们对Duox2表达调节的有限了解,导致我们研究了细胞因子和生长因子对人类肿瘤细胞中Duox2的影响。我们发现,人胰腺癌细胞暴露于IFN-γ(而不是其他药物)会产生Duox2及其相关成熟因子DuoxA2的表达上调,而Nox家族的其他成员则没有表达。此外,增加的Duox2 / DuoxA2表达与细胞内活性氧和细胞外H2O2产量的显着增加密切相关。 IFN-γ介导的信号转导事件的研究表明,除了经典的Jak-Stat1途径外,IFN-γ还激活了胰腺癌细胞中的p38-MAPK途径,并且两者均在IFN-γ诱导Duox2的过程中发挥了重要作用。 。 IFN-γ暴露后Duox2的上调也与Stat1与Duox2启动子元件的结合直接相关。我们的发现表明,促炎性细胞因子IFN-γ在人胰腺癌细胞中启动了Duox2介导的活性氧级联反应。在这种情况下,活性氧的产生可能有助于这些肿瘤的病理生理特征。

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