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Large Impact of Low Concentration Oxidized LDL on Angiogenic Potential of Human Endothelial Cells: A Microarray Study

机译:低浓度大的影响氧化低密度脂蛋白对人血管内皮细胞的血管生成潜力:微阵列分析

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摘要

Oxidized LDL (ox-LDL) is a key factor in atherogenesis. It is taken up by endothelial cells primarily by ox-LDL receptor-1 (LOX-1). To elucidate transcriptional responses, we performed microarray analysis on human coronary artery endothelial cells (HCAECs) exposed to small physiologic concentration of ox-LDL- 5 µg/ml for 2 and 12 hours. At 12 hours, cultures treated with ox-LDL exhibited broad shifts in transcriptional activity involving almost 1500 genes (>1.5 fold difference, p<0.05). Resulting transcriptome was enriched for genes associated with cell adhesion (p<0.002), angiogenesis (p<0.0002) and migration (p<0.006). Quantitative PCR analysis revealed that LOX-1 expression in HCAECs is at least an order of magnitude greater than the expression of other major ox-LDL specific receptors CD36 and MSR1. In keeping with the data on LOX-1 expression, pre-treatment of HCAECs with LOX-1 neutralizing antibody resulted in across-the-board inhibition of cellular response to ox-LDL. Ox-LDL upregulated a number of pro-angiogenic genes including multiple receptors, ligands and transcription factors and altered the expression of a number of genes implicated in both stimulation and inhibition of apoptosis. From a functional standpoint, physiologic concentrations of ox-LDL stimulated tube formation and inhibited susceptibility to apoptosis in HCAECs. In addition, ox-LDL exposure resulted in upregulation of miR-1974, miR-1978 and miR-21 accompanied with significant over-presentation of their target genes in the downregulated portion of ox-LDL transcriptome. Our observations indicate that ox-LDL at physiologic concentrations induces broad transcriptional responses which are mediated by LOX-1, and are, in part, shaped by ox-LDL-dependent miRNAs. We also suggest that angiogenic effects of ox-LDL are partially based on upregulation of several receptors that render cells hypersensitive to angiogenic stimuli.
机译:氧化的LDL(ox-LDL)是动脉粥样硬化发生的关键因素。内皮细胞主要通过ox-LDL受体1(LOX-1)吸收它。为了阐明转录反应,我们对暴露于少量生理浓度的ox-LDL-5 µg / ml的人类冠状动脉内皮细胞(HCAEC)进行了2和12小时的微阵列分析。在12小时时,用ox-LDL处理的培养物显示涉及近1500个基因的转录活性发生了广泛变化(差异> 1.5倍,p <0.05)。所得的转录组富含与细胞粘附(p <0.002),血管生成(p <0.0002)和迁移(p <0.006)相关的基因。定量PCR分析表明,HCAEC中的LOX-1表达至少比其他主要的ox-LDL特异性受体CD36和MSR1的表达高一个数量级。与关于LOX-1表达的数据一致,用LOX-1中和抗体对HCAEC进行预处理会全面抑制细胞对ox-LDL的应答。 Ox-LDL上调了许多促血管生成基因,包括多种受体,配体和转录因子,并改变了许多与刺激和抑制细胞凋亡有关的基因的表达。从功能的角度来看,ox-LDL的生理浓度刺激了HCAECs的管形成并抑制了对细胞凋亡的敏感性。另外,ox-LDL暴露导致miR-1974,miR-1978和miR-21上调,同时在ox-LDL转录组的下调部分中显着过量表达其靶基因。我们的观察结果表明,生理浓度下的ox-LDL诱导了广泛的转录反应,该转录反应是由LOX-1介导的,并且部分受ox-LDL依赖性miRNA的影响。我们还建议,ox-LDL的血管生成作用部分基于几种受体的上调,使细胞对血管生成刺激高度敏感。

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