首页> 美国卫生研究院文献>American Journal of Physiology - Lung Cellular and Molecular Physiology >Arginase II is a target of miR-17-5p and regulates miR-17-5p expression in human pulmonary artery smooth muscle cells
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Arginase II is a target of miR-17-5p and regulates miR-17-5p expression in human pulmonary artery smooth muscle cells

机译:精氨酸酶II是miR-17-5p的靶标并调节人肺动脉平滑肌细胞中的miR-17-5p表达

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摘要

Vascular remodeling and smooth muscle cell proliferation are hallmark pathogenic features of pulmonary artery hypertension. MicroRNAs, endogenously expressed small noncoding RNAs, regulate gene expression at the posttranscriptional level. It has previously been shown that miR-17 overexpression in cultured human pulmonary artery smooth muscle cell (hPASMC) resulted in increased viable cell number. Previously, we have found that arginase II promotes hypoxia-induced proliferation in hPASMC. Therefore, we hypothesized that miR-17 would be upregulated by hypoxia in hPASMC and would result in greater arginase II expression. We found that levels of miR-17-5p and arginase II were significantly greater in cultured hPASMC exposed to 1% O2 for 48 h than in hPASMC exposed to 21% O2 for 48 h. Furthermore, inhibiting miR-17-5p expression decreased hypoxia-induced arginase II protein levels in hPASMC. Conversely, overexpressing miR-17-5p resulted in greater arginase II protein levels. Somewhat surprisingly, arginase II inhibition was associated with lower miR-17-5p expression in both normoxic and hypoxic hPASMC, whereas overexpressing arginase II resulted in greater miR-17-5p expression in hPASMC. These findings suggest that hypoxia-induced arginase II expression is not only regulated by miR-17-5p but also that there is a feedback loop between arginase II and miR-17-5p in hPASMC. We also found that the arginase II-mediated regulation of miR-17-5p was independent of either p53 or c-myc. We also found that l-arginine, the substrate for arginase II, and l-ornithine, the amino acid product of arginase II, were not involved in the regulation of miR-17-5p expression.
机译:血管重塑和平滑肌细胞增殖是肺动脉高压的标志性致病特征。内源表达的小型非编码RNA的MicroRNA在转录后水平调节基因表达。以前已经证明,在培养的人肺动脉平滑肌细胞(hPASMC)中miR-17的过表达导致活细胞数量增加。以前,我们发现精氨酸酶II促进hPASMC中的缺氧诱导的增殖。因此,我们假设miR-17会被hPASMC中的缺氧上调,并导致更高的精氨酸酶II表达。我们发现,暴露于1%O2 48 h的培养hPASMC中,miR-17-5p和精氨酸酶II的水平明显高于暴露于21%O2 48 h的hPASMC。此外,抑制miR-17-5p表达可降低hPASMC中缺氧诱导的精氨酸酶II蛋白水平。相反,过表达miR-17-5p会导致更高的精氨酸酶II蛋白水平。令人惊讶的是,在常氧和低氧的hPASMC中,精氨酸酶II的抑制与较低的miR-17-5p表达有关,而在精氨酸和过氧的hPASMC中,过表达精氨酸酶II导致较高的miR-17-5p表达。这些发现表明,低氧诱导的精氨酸酶II的表达不仅受miR-17-5p调节,而且在hPASMC中,精氨酸酶II与miR-17-5p之间存在反馈环。我们还发现,精氨酸酶II介导的miR-17-5p调控与p53或c-myc无关。我们还发现,精氨酸酶II的底物l-精氨酸和精氨酸酶II的氨基酸产物l-鸟氨酸不参与miR-17-5p表达的调节。

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