首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Loss of miR-145-5p Causes Ceruloplasmin Interference with PHD-Iron Axis and HIF-2α Stabilization in Lung Adenocarcinoma-Mediated Angiogenesis
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Loss of miR-145-5p Causes Ceruloplasmin Interference with PHD-Iron Axis and HIF-2α Stabilization in Lung Adenocarcinoma-Mediated Angiogenesis

机译:miR-145-5p的丧失导致刺激性对肺腺癌和HIF-2α稳定化的刺激性干扰血管生成的血管生成

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摘要

For decades, lung cancer has been the leading cause of cancer-related death worldwide. Hypoxia-inducible factors (HIFs) play critical roles in mediating lung cancer development and metastasis. The present study aims to clarify how HIF’s over-activation affects lung cancer angiogenesis not only in a normoxic condition, but also a hypoxic niche. Our study shows that human lung cancer exhibits elevated levels of ceruloplasmin (CP), which has a negative impact on the prognosis of patients. CP affects the cellular Fe level, which inactivates prolyl hydroxylase (PHD) 1 and 2, resulting in HIF-2α enhancement. Increased HIF-2α leads to vascular endothelial growth factor-A (VEGF-A) secretion and angiogenesis. The expression of CP is under the epigenetic control of miR-145-5p. Restoration of miR-145-5p by miRNA mimics transfection decreases CP expression, increases Fe and PHD1/2 levels and HIF hydroxylation while reduced HIF-2α levels resulting in the inhibition of tumor angiogenesis. In contrast, inhibition of miR-145-5p by miRNA inhibitors increases the expression of CP and VEGF-A in lung cancer cells. Significantly, miR-145-5p expression is lost in the tumor samples of lung cancer patients, and low miR-145-5p expression is strongly correlated with a shorter overall survival time. In conclusion, the current study reveals the clinical importance and prognostic value of miR-145-5p and CP. It identifies a unique mechanism of HIF-2α over-activation, which is mediated by iron imbalance of the iron-PHD coupling that modulates tumor angiogenesis.
机译:几十年来,肺癌一直是全世界癌症相关死亡的主要原因。缺氧诱导因子(HIF)在介导肺癌发育和转移中发挥着关键作用。本研究旨在阐明HIF的过度激活如何影响肺癌血管生成不仅在常见常规条件下影响肺癌血管生成,而且是一种缺氧性质。我们的研究表明,人肺癌表现出升高的刺激率(CP),对患者的预后产生负面影响。 CP影响细胞Fe水平,其灭活脯氨酰羟化酶(PHD)1和2,导致HIF-2α增强。增加的HIF-2α导致血管内皮生长因子-A(VEGF-A)分泌和血管生成。 CP的表达是miR-145-5p的表观遗传控制。 MiRNA模仿转染的miR-145-5p的恢复降低了Cp表达,增加了Fe和Phd1 / 2水平和HIF羟基化,同时降低了HIF-2α水平,导致肿瘤血管生成的抑制。相反,MiRNA抑制剂MiR-145-5P的抑制增加了CP和VEGF-A在肺癌细胞中的表达。值得注意的是,MIR-145-5P表达在肺癌患者的肿瘤样本中丢失,低miR-145-5p表达与较短的整体存活时间强烈相关。总之,目前的研究揭示了MIR-145-5P和CP的临床重要性和预后价值。它鉴定了HIF-2α过激活的独特机制,该机制是通过调节肿瘤血管生成的铁-PP偶联的铁的铁磷酸铁的铁失调介导。

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