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Hemodynamic disturbed flow induces differential DNA methylation of endothelial Kruppel-like factor 4 promoter in vitro and in vivo

机译:血流动力学紊乱的血流诱导体内外Kruppel样因子4启动子DNA甲基化差异

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Rationale: Hemodynamic disturbed flow (DF) is associated with susceptibility to atherosclerosis. Endothelial Kruppel-Like Factor 4 (KLF4) is an important anti-inflammatory atheroprotective transcription factor that is suppressed in regions of DF. Objective: The plasticity of epigenomic KLF4 transcriptional regulation by flow-mediated DNA methylation was investigated in vitro and in arterial tissue. Methods and Results: To recapitulate dominant flow characteristics of atheroprotected and atherosusceptible arteries, human aortic endothelial cells were subjected to pulsatile undisturbed flow or oscillatory DF containing a flow-reversing phase. Differential CpG site methylation was measured by methylation-specific polymerase chain reaction, bisulfite pyrosequencing, and restriction enzyme-polymerase chain reaction. The methylation profiles of endothelium from disturbed and undisturbed flow sites of adult swine aortas were also investigated. In vitro, DF increased DNA methylation of CpG islands within the KLF4 promoter that significantly contributed to suppression of KLF4 transcription; the effects were mitigated by DNA methyltransferase (DNMT) inhibitors and knockdown of DNMT3A. Contributory mechanisms included DF-induced increase of DNMT3A protein (1.7-fold), DNMT3A enrichment (11-fold) on the KLF4 promoter, and competitive blocking of a myocyte enhancer factor-2 binding site in the KLF4 promoter near the transcription start site. DF also induced DNMT-sensitive propathological expression of downstream KLF4 transcription targets nitric oxide synthase 3, thrombomodulin, and monocyte chemoattractant protein-1. In support of the in vitro findings, swine aortic endothelium isolated from DF regions expressed significantly lower KLF4 and nitric oxide synthase 3, and bisulfite sequencing of KLF4 promoter identified a hypermethylated myocyte enhancer factor-2 binding site. Conclusions: Hemodynamics influence endothelial KLF4 expression through DNMT enrichment/myocyte enhancer factor-2 inhibition mechanisms of KLF4 promoter CpG methylation with regional consequences for atherosusceptibility.
机译:理由:血流动力学紊乱(DF)与动脉粥样硬化的易感性有关。内皮Kruppel样因子4(KLF4)是一种重要的抗炎性动脉粥样硬化保护转录因子,在DF区域受到抑制。目的:在体外和动脉组织中研究流介导的DNA甲基化对表观基因组KLF4转录调控的可塑性。方法和结果:为了概括受动脉粥样硬化保护和动脉粥样硬化的动脉的主要血流特征,对人的主动脉内皮细胞进行搏动性未扰动血流或包含逆流相的振荡性DF。通过甲基化特异性聚合酶链反应,亚硫酸氢盐焦磷酸测序和限制性酶-聚合酶链反应测量CpG位点甲基化差异。还研究了成年猪主动脉紊乱和不受干扰的流动部位的内皮甲基化分布。在体外,DF增加了KLF4启动子内CpG岛的DNA甲基化,这对抑制KLF4转录起了重要作用。 DNA甲基转移酶(DNMT)抑制剂和DNMT3A的敲低减轻了这种影响。促成机制包括DF诱导的DNMT3A蛋白的增加(1.7倍),DNMT3A在KLF4启动子上的富集(11倍),以及在转录起始位点附近的KLF4启动子中肌细胞增强因子2结合位点的竞争性阻断。 DF还诱导下游KLF4转录靶标一氧化氮合酶3,血栓调节蛋白和单核细胞趋化蛋白1对DNMT敏感的病理表达。为了支持体外研究,从DF区分离出的猪主动脉内皮表达的KLF4和一氧化氮合酶3明显降低,KLF4启动子的亚硫酸氢盐测序确定了甲基化的心肌增强因子2结合位点。结论:血流动力学通过DNMT富集/心肌细胞增强因子2抑制KLF4启动子CpG甲基化的机制影响内皮KLF4的表达,对动脉粥样硬化具有局部影响。

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