首页> 外文期刊>The Journal of biological chemistry >Caerulomycin A Enhances Transforming Growth Factor-β (TGF-β)-Smad3 Protein Signaling by Suppressing Interferon-γ (IFN-γ)-Signal Transducer and Activator of Transcription 1 (STAT1) Protein Signaling to Expand Regulatory T Cells (Tregs)
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Caerulomycin A Enhances Transforming Growth Factor-β (TGF-β)-Smad3 Protein Signaling by Suppressing Interferon-γ (IFN-γ)-Signal Transducer and Activator of Transcription 1 (STAT1) Protein Signaling to Expand Regulatory T Cells (Tregs)

机译:Caerucomcin A通过抑制干扰素-γ(IFN-γ) - 转录1(STAT1)蛋白质信号传感器和转录1(STAT1)蛋白信号传递的激活剂来增强转化生长因子-β(TGF-β)-SmAd3蛋白信号传导以扩张调节性T细胞(Tregs)

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Cytokines play a very important role in the regulation of immune homeostasis. Regulatory T cells (Tregs) responsible for the generation of peripheral tolerance are under the tight regulation of the cytokine milieu. In this study, we report a novel role of a bipyridyl compound, Caerulomycin A (CaeA), in inducing the generation of Tregs. It was observed that CaeA substantially up-regulated the pool of Tregs, as evidenced by an increased frequency of CD4+ Foxp3+ cells. In addition, CaeA significantly suppressed the number of Th1 and Th17 cells, as supported by a decreased percentage of CD4+/IFN-γ+ and CD4+/IL-17+ cells, respectively. Furthermore, we established the mechanism and observed that CaeA interfered with IFN-γ-induced STAT1 signaling by augmenting SOCS1 expression. An increase in the TGF-β-mediated Smad3 activity was also noted. Furthermore, CaeA rescued Tregs from IFN-γ-induced inhibition. These results were corroborated by blocking Smad3 activity, which abolished the CaeA-facilitated generation of Tregs. In essence, our results indicate a novel role of CaeA in inducing the generation of Tregs. This finding suggests that CaeA has enough potential to be considered as a potent future drug for the treatment of autoimmunity.
机译:细胞因子在免疫稳态的调节中起着非常重要的作用。负责产生外周耐受的调节性T细胞(Tregs)是细胞因子Milieu的紧张调节。在这项研究中,我们报告了双吡啶基化合物,酰胺霉素A(CAEA)在诱导Tregs产生时的新作用。观察到CAEA基本上上调了Tregs池,如CD4 + Foxp3 +细胞的增加频率所证明。此外,CAEA显着抑制了TH1和TH17细胞的数量,分别由CD4 + / IFN-γ+和CD4 + / IL-17 +细胞的百分比降低。此外,我们建立了该机制并观察到CAEA通过增强SOCS1表达式干扰IFN-γ-诱导的Stat1信号传导。还注意到TGF-β介导的Smad3活性的增加。此外,CAEA从IFN-γ诱导的抑制中拯救了Tregs。通过阻断Smad3活性来证实这些结果,这取决于Caea促进的Tregs。从本质上讲,我们的结果表明CAEA在诱导Tregs产生的新作用。这一发现表明,CAEA有足够的潜力被认为是治疗自身免疫的有利未来药物。

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