首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Advanced Glycation End Product (AGE)-Receptor for AGE (RAGE) Signaling and Up-regulation of Egr-1 in Hypoxic Macrophages
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Advanced Glycation End Product (AGE)-Receptor for AGE (RAGE) Signaling and Up-regulation of Egr-1 in Hypoxic Macrophages

机译:先进的糖基化终产物(AGE)-AGE(RAGE)信号受体和低氧巨噬细胞中Egr-1的上调

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摘要

Receptor for advanced glycation end product (RAGE)-dependent signaling has been implicated in ischemia/reperfusion injury in the heart, lung, liver, and brain. Because macrophages contribute to vascular perturbation and tissue injury in hypoxic settings, we tested the hypothesis that RAGE regulates early growth response-1 (Egr-1) expression in hypoxia-exposed macrophages. Molecular analysis, including silencing of RAGE, or blockade of RAGE with sRAGE (the extracellular ligand-binding domain of RAGE), anti-RAGE IgG, or anti-AGE IgG in THP-1 cells, and genetic deletion of RAGE in peritoneal macrophages, revealed that hypoxia-induced up-regulation of Egr-1 is mediated by RAGE signaling. In addition, the observation of increased cellular release of RAGE ligand AGEs in hypoxic THP-1 cells suggests that recruitment of RAGE in hypoxia is stimulated by rapid production of RAGE ligands in this setting. Finally, we show that mDia-1, previously shown to interact with the RAGE cytoplasmic domain, is essential for hypoxia-stimulated regulation of Egr-1, at least in part through protein kinase C βII, ERK1/2, and c-Jun NH2-terminal kinase signaling triggered by RAGE ligands. Our findings highlight a novel mechanism by which an extracellular signal initiated by RAGE ligand AGEs regulates Egr-1 in a manner requiring mDia-1.
机译:晚期糖基化终产物(RAGE)依赖性信号转导的受体与心脏,肺,肝和脑的缺血/再灌注损伤有关。因为在低氧环境中巨噬细胞会导致血管微扰和组织损伤,所以我们测试了RAGE调节缺氧暴露的巨噬细胞中早期生长反应1(Egr-1)表达的假设。分子分析,包括沉默RAGE或在THP-1细胞中用sRAGE(RAGE的胞外配体结合域),RAGE IgG或anti-AGE IgG阻断RAGE,以及腹膜巨噬细胞中RAGE的基因缺失,揭示低氧诱导的Egr-1上调是由RAGE信号介导的。另外,在低氧THP-1细胞中RAGE配体AGEs的细胞释放增加的观察表明,在这种情况下,RAGE配体的快速产生刺激了缺氧中RAGE的募集。最后,我们证明了先前显示与RAGE细胞质结构域相互作用的mDia-1对于缺氧刺激的Egr-1调节至关重要,至少部分通过蛋白激酶CβII,ERK1 / 2和c-Jun NH2 -RAGE配体触发的末端激酶信号转导。我们的发现突出了一种新颖的机制,通过该机制,RAGE配体AGEs引发的细胞外信号以需要mDia-1的方式调节Egr-1。

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