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Zc3h12c inhibits vascular inflammation by repressing NF-κB activation and pro-inflammatory gene expression in endothelial cells

机译:Zc3h12c通过抑制内皮细胞中的NF-κB活化和促炎基因表达来抑制血管炎症

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pEndothelial activation characterized by the expression of multiple chemokines and adhesive molecules is a critical initial step of vascular inflammation, which results in recruitment of leucocytes into the sub-endothelial layer of the vascular wall and triggers vascular inflammatory diseases such as atherosclerosis. Although inhibiting endothelial inflammation has already been well recognized as a therapeutic strategy in vascular inflammatory diseases, the therapeutic targets are still elusive. In the present study we found that Zc3h12c (zinc finger CCCH-type-containing 12C), a recently discovered CCCH zinc finger-containing protein, significantly inhibited the endothelial cell inflammatory response iin vitro/i. Overexpression of Zc3h12c significantly attenuated TNFα (tumour necrosis factor α)-induced expression of chemokines and adhesive molecules, and thus reduced monocyte adherence to HUVECs (human umbilical vein endothelial cells). Conversely, siRNA (small interfering RNA)-mediated knockdown of Zc3h12c increased the TNFα-induced expression of chemokines and adhesive molecules in HUVECs. Furthermore, forced expression of Zc3h12c decreased TNFα-induced IKKα/β [IκB (inhibitor of nuclear factor κB) kinase α/β], IκBα phosphorylation and p65 nuclear translocation, suggesting that Zc3h12c exerted its anti-inflammatory function probably by suppressing the NF-κB (nuclear factor κB) pathway. Thus Zc3h12c is an endogenous inhibitor of TNFα-induced inflammatory signalling in HUVECs and might be a therapeutic target in vascular inflammatory diseases./p
机译:>以多种趋化因子和粘附分子表达为特征的内皮细胞活化是血管炎症的关键初始步骤,其导致白细胞募集进入血管壁的内皮下层并引发血管炎性疾病,例如动脉粥样硬化。尽管抑制内皮炎症已经被公认为血管炎疾病的治疗策略,但是治疗目标仍然​​难以实现。在本研究中,我们发现Zc3h12c(含锌指CCCH型的12C)是一种最近发现的含CCCH锌指的蛋白,可显着抑制体外的内皮细胞炎症反应。 Zc3h12c的过表达显着减弱了TNFα(肿瘤坏死因子α)诱导的趋化因子和粘附分子的表达,从而降低了单核细胞对HUVEC(人脐静脉内皮细胞)的粘附。相反,siRNA(小干扰RNA)介导的Zc3h12c的敲低增加了HUVEC中TNFα诱导的趋化因子和粘附分子的表达。此外,Zc3h12c的强制表达降低了TNFα诱导的IKKα/β[IκB(核因子κB抑制剂)激酶α/β],IκBα磷酸化和p65核易位,表明Zc3h12c可能通过抑制NF-κB发挥其抗炎功能。 κB(核因子κB)途径。因此,Zc3h12c是TNFα诱导的HUVECs炎症信号的内源性抑制剂,可能是血管炎性疾病的治疗靶标。

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