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Jmjd3对脂多糖激活的血管内皮细胞中NF-κB下游炎症基因表达的调控作用。

The regulation of Jmjd3 upon the expression of NF-κB downstream inflammatory genes in LPS activated vascular endothelial cells.

作者信息

Yu Shaoqing, Chen Xia, Xiu Min, He Feng, Xing Juanjuan, Min Dinghong, Guo Fei

机构信息

Burn Center, The First Affiliated Hospital of Nanchang University, Nanchang, China; Graduate School of Medicine, Nanchang University, Nanchang, China.

Graduate School of Medicine, Nanchang University, Nanchang, China.

出版信息

Biochem Biophys Res Commun. 2017 Mar 25;485(1):62-68. doi: 10.1016/j.bbrc.2017.02.020. Epub 2017 Feb 9.

Abstract

Inflammatory mediators and adhesion molecules have been implicated in a variety of diseases including atherosclerosis. As both the mediator-releasing and targeted cells, vascular endothelial cells play key role in pathological processes. NF-κB signaling regulates a cluster of inflammatory factors in LPS-activated vascular endothelial cells but the underlying mechanisms remain largely unknown. Here, we investigated the epigenetic regulation of LPS upon the expression of inflammatory mediators and adhesion molecules. We found that LPS treatment promoted jmjd3 expression, enhanced Jmjd3 nuclear accumulation in human vascular endothelial cells. In addition, LPS enhanced the demethylation of H3K27me3, a specific substrate of Jmjd3. LPS treatment recruited Jmjd3 and NF-κB to the promoter region of target genes, suggesting Jmjd3 synergizes with NF-κB to activate the expression of target genes. We further found that Jmjd3 attenuated the methylation status in promoter region of target genes, culminating in target gene expression. Our findings unveil epigenetic regulations of LPS upon NF-κB pathway and identify Jmjd3 as a critical modulator of NF-κB pathway and potential therapeutic target for NF-κB related diseases including atherosclerosis.

摘要

炎症介质和黏附分子与包括动脉粥样硬化在内的多种疾病有关。作为介质释放细胞和靶细胞,血管内皮细胞在病理过程中起关键作用。NF-κB信号通路调节脂多糖(LPS)激活的血管内皮细胞中的一系列炎症因子,但其潜在机制仍 largely 未知。在此,我们研究了LPS对炎症介质和黏附分子表达的表观遗传调控。我们发现LPS处理促进了jmjd3的表达,增强了Jmjd3在人血管内皮细胞中的核积累。此外,LPS增强了H3K27me3(Jmjd3的特异性底物)的去甲基化。LPS处理将Jmjd3和NF-κB募集到靶基因的启动子区域,表明Jmjd3与NF-κB协同激活靶基因的表达。我们进一步发现Jmjd3减弱了靶基因启动子区域的甲基化状态,最终导致靶基因表达。我们的研究结果揭示了LPS对NF-κB通路的表观遗传调控,并确定Jmjd3是NF-κB通路的关键调节因子以及包括动脉粥样硬化在内的NF-κB相关疾病的潜在治疗靶点。

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