Department of Biology, Jinan University, Guangzhou, China; and.
Department of Cancer Biology, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio, USA.
FASEB J. 2019 Jan;33(1):545-556. doi: 10.1096/fj.201800803R. Epub 2018 Jul 13.
The enhanced expression of miR-31 has been observed in many human malignancies including lung cancer, and this microRNA regulates several aspects of oncogenesis. However, the role of miR-31-5p in energy metabolism remains elusive. Here, we confirm that H1299 and A549 cells, 2 lung cancer cell lines, relay on aerobic glycolysis as main source of ATP. Inhibition of miR-31-5p leads to decreased glycolysis and ATP production, while miR-31-5p overexpression increases them. Hypoxia inducible factor 1 (HIF-1) up-regulates the expression of glycolytic enzymes, and the HIF-1α inhibitor (FIH) inhibits HIF-1 activity. Because FIH is a direct target of miR-31-5p, inhibition of miR-31-5p results in enhanced FIH expression and suppression of HIF-1 signaling, while overexpression of miR-31-5p has the opposite effects. Via this mechanism, miR-31-5p up-regulates aerobic glycolytic genes and maintains energy homeostasis. To further validate the mechanism of miR-31-5p in glycolysis regulation, we show that overexpression or knockdown of FIH rescued the effects of miR-31-5p or miR-31-5p inhibitor on HIF activation and its target gene expression, respectively. Finally, by means of an A549 cell xenograft mouse model, we demonstrate that the miR-31-5p promotes cell proliferation via enhancing glycolysis. In summary, this study reveals that miR-31-5p promotes the Warburg effect via direct targeting of FIH.-Zhu, B., Cao, X., Zhang, W., Pan, G., Yi, Q., Zhong, W., Yan, D. MicroRNA-31-5p enhances the Warburg effect via targeting FIH.
miR-31 的表达增强已在包括肺癌在内的许多人类恶性肿瘤中观察到,这种 microRNA 调节肿瘤发生的几个方面。然而,miR-31-5p 在能量代谢中的作用仍不清楚。在这里,我们证实 2 种肺癌细胞系 H1299 和 A549 依赖有氧糖酵解作为 ATP 的主要来源。miR-31-5p 的抑制导致糖酵解和 ATP 产生减少,而 miR-31-5p 的过表达则增加了它们。缺氧诱导因子 1(HIF-1)上调糖酵解酶的表达,而 HIF-1α 抑制剂(FIH)抑制 HIF-1 活性。因为 FIH 是 miR-31-5p 的直接靶标,所以 miR-31-5p 的抑制导致 FIH 表达增强和 HIF-1 信号抑制,而过表达 miR-31-5p 则有相反的效果。通过这种机制,miR-31-5p 上调有氧糖酵解基因并维持能量稳态。为了进一步验证 miR-31-5p 在糖酵解调节中的机制,我们表明,FIH 的过表达或敲低分别挽救了 miR-31-5p 或 miR-31-5p 抑制剂对 HIF 激活及其靶基因表达的影响。最后,通过 A549 细胞异种移植小鼠模型,我们证明 miR-31-5p 通过增强糖酵解促进细胞增殖。总之,这项研究揭示了 miR-31-5p 通过直接靶向 FIH 促进 Warburg 效应。