Integrative Bioscience and Biomedical Engineering, Graduate School of Science and Engineering, Waseda University, 2-2 Wakamatsu, Shinjuku, Tokyo 162-8480, Japan.
J Biol Chem. 2012 Oct 5;287(41):34110-9. doi: 10.1074/jbc.M112.356717. Epub 2012 Aug 15.
Iron is fundamental for sustaining life for living organisms, and the iron metabolism is finely regulated at different levels. In cancer cells, deregulation of the iron metabolism induces oxidative stress and drives tumor progression and metastasis; however, the molecular mechanisms of iron homeostasis are not fully understood. Here we found that iron deficiency as well as hypoxia promoted microRNA-210 (miR-210) expression. A central mediator of miR-210 transcriptional activation is the hypoxia-inducible factor (HIF)-1α, and the hypoxia-response element in the miR-210 promoter is confirmed experimentally. This is in agreement with the data from in vivo studies that have demonstrated the presence of miR-210-expressing cells at the chronic hypoxic regions of xenografted tumors. Furthermore we found two essential molecules for iron homeostasis, iron-sulfur cluster scaffold protein (ISCU) and transferrin receptor 1 (TfR), are a direct target of miR-210. Transfection of miR-210 decreases the uptake of transferrin by inhibiting the expression of TfR. In addition, inhibition of miR-210 by anti-miR-210 up-regulates ISCU expression. These findings suggest that miR-210 works as an iron sensor and is involved in the maintenance of iron homeostasis by sustaining the TfR expression level to stimulate cell proliferation and promote cell survival in the hypoxic region within tumors.
铁对于维持生命体至关重要,其代谢在不同水平受到精细调控。在癌细胞中,铁代谢的失调会引发氧化应激,促进肿瘤的进展和转移;然而,铁稳态的分子机制尚未完全阐明。在这里,我们发现缺铁和缺氧均可促进 microRNA-210(miR-210)的表达。miR-210 转录激活的一个核心介质是缺氧诱导因子(HIF)-1α,并且 miR-210 启动子中的缺氧反应元件已在实验中得到证实。这与体内研究的数据一致,该数据表明在异种移植肿瘤的慢性缺氧区域存在表达 miR-210 的细胞。此外,我们发现铁稳态的两个必需分子,铁硫簇支架蛋白(ISCU)和转铁蛋白受体 1(TfR),是 miR-210 的直接靶标。转染 miR-210 通过抑制 TfR 的表达来减少转铁蛋白的摄取。此外,通过抗 miR-210 抑制 miR-210 可上调 ISCU 的表达。这些发现表明,miR-210 作为铁传感器发挥作用,通过维持 TfR 表达水平来参与铁稳态的维持,从而刺激缺氧区域内的细胞增殖并促进肿瘤细胞的存活。