首页> 美国卫生研究院文献>American Journal of Physiology - Lung Cellular and Molecular Physiology >Biomarkers in Lung Diseases: from Pathogenesis to Prediction to New Therapies: IL-6 trans-signaling increases expression of airways disease genes in airway smooth muscle
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Biomarkers in Lung Diseases: from Pathogenesis to Prediction to New Therapies: IL-6 trans-signaling increases expression of airways disease genes in airway smooth muscle

机译:肺部疾病中的生物标志物:从发病机理到预测到新疗法:IL-6反信号增强气道平滑肌中气道疾病基因的表达

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摘要

Genetic data suggest that IL-6 trans-signaling may have a pathogenic role in the lung; however, the effects of IL-6 trans-signaling on lung effector cells have not been investigated. In this study, human airway smooth muscle (HASM) cells were treated with IL-6 (classical) or IL-6+sIL6R (trans-signaling) for 24 h and gene expression was measured by RNAseq. Intracellular signaling and transcription factor activation were assessed by Western blotting and luciferase assay, respectively. The functional effect of IL-6 trans-signaling was determined by proliferation assay. IL-6 trans-signaling had no effect on phosphoinositide-3 kinase and Erk MAP kinase pathways in HASM cells. Both classical and IL-6 trans-signaling in HASM involves activation of Stat3. However, the kinetics of Stat3 phosphorylation by IL-6 trans-signaling was different than classical IL-6 signaling. This was further reflected in the differential gene expression profile by IL-6 trans-signaling in HASM cells. Under IL-6 trans-signaling conditions 36 genes were upregulated, including PLA2G2A, IL13RA1, MUC1, and SOD2. Four genes, including CCL11, were downregulated at least twofold. The expression of 112 genes was divergent between IL-6 classical and trans-signaling, including the genes HILPDA, NNMT, DAB2, MUC1, WWC1, and VEGFA. Pathway analysis revealed that IL-6 trans-signaling induced expression of genes involved in regulation of airway remodeling, immune response, hypoxia, and glucose metabolism. Treatment of HASM cells with IL-6+sIL6R induced proliferation in a dose-dependent fashion, suggesting a role for IL-6 trans-signaling in asthma pathogenesis. These novel findings demonstrate differential effect of IL-6 trans-signaling on airway cells and identify IL-6 trans-signaling as a potential modifier of airway inflammation and remodeling.
机译:遗传数据表明,IL-6反信号可能在肺中具有致病作用。然而,尚未研究IL-6反式信号转导对肺效应细胞的作用。在这项研究中,将人气道平滑肌(HASM)细胞用IL-6(经典)或IL-6 + sIL6R(反式信号)处理24小时,并通过RNAseq测量基因表达。分别通过蛋白质印迹和荧光素酶测定评估细胞内信号传导和转录因子激活。通过增殖测定来确定IL-6反式信号转导的功能作用。 IL-6反信号对HASM细胞中的磷酸肌醇3激酶和Erk MAP激酶途径没有影响。 HASM中的经典信号转导和IL-6信号转导均涉及Stat3的激活。然而,通过IL-6反式信号转导的Stat3磷酸化的动力学不同于经典IL-6信号转导。这通过HASM细胞中IL-6的反信号在差异基因表达谱中得到进一步反映。在IL-6反信号转导条件下,36个基因被上调,包括PLA2G2A,IL13RA1,MUC1和SOD2。包括CCL11在内的四个基因至少下调了两倍。 IL-6经典和反信号之间有112个基因的表达不同,包括HILPDA,NNMT,DAB2,MUC1,WWC1和VEGFA。通路分析表明,IL-6反式信号转导诱导了参与气道重塑,免疫反应,缺氧和葡萄糖代谢调节的基因表达。用IL-6 + sIL6R处理HASM细胞以剂量依赖的方式诱导增殖,表明IL-6反信号在哮喘发病中的作用。这些新发现证明了IL-6反信号对气道细胞的不同作用,并将IL-6反信号识别为气道炎症和重塑的潜在调节剂。

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