首页> 外文期刊>Molecular Immunology >Helenalin suppresses essential immune functions of activated CD4+ T cells by multiple mechanisms.
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Helenalin suppresses essential immune functions of activated CD4+ T cells by multiple mechanisms.

机译:Helenalin通过多种机制抑制活化的CD4 + T细胞的基本免疫功能。

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Helenalin is a naturally occuring sesquiterpene lactone extracted from Arnica montana and Arnica chamissonis ssp. foliosa. Helenalin and its derivatives are known for anti-cancer and anti-inflammatory effects via inhibiting NF-kappaB and telomerase activity and impairing protein and DNA synthesis, suggesting that helenalin is a potential candidate for the treatment of deregulated and unwanted T cell-mediated immune responses. Here we show that helenalin induces apoptosis in activated CD4+ T cells by triggering the mitochondrial pathway of apoptosis. Induction of apoptosis is accompanied by rapid stabilization of p53, nuclear localization of p53 and AIF, and an increase in ROS production that results in loss of mitochondrial membrane potential (DeltaPsim). Activated CD4+ T cells which survive exposure to helenalin undergo inhibition of proliferation by induction of G2/M cell cycle arrest. Cell cycle arrest is accompanied by the accumulation of cell cycle regulator proteins p21(WAF/CIP1), p2(KIP1) and cyclin D2, whereas abundance of cyclin A and B(1) is decreased. Cell surface expression of the activation-associated receptors CD25, CD27, CD28, CD120b as well as production of IL-2 are impaired. Transcriptional activation of genes encoding for CD25, IL-2 and IFN-gamma is mediated by transcription factors of the NFAT family, and we demonstrate that helenalin suppresses nuclear translocation of NFATc2 in activated CD4+ T cells. Thus, helenalin can be defined as a new immunosuppressive compound suited for the treatment of deregulated and unwanted T cell-mediated immune responses.
机译:海伦纳林是天然存在的倍半萜内酯,其从山金车和山金车子中提取。叶。 Helenalin及其衍生物通过抑制NF-κB和端粒酶活性以及削弱蛋白质和DNA合成而具有抗癌和抗炎作用,这表明helenalin是潜在的候选药物,可用于治疗失调的T细胞介导的免疫反应。在这里,我们显示Helenalin通过触发凋亡的线粒体途径诱导活化的CD4 + T细胞凋亡。凋亡的诱导伴随着p53的快速稳定,p53和AIF的核定位以及ROS产量的增加,导致线粒体膜电位(DeltaPsim)的丧失。幸免于暴露于海蓝蛋白的活化的CD4 + T细胞通过诱导G2 / M细胞周期停滞而抑制增殖。细胞周期停滞伴随着细胞周期调节蛋白p21(WAF / CIP1),p2(KIP1)和细胞周期蛋白D2的积累,而细胞周期蛋白A和B(1)的丰度降低。激活相关受体CD25,CD27,CD28,CD120b的细胞表面表达以及IL-2的产生均受到损害。编码CD25,IL-2和IFN-γ的基因的转录激活是由NFAT家族的转录因子介导的,我们证明了海伦素抑制活化CD4 + T细胞中NFATc2的核易位。因此,Helalalin可以定义为一种新的免疫抑制化合物,适用于治疗失调的T细胞介导的免疫反应。

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