首页> 外文期刊>American Journal of Physiology >IFN gamma-dependent SOCS3 expression inhibits IL-6-induced STAT3 phosphorylation and differentially affects IL-6 mediated transcriptional responses in endothelial cells.
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IFN gamma-dependent SOCS3 expression inhibits IL-6-induced STAT3 phosphorylation and differentially affects IL-6 mediated transcriptional responses in endothelial cells.

机译:IFNγ依赖性SOCS3表达抑制IL-6诱导的STAT3磷酸化并差异地影响内皮细胞中的IL-6介导的转录反应。

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摘要

IL-6 has pro- and anti-inflammatory effects and is involved in endothelial cell (EC) dysfunction. The anti-inflammatory effects of IL-6 are mediated by signal transducer and activator of transcription-3 (STAT3), which is importantly controlled by suppressor of cytokine signaling 3 (SOCS3). Therefore, cytokines that modulate SOCS3 expression might inhibit the anti-inflammatory effects of IL-6. We hypothesized that in EC, interferon-gamma (IFNgamma)-induced SOCS3 expression leads to inhibition of IL-6-induced STAT3 activation and IL-6-dependent expression of anti-, but not pro-inflammatory, target genes. IFNgamma activated STAT1 and STAT3 and increased SOCS3 expression in EC. IL-6 only activated STAT3 and induced SOCS3 expression. IFNgamma pretreatment of EC inhibited IL-6-induced STAT3 activation accompanied by increased SOCS3 protein. Inhibition of SOCS3 expression, using costimulation, Act-D, and small interfering RNA (siRNA), subsequently implicated the importance of IFNgamma-induced SOCS3 in this phenomenon. Pretreatment of EC with IFNgamma also affected the transcriptional program induced by IL-6. We identified 1) IL-6 anti-inflammatory target genes that were inhibited by IFNgamma, 2) IFNgamma-target genes of pro-inflammatory nature that were increased in response to IL-6 in the presence of IFNgamma, and 3) a set of target genes that were increased upon IL-6 or IFNgamma alone, or combined IFNgamma and IL-6. In summary, by increasing SOCS3 expression in EC, IFNgamma can selectively inhibit STAT3-dependent IL-6 signaling. This in turn leads to decreased expression of some EC protective genes. In contrast, other genes of pro-inflammatory nature are not inhibited or even increased. This IFNgamma-induced shift in IL-6 signaling to a pro-inflammatory phenotype could represent a novel mechanism involved in EC dysfunction.
机译:IL-6具有抗炎作用,并参与内皮细胞(EC)功能障碍。 IL-6的抗炎作用由信号传感器和转录-3(STAT3)的激活剂介导,其主要通过细胞因子信号传导3(SOCS3)的抑制来控制。因此,调节SOCS3表达的细胞因子可能抑制IL-6的抗炎作用。我们假设在EC中,干扰素-γ(IFngamma)诱导的SOCS3表达导致IL-6诱导的STAT3活化和IL-6依赖性表达的抗 - 但不促炎,靶基因的抑制作用。 IFNGAMMA激活的Stat1和STAT3和EC中的SOCS3表达增加。 IL-6仅激活的STAT3和诱导的SOCS3表达。 IFNGAMMA预处理EC抑制IL-6诱导的STAT3活化伴随的SOCS3蛋白增加。抑制SOCS3表达,使用促进刺激,ACT-D和小干扰RNA(siRNA),随后涉及IFNGAMMA诱导的SOCS3在这种现象中的重要性。 IFγ的预处理也影响了IL-6引起的转录程序。我们鉴定了1)IL-6抑制的IL-6抗炎靶基因,其IFngamma,2)IFngamma-靶基因的促炎性质的IFngamma-靶基因在IFGamma存在下响应IL-6而增加,3)一组单独的IL-6或IFγ或IFγ和IL-6上增加的靶基因。总之,通过增加EC中的SOCS3表达,IFGamma可以选择性地禁止STAT3依赖的IL-6信号传导。这反过来导致一些EC保护基因的表达降低。相比之下,不抑制促炎性的其他基因甚至增加。该IL-6信号传导至促炎表型的IL-6信号诱导的血液诱导的偏移可以代表EC功能障碍的新机制。

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