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Environment and vascular bed origin influence differences in endothelial transcriptional profiles of coronary and iliac arteries

机译:环境和血管床起源影响冠状动脉和动脉内皮转录谱的差异

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摘要

Atherosclerotic plaques tend to form in the major arteries at certain predictable locations. As these arteries vary in atherosusceptibility, interarterial differences in endothelial cell biology are of considerable interest. To explore the origin of differences observed between typical atheroprone and atheroresistant arteries, we used DNA microarrays to compare gene expression profiles of harvested porcine coronary (CECs) and iliac artery endothelial cells (IECs) grown in static culture out to passage 4. Fewer differences were observed between the transcriptional profiles of CECs and IECs in culture compared with in vivo, suggesting that most differences observed in vivo were due to distinct environmental cues in the two arteries. One-class significance of microarrays revealed that most in vivo interarterial differences disappeared in culture, as fold differences after passaging were not significant for 85% of genes identified as differentially expressed in vivo at 5% false discovery rate. However, the three homeobox genes, HOXA9, HOXA10, and HOXD3, remained underexpressed in coronary endothelium for all passages by at least nine-, eight-, and twofold, respectively. Continued differential expression, despite removal from the in vivo environment, suggests that primarily heritable or epigenetic mechanism(s) influences transcription of these three genes. Quantitative real-time polymerase chain reaction confirmed expression ratios for seven genes associated with atherogenesis and over- or underexpressed by threefold in CECs relative to IECs. The present study provides evidence that both local environment and vascular bed origin modulate gene expression in arterial endothelium. The transcriptional differences observed here may provide new insights into pathways responsible for coronary artery susceptibility.
机译:动脉粥样硬化斑块倾向于在某些可预测位置的主要动脉中形成。由于这些动脉的动脉粥样硬化性变化,因此内皮细胞生物学中的动脉间差异引起了极大的兴趣。为了探索在典型的动脉粥样硬化和动脉粥样硬化动脉之间观察到的差异的起源,我们使用DNA微阵列比较了静态培养至第4代中收获的猪冠状动脉(CEC)和动脉内皮细胞(IEC)的基因表达谱。与体内相比,CECs和IECs的转录谱之间存在明显的差异,这表明体内观察到的大多数差异是由于两条动脉的环境线索不同所致。微阵列的一类重要性表明,大多数体内动脉间差异在培养物中均已消失,因为传代后的倍数差异对于鉴定为差异表达率为5%的体内发现错误率为5%的85%基因而言并不重要。但是,三个同源异型盒基因HOXA9,HOXA10和HOXD3在所有传代的冠状动脉内皮细胞中均表达不足,分别至少是其9倍,8倍和2倍。尽管已从体内环境中除去,持续的差异表达表明主要是遗传或表观遗传机制影响了这三个基因的转录。实时定量聚合酶链反应证实了与动脉粥样硬化相关的七个基因的表达率,相对于IEC,这些基因在CEC中高表达或低表达了三倍。本研究提供了证据,即本地环境和血管床起源都调节动脉内皮中的基因表达。此处观察到的转录差异可能为了解冠状动脉敏感性的途径提供新的见解。

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