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Globular Adiponectin Exerts a Pro-Inflammatory Effect via IκB/NF-κB Pathway Activation and Anti-Inflammatory Effect by IRAK-1 Downregulation

机译:球状脂联素通过IκB/NF-κB途径活化发挥促炎作用,并通过IRAK-1下调发挥抗炎作用

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Adiponectin, a hormone produced by adipose tissue, is very abundant in plasma, and its anti- and pro-inflammatory effects are reported. However, the mechanisms of these pro- and anti-inflammatory effects are not fully defined. Herein, we evaluated the dual inflammatory response mechanism of adiponectin in macrophages. Short-term globular adiponectin (gAd) treatment induced IκBα degradation, NF-κB nuclear translocation, and TNF-α production in RAW 264.7 cells. Polymyxin B pretreatment did not block gAd-induced IκBα degradation, and heated gAd was unable to degrade IκBα, suggesting that the effects of gAd were not due to endotoxin contamination. gAd activated IKK and Akt, and inhibition of either IKK or Akt by dominant-negative IKKβ (DN-IKKβ) or DN-Akt overexpression blocked gAd-induced IκBα degradation, suggesting that short-term incubation with gAd mediates inflammatory responses by activating the IκB/NF-κB and PI3K/Akt pathways. Contrastingly, long-term stimulation with gAd induced, upon subsequent stimulation, tolerance to gAd, lipopolysaccharide, and CpG-oligodeoxynucleotide, which is associated with gAd-induced downregulation of IL-receptor-associated kinase-1 (IRAK-1) due to IRAK-1 transcriptional repression. Conclusively, our findings demonstrate that the pro- and anti-inflammatory responses to gAd in innate immune cells are time-dependent, and mediated by the activation of the IκB/NF-κB pathway, and IRAK-1 downregulation, respectively.
机译:脂联素是一种由脂肪组织产生的激素,在血浆中非常丰富,据报道它具有抗炎和促炎作用。但是,这些促炎和抗炎作用的机制尚未完全确定。在本文中,我们评估了脂联素在巨噬细胞中的双重炎症反应机制。短期球状脂联素(gAd)处理可在RAW 264.7细胞中诱导IκBα降解,NF-κB核移位和TNF-α产生。多粘菌素B预处理不能阻止gAd诱导的IκBα降解,加热的gAd无法降解IκBα,这表明gAd的作用不是由于内毒素污染。 gAd激活了IKK和Akt,并且显性阴性IKKβ(DN-IKKβ)或DN-Akt过表达抑制了IKK或Akt阻止了gAd诱导的IκBα降解,这表明与gAd的短期孵育可通过激活IκB介导炎症反应/NF-κB和PI3K / Akt途径。相反,在随后的刺激下,用gAd进行的长期刺激诱导了对gAd,脂多糖和CpG-寡脱氧核苷酸的耐受性,这与由于IRAK导致gAd诱导的IL受体相关激酶1(IRAK-1)的下调有关。 -1转录抑制。最终,我们的发现表明,先天免疫细胞对gAd的促炎和消炎反应是时间依赖性的,并分别由IκB/NF-κB途径的激活和IRAK-1下调介导。

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