首页> 外文期刊>Antioxidants and redox signalling >Hypoxia-Responsive MicroRNA-101 Promotes Angiogenesis via Heme Oxygenase-1/Vascular Endothelial Growth Factor Axis by Targeting Cullin 3
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Hypoxia-Responsive MicroRNA-101 Promotes Angiogenesis via Heme Oxygenase-1/Vascular Endothelial Growth Factor Axis by Targeting Cullin 3

机译:缺氧反应性MicroRNA-101通过靶向Cullin 3促进血红素加氧酶-1 /血管内皮生长因子轴的血管生成。

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Aims: Hypoxia induces expression of various genes and microRNAs (miRs) that regulate angiogenesis and vascular function. In this study, we investigated a new functional role of new hypoxia-responsive miR-101 in angiogenesis and its underlying mechanism for regulating heme oxygenase-1 (HO-1) and vascular endothelial growth factor (VEGF) expression. Results: We found that hypoxia induced miR-101, which binds to the 3 ' untranslated region of cullin 3 (Cul3) and stabilizes nuclear factor erythroid-derived 2-related factor 2 (Nrf2) via inhibition of the proteasomal degradation pathway. miR-101 overexpression promoted Nrf2 nuclear accumulation, which was accompanied with increases in HO-1 induction, VEGF expression, and endothelial nitric oxide synthase (eNOS)-derived nitric oxide (NO) production. The elevated NO-induced S-nitrosylation of Kelch-like ECH-associated protein 1 and subsequent induction of Nrf2-dependent HO-1 lead to further elevation of VEGF production via a positive feedback loop between the Nrf2/HO-1 and VEGF/eNOS axes. Moreover, miR-101 promoted angiogenic signals and angiogenesis both in vitro and in vivo, and these events were attenuated by inhibiting the biological activity of HO-1, VEGF, or eNOS. Moreover, these effects were also observed in aortic rings from HO-1(+/-) and eNOS(-/-) mice. Local overexpression of miR-101 improved therapeutic angiogenesis and perfusion recovery in the ischemic mouse hindlimb, whereas antagomiR-101 diminished regional blood flow. Innovation: Hypoxia-responsive miR-101 stimulates angiogenesis by activating the HO-1/VEGF/eNOS axis via Cul3 targeting. Thus, miR-101 is a novel angiomir. Conclusion: Our results provide new mechanistic insights into a functional role of miR-101 as a potential therapeutic target in angiogenesis and vascular remodeling. Antioxid. Redox Signal. 21, 2469-2482.
机译:目的:缺氧诱导各种基因和微RNA(miR)的表达,这些基因和微RNA调节血管生成和血管功能。在这项研究中,我们调查了新的缺氧反应性miR-101在血管生成中的新功能及其调节血红素加氧酶-1(HO-1)和血管内皮生长因子(VEGF)表达的潜在机制。结果:我们发现缺氧诱导的miR-101与cullin 3(Cul3)的3'非翻译区结合,并通过抑制蛋白酶体降解途径稳定了核因子类红细胞衍生的2相关因子2(Nrf2)。 miR-101过表达促进Nrf2核积累,并伴随HO-1诱导,VEGF表达和内皮型一氧化氮合酶(eNOS)衍生的一氧化氮(NO)产生增加。 NO诱导的Kelch样ECH相关蛋白1的S亚硝化水平升高以及随后Nrf2依赖性HO-1的诱导通过Nrf2 / HO-1和VEGF / eNOS之间的正反馈回路进一步导致VEGF的产生轴。而且,miR-101在体外和体内均促进血管生成信号和血管生成,并且通过抑制HO-1,VEGF或eNOS的生物学活性来减弱这些事件。此外,在HO-1(+/-)和eNOS(-/-)小鼠的主动脉环中也观察到了这些作用。 miR-101的局部过表达改善了缺血小鼠后肢的治疗性血管生成和灌注恢复,而antagomiR-101则减少了局部血流。创新:低氧反应性miR-101通过Cul3靶向激活HO-1 / VEGF / eNOS轴刺激血管生成。因此,miR-101是一种新颖的血管生成素。结论:我们的结果为miR-101在血管生成和血管重塑中作为潜在治疗靶标的功能性作用提供了新的机制性见解。抗氧化。氧化还原信号。 21,2469-2482。

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