首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Hypoxia-induced microRNA-424 expression in human endothelial cells regulates HIF-α isoforms and promotes angiogenesis
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Hypoxia-induced microRNA-424 expression in human endothelial cells regulates HIF-α isoforms and promotes angiogenesis

机译:低氧诱导的人内皮细胞microRNA-424表达调节HIF-α亚型并促进血管生成

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摘要

Adaptive changes to oxygen availability are critical for cell survival and tissue homeostasis. Prolonged oxygen deprivation due to reduced blood flow to cardiac or peripheral tissues can lead to myocardial infarction and peripheral vascular disease, respectively. Mammalian cells respond to hypoxia by modulating oxygen-sensing transducers that stabilize the transcription factor hypoxia-inducible factor 1α (HIF-1α), which transactivates genes governing angiogenesis and metabolic pathways. Oxygen-dependent changes in HIF-1α levels are regulated by proline hydroxylation and proteasomal degradation. Here we provide evidence for what we believe is a novel mechanism regulating HIF-1α levels in isolated human ECs during hypoxia. Hypoxia differentially increased microRNA-424 (miR-424) levels in ECs. miR-424 targeted cullin 2 (CUL2), a scaffolding protein critical to the assembly of the ubiquitin ligase system, thereby stabilizing HIF-α isoforms. Hypoxia-induced miR-424 was regulated by PU.1-dependent transactivation. PU.1 levels were increased in hypoxic endothelium by RUNX-1 and C/EBPα. Furthermore, miR-424 promoted angiogenesis in vitro and in mice, which was blocked by a specific morpholino. The rodent homolog of human miR-424, mu-miR-322, was significantly upregulated in parallel with HIF-1α in experimental models of ischemia. These results suggest that miR-322/424 plays an important physiological role in post-ischemic vascular remodeling and angiogenesis.
机译:氧气利用率的自适应变化对于细胞存活和组织稳态至关重要。由于流向心脏或周围组织的血流减少而导致的长期缺氧可能分别导致心肌梗塞和周围血管疾病。哺乳动物细胞通过调节氧敏传感器来稳定缺氧,该传感器稳定转录因子缺氧诱导因子1α(HIF-1α),后者可激活控制血管生成和代谢途径的基因。 HIF-1α水平的氧依赖性变化受脯氨酸羟化和蛋白酶体降解的调节。在这里,我们提供证据,证明我们认为是一种在缺氧期间调节孤立的人类EC中HIF-1α水平的新机制。低氧使EC中的microRNA-424(miR-424)水平差异性增加。 miR-424靶向cullin 2(CUL2),这是一种对泛素连接酶系统的组装至关重要的支架蛋白,从而稳定了HIF-α亚型。低氧诱导的miR-424受PU.1依赖性反式激活的调节。 RUNX-1和C /EBPα使低氧内皮细胞PU.1水平升高。此外,miR-424可在体外和小鼠中促进血管生成,这被特定的吗啉代阻断。在缺血实验模型中,人类miR-424,mu-miR-322的啮齿动物同源物与HIF-1α平行上调。这些结果表明,miR-322 / 424在缺血后血管重塑和血管生成中起着重要的生理作用。

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