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Hypoxia-responsive miR-210 promotes self-renewal capacity of colon tumor-initiating cells by repressing ISCU and by inducing lactate production

机译:缺氧反应性miR-210通过抑制ISCU和诱导乳酸生成来促进结肠肿瘤引发细胞的自我更新能力

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摘要

Low oxygen concentrations (hypoxia) are known to affect the cellular metabolism and have been suggested to regulate a subpopulation of cancer cells with tumorigenic properties, the so-called tumor-initiating cells (TICs). To better understand the mechanism of hypoxia-induced TIC activation, we set out to study the role of hypoxia-responsive miRNAs in recently established colon cancer patient-derived TICs. We were able to show that low oxygen concentrations consistently lead to the upregulation of miR-210 in different primary TIC-enriched cultures. Both stable overexpression of miR-210 and knockdown of its target gene ISCU resulted in enhanced TIC self-renewal. We could validate the tumorigenic properties of miR- 210 in in vivo experiments by showing that ectopic expression of miR-210 results in increased tumor incidence. Furthermore, enhanced miR-210 expression correlated with reduced TCA cycle activity and increased lactate levels. Importantly, by blocking lactate production via inhibition of LDHA, we could reverse the promoting effect of miR-210 on self-renewal capacity, thereby emphasizing the regulatory impact of the glycolytic phenotype on colon TIC properties. Finally, by assessing expression levels in patient tissue, we could demonstrate the clinical relevance of the miR-210/ISCU signaling axis for colorectal carcinoma. Taken together, our study highlights the importance of hypoxia-induced miR-210 in the regulation of colon cancer initiation.
机译:已知低氧浓度(低氧)会影响细胞代谢,并已被建议调节具有致癌特性的癌细胞亚群,即所谓的肿瘤引发细胞(TICs)。为了更好地了解低氧诱导的TIC激活的机制,我们着手研究低氧反应性miRNA在最近建立的结肠癌患者源性TIC中的作用。我们能够证明,低氧浓度始终导致在不同的富含TIC的原代培养物中miR-210的上调。 miR-210的稳定过表达和其靶基因ISCU的敲低均导致TIC自我更新增强。我们可以通过显示miR-210的异位表达导致增加的肿瘤发生率,从而在体内实验中验证miR-210的致癌特性。此外,增强的miR-210表达与降低的TCA循环活性和增加的乳酸水平相关。重要的是,通过抑制LDHA来阻止乳酸的产生,我们可以逆转miR-210对自我更新能力的促进作用,从而强调糖酵解表型对结肠​​TIC特性的调节作用。最后,通过评估患者组织中的表达水平,我们可以证明miR-210 / ISCU信号转导轴与大肠癌的临床相关性。综上所述,我们的研究强调了低氧诱导的miR-210在结肠癌起始调控中的重要性。

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