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Regulation of the Hif-system by micro-RNA 17 and 20a - Role during monocyte-to-macrophage differentiation

机译:微小RNA 17和20a对Hif系统的调控-在单核细胞向巨噬细胞分化过程中的作用

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MiRNAs are a class of endogenous tiny RNAs that act as inhibitors of translation or promote RNA degradation by duplex-formation within the 3'-UTR of target mRNAs. They play an important role during a wide range of cellular processes by fine-tuning of gene expression. The differentiation of monocytes to macrophages plays a pivotal role in physiological as well as pathophysiological processes such as atherosclerosis. Monocytes which can be found in well-oxygenated blood migrate into areas with a high inflammation, such as the atherosclerotic plaque. There, they differentiate into macrophages. Interestingly, macrophages were found mainly at hypoxic sites of the plaque. Key regulators for the adaptation to hypoxia are the hypoxia-inducible factors (Hif). Therefore the aim of the present study was to investigate the regulation of the Hif-system by miRNAs during the process of monocyte differentiation. The present study shows that during the differentiation of monocytes into macrophages a dramatically change in the expression pattern of Hif-1α and Hif-2α took place. This was associated with a downregulation of microRNAs encoded by the miR-17-92 cluster. An in silico analysis of the 3'-UTR of Hif-α subunits for binding sites of miRNAs was performed using different miRNA databases in concert with a secondary structure prediction algorithm. This analysis revealed that both 3'-UTRs contain binding sites for miRNAs of the miR-17-92 cluster. Transfection of HeLa cells with miR-17 and miR-20a led to an inhibition of Hif-1α and -2α mRNA and protein expression and a lowered Hif DNA binding activity. Using a Luciferase-Reporter assay, it could be shown, that both Hif-α subunits are targeted by miR-17 and miR-20a. Furthermore, miR-overexpression in primary human macrophages demonstrates the important role of this microRNA-mediated regulation of the Hif-system for adaption of macrophages to hypoxia.In conclusion, the present study shows that the Hif-system is activated during monocyte-to-macrophage differentiation. This activation is in part mediated by a miRNA-dependent mechanism, which seems to be crucial for the adaption of macrophages to hypoxia.
机译:MiRNA是一类内源性微小RNA,可作为翻译抑制剂或通过靶mRNA的3'-UTR中的双链形成促进RNA降解。它们通过基因表达的微调在广泛的细胞过程中发挥重要作用。单核细胞向巨噬细胞的分化在诸如动脉粥样硬化的生理以及病理生理过程中起着关键作用。充氧充足的血液中发现的单核细胞会迁移到炎症高的区域,例如动脉粥样硬化斑块。在那里,它们分化为巨噬细胞。有趣的是,巨噬细胞主要在斑块的缺氧部位发现。适应缺氧的关键调节因子是缺氧诱导因子(Hif)。因此,本研究的目的是研究单核细胞分化过程中miRNA对Hif系统的调控。本研究表明,在单核细胞分化为巨噬细胞的过程中,Hif-1α和Hif-2α的表达模式发生了巨大变化。这与miR-17-92簇编码的microRNA的下调有关。使用不同的miRNA数据库,结合二级结构预测算法,对Hif-α亚基3'-UTR的miRNA结合位点进行了计算机分析。该分析表明,两个3'-UTR都包含miR-17-92簇的miRNA的结合位点。用miR-17和miR-20a转染HeLa细胞导致抑制Hif-1α和-2αmRNA和蛋白质表达并降低Hif DNA结合活性。使用Luciferase-Reporter分析,可以证明miR-17和miR-20a都靶向了两个Hif-α亚基。此外,miR在原代人类巨噬细胞中的过表达证明了这种microRNA介导的Hif系统调节对于巨噬细胞适应缺氧的重要作用。巨噬细胞分化。这种激活部分是由miRNA依赖性机制介导的,这似乎对巨噬细胞适应缺氧至关重要。

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