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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Requirement for Both JAK-Mediated PI3K Signaling and ACT1/TRAF6/TAK1-Dependent NF-{kappa}B Activation by IL-17A in Enhancing Cytokine Expression in Human Airway Epithelial Cells.
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Requirement for Both JAK-Mediated PI3K Signaling and ACT1/TRAF6/TAK1-Dependent NF-{kappa}B Activation by IL-17A in Enhancing Cytokine Expression in Human Airway Epithelial Cells.

机译:IL-17A激活JAK介导的PI3K信号和依赖ACT1 / TRAF6 / TAK1的NF- {kappa} B的激活,可增强人气道上皮细胞的细胞因子表达。

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摘要

Through DNA microarray analysis and quantitative PCR verification, we have identified additional IL-17A-inducible genes-IL-19, CXCL-1, -2, -3, -5, and -6-in well-differentiated normal human bronchial epithelial cells. These genes, similar to previously described human beta-defensin-2 (HBD-2) and CCL-20, were induced by a basolateral treatment of IL-17A, and regulated by PI3K signaling and NF-kappaB activation. For PI3K signaling, increases of cellular PIP(3) and phosphorylation of downstream molecules, such as Akt and glycogen synthase kinase-3beta (GSK3beta) (S9), were detected. Induced gene expression and HBD-2 promoter activity were attenuated by LY294002, p110alpha small-interfering RNA (siRNA), as well as by an overexpression of constitutively active GSK3beta(S9A) or wild-type phosphatase and tensin homolog. Increased phosphorylation of JAK1/2 after IL-17A treatment was detected in primary normal human bronchial epithelium cells. Transfected siRNAs of JAK molecules and JAK inhibitor I decreased IL-17A-induced gene expression and GSK3beta(S9) phosphorylation. However, both JAK inhibitor I and PI3K inhibitor had no effect on the DNA-binding activities of p65 and p50 to NF-kappaB consensus sequences. This result suggested a JAK-associated PI3K signaling axis is independent from NF-kappaB activation. With siRNA to knockdown STIR (similar expression to fibroblast growth factor and IL-17R; Toll-IL-1R)-related signaling molecules, such as Act1, TNFR-associated factor 6 (TRAF6), and TGF-beta-activated kinase 1 (TAK1), and transfection of A52R, an inhibitor of the MyD88/TRAF6 complex, or dominant-negative TAK1, IL-17A-inducible gene expression and HBD-2 promoter activity were reduced. Additionally, IL-17A-induced p65 and p50 NF-kappaB activations were confirmed and their nuclear translocations were down-regulated by siRNAs of TRAF6 and TAK1. These results suggest that two independent and indispensable signaling pathways-1) JAK1-associated PI3K signaling and 2) Act1/TRAF6/TAK1-mediated NF-kappaB activation-are stimulated by IL-17A to regulate gene induction in human airway epithelial cells.
机译:通过DNA芯片分析和定量PCR验证,我们在分化良好的正常人支气管上皮细胞中鉴定了其他IL-17A诱导型基因IL-19,CXCL-1,-2,-3,-5和-6 。这些基因类似于先前描述的人β-防御素2(HBD-2)和CCL-20,是通过IL-17A的基底外侧处理诱导的,并受到PI3K信号传导和NF-κB激活的调控。对于PI3K信号,检测到细胞PIP(3)的增加和下游分子(如Akt和糖原合酶激酶3beta(GSK3beta)(S9))的磷酸化。诱导基因表达和HBD-2启动子活性被LY294002,p110alpha小干扰RNA(siRNA)以及组成型活性GSK3beta(S9A)或野生型磷酸酶和张力蛋白同源物的过表达所减弱。在原代正常人支气管上皮细胞中检测到IL-17A处理后JAK1 / 2磷酸化增加。 JAK分子和JAK抑制剂I的转染siRNA降低了IL-17A诱导的基因表达和GSK3beta(S9)磷酸化。但是,JAK抑制剂I和PI3K抑制剂均对p65和p50与NF-κB共有序列的DNA结合活性没有影响。该结果表明,与JAK相关的PI3K信号轴独立于NF-κB激活。使用siRNA敲低STIR(与成纤维细胞生长因子和IL-17R相似的表达; Toll-IL-1R)相关的信号分子,例如Act1,TNFR相关因子6(TRAF6)和TGF-β激活的激酶1( TAK1)和MyD88 / TRAF6复合物的抑制剂A52R或显性阴性TAK1的转染,IL-17A诱导型基因表达和HBD-2启动子活性降低。此外,证实了IL-17A诱导的p65和p50NF-κB激活,并且它们的核易位由TRAF6和TAK1的siRNA下调。这些结果表明IL-17A刺激了两个独立且必不可少的信号传导途径:1)JAK1相关的PI3K信号传导和2)Act1 / TRAF6 / TAK1介导的NF-κB活化,以调节人气道上皮细胞的基因诱导。

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