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ERK5 的激活通过诱导 Kruppel 样因子 4(KLF4)引发血管保护的内皮表型。

Erk5 activation elicits a vasoprotective endothelial phenotype via induction of Kruppel-like factor 4 (KLF4).

机构信息

Department of Dermatology, University Hospital Mannheim, University of Heidelberg, Mannheim 68167, Germany.

出版信息

J Biol Chem. 2010 Aug 20;285(34):26199-210. doi: 10.1074/jbc.M110.103127. Epub 2010 Jun 15.

Abstract

The MEK5/Erk5 MAPK cascade has recently been implicated in the regulation of endothelial integrity and represents a candidate pathway mediating the beneficial effects of laminar flow, a major factor preventing vascular dysfunction and disease. Here we expressed a constitutively active mutant of MEK5 (MEK5D) to study the transcriptional and functional responses to Erk5 activation in human primary endothelial cells. We provide evidence that constitutive Erk5 activation elicits an overall protective phenotype characterized by increased apoptosis resistance and a decreased angiogenic, migratory, and inflammatory potential. This is supported by bioinformatic microarray analysis, which uncovered a statistical overrepresentation of corresponding functional clusters as well as a significant induction of anti-thrombotic, hemostatic, and vasodilatory genes. We identify KLF4 as a novel Erk5 target and demonstrate a critical role of this transcription factor downstream of Erk5. We show that KLF4 expression largely reproduces the protective phenotype in endothelial cells, whereas KLF4 siRNA suppresses expression of various Erk5 targets. Additionally, we show that vasoprotective statins potently induce KLF4 and KLF4-dependent gene expression via activation of Erk5. Our data underscore a major protective function of the MEK5/Erk5/KLF4 module in ECs and implicate agonistic Erk5 activation as potential strategy for treatment of vascular diseases.

摘要

MEK5/Erk5 MAPK 级联反应最近被牵涉到内皮完整性的调节中,并且代表了一个候选途径,介导层流的有益效应,层流是防止血管功能障碍和疾病的主要因素。在这里,我们表达了 MEK5 的组成性激活突变体(MEK5D),以研究人原代内皮细胞中 Erk5 激活的转录和功能反应。我们提供的证据表明,组成性 Erk5 激活引发了整体保护表型,其特征在于增加了抗凋亡能力,降低了血管生成、迁移和炎症潜能。这得到了生物信息学微阵列分析的支持,该分析揭示了相应功能簇的统计学过度表示,以及抗血栓形成、止血和血管舒张基因的显著诱导。我们将 KLF4 鉴定为 Erk5 的一个新靶点,并证明了该转录因子在 Erk5 下游的关键作用。我们表明,KLF4 表达在很大程度上再现了内皮细胞中的保护表型,而 KLF4 siRNA 则抑制了各种 Erk5 靶基因的表达。此外,我们还表明,血管保护他汀类药物通过激活 Erk5 强烈诱导 KLF4 和 KLF4 依赖性基因表达。我们的数据强调了 MEK5/Erk5/KLF4 模块在 ECs 中的主要保护功能,并暗示激动性 Erk5 激活可能是治疗血管疾病的潜在策略。

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