首页> 美国卫生研究院文献>The Journal of Biological Chemistry >ERK5 Protein Promotes whereas MEK1 Protein Differentially Regulates the Toll-like Receptor 2 Protein-dependent Activation of Human Endothelial Cells and Monocytes
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ERK5 Protein Promotes whereas MEK1 Protein Differentially Regulates the Toll-like Receptor 2 Protein-dependent Activation of Human Endothelial Cells and Monocytes

机译:ERK5蛋白促进而MEK1蛋白差异调节人类内皮细胞和单核细胞的Toll样受体2蛋白依赖性激活。

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摘要

Endothelial cell (EC) Toll-like receptor 2 (TLR2) activation up-regulates the expression of inflammatory mediators and of TLR2 itself and modulates important endothelial functions, including coagulation and permeability. We defined TLR2 signaling pathways in EC and tested the hypothesis that TLR2 signaling differs in EC and monocytes. We found that ERK5, heretofore unrecognized as mediating TLR2 activation in any cell type, is a central mediator of TLR2-dependent inflammatory signaling in human umbilical vein endothelial cells, primary human lung microvascular EC, and human monocytes. Additionally, we observed that, although MEK1 negatively regulates TLR2 signaling in EC, MEK1 promotes TLR2 signaling in monocytes. We also noted that activation of TLR2 led to the up-regulation of intracellularly expressed TLR2 and inflammatory mediators via NF-κB, JNK, and p38-MAPK. Finally, we found that p38-MAPK, JNK, ERK5, and NF-κB promote the attachment of human neutrophils to lung microvascular EC that were pretreated with TLR2 agonists. This study newly identifies ERK5 as a key regulator of TLR2 signaling in EC and monocytes and indicates that there are fundamental differences in TLR signaling pathways between EC and monocytes.
机译:内皮细胞(EC)Toll样受体2(TLR2)激活上调炎症介质和TLR2本身的表达,并调节重要的内皮功能,包括凝血和通透性。我们在EC中定义了TLR2信号传导途径,并测试了EC和单核细胞中TLR2信号传导不同的假设。我们发现,迄今为止,ERK5在任何细胞类型中都不被认为可介导TLR2激活,是人脐静脉内皮细胞,原代人肺微血管EC和人单核细胞中TLR2依赖性炎症信号的主要介质。此外,我们观察到,尽管MEK1负调节EC中的TLR2信号传导,但MEK1促进单核细胞中的TLR2信号传导。我们还注意到TLR2的激活导致细胞内表达的TLR2和炎症介质通过NF-κB,JNK和p38-MAPK上调。最后,我们发现p38-MAPK,JNK,ERK5和NF-κB促进了人类嗜中性粒细胞对经TLR2激动剂预处理的肺微血管EC的附着。这项研究新发现ERK5是EC和单核细胞中TLR2信号传导的关键调节因子,并表明EC和单核细胞之间TLR信号传导途径存在根本差异。

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