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首页> 外文期刊>Frontiers in Cardiovascular Medicine >miRMap: Profiling 14q32 microRNA Expression and DNA Methylation Throughout the Human Vasculature
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miRMap: Profiling 14q32 microRNA Expression and DNA Methylation Throughout the Human Vasculature

机译:MIRMAP:在整个人脉管系统中剖析14Q32 microRNA表达和DNA甲基化

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Aims: MicroRNAs are regulators of (patho)physiological functions with tissue-specific expression patterns. However, little is known about inter-vascular differences in microRNA expression between blood vessel types or vascular beds. Differences in microRNA expression could influence cardiovascular pathophysiology at specific sites in the vasculature. Therefore, we aimed to map expression profiles of vasoactive 14q32 microRNAs throughout the human vasculature, as well as expression of vasoactive target genes of the 14q32 microRNAs. Furthermore, we aimed to map the DNA methylation status of the 14q32 locus, which has been linked to cardiovascular disease. Methods and Results: We collected 109 samples from different blood vessels, dissected during general surgery. Expression of a representative set of 17 14q32 microRNAs was measured in each sample. All 17 microRNAs showed a unique expression pattern throughout the vasculature. 14q32 microRNA expression was highest in lower limb vessels and lowest in head and neck vessels. All 17 microRNAs were expressed more abundantly in arteries than in veins. Throughout the human vasculature, we observed trends towards an inverse correlation between expression levels of the 14q32 microRNAs and their vasoactive target genes. DNA methylation of the 3 Differentially Methylated Regions (DMRs) along the 14q32 locus did not associate with primary or mature microRNA expression. However, hyper-methylation in venous coronary artery bypass grafts compared to arterial bypass grafts was observed in the Intergenic-DMR and MEG3-DMR. In patients with end-stage peripheral arterial disease we found differential DNA methylation throughout all DMRs in their lower limb veins. These findings were confirmed in a mouse model for vein-graft disease in which we found regulated 14q32 DNA methylation during the active phase of vascular remodelling. In ischemic tissues of a murine hind limb ischemia model we observed an increase in DNA methylation associated with increased ischemia over time. Conclusions: We show that 14q32 microRNAs are abundantly expressed in the human vasculature and that expression differs significantly between different blood vessels. 14q32 DNA methylation also varies throughout the vasculature and is associated with vascular health, independently of microRNA levels. These findings could have important implications for future research and for future site-specific targeting of epigenetics-based therapeutics.
机译:目的:MicroRNA是(Patho)生理功能的调节因子,具有组织特异性表达模式。然而,关于血管类型或血管床之间的微小RNA表达的血管间差异很少。 microRNA表达的差异可以影响脉管系统特定位点的心血管病理生理学。因此,我们旨在在整个人脉管系统中映射vasoactive 14quch32 microRNA的表达谱,以及14Q32微小RNA的血管毒性靶基因的表达。此外,我们旨在映射14Q32基因座的DNA甲基化状态,该地位与心血管疾病有关。方法和结果:我们从不同血管中收集109个样本,在普通手术期间解剖。在每个样品中测量代表性组17℃14℃MicroRNA的表达。所有17 Micrornas都在整个脉管系统中显示出独特的表达模式。 14Q32小腹腔表达在下肢容器中最高,头部和颈部容器中最低。所有17个小微小RNA在动脉中比在静脉中大量表达。在整个人脉管系统中,我们观察到朝向14Q32微小RNA的表达水平与其血管活性靶基因之间的逆相关性的趋势。沿14Q32基因座的3个差异甲基化区域(DMRS)的DNA甲基化并未与初级或成熟的MicroRNA表达相关联。然而,在Intercanic-DMR和MEG3-DMR中观察到与动脉旁路移植相比的静脉冠状动脉旁路移植物中的超甲基化。在患有终末期外周动脉疾病的患者中,我们发现在其下肢静脉中的所有DMR中发现差异DNA甲基化。在静脉移植疾病的小鼠模型中证实了这些发现,其中我们发现在血管重塑的活性相期间发现调节的14Q32 DNA甲基化。在鼠后肢缺血模型的缺血组织中,我们观察到随时间增加缺血的DNA甲基化的增加。结论:我们表明,14Q32的MicroRNA在人脉管系统中大量表达,并且在不同血管之间表达显着不同。 14Q32 DNA甲基化也在整个脉管系统中变化,与微小RNA水平无关,与血管健康有关。这些调查结果可能对未来的研究和未来的基于表观学的治疗药物的特异性靶向具有重要意义。

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