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Adaptation to HIF1 alpha Deletion in Hypoxic Cancer Cells by Upregulation of GLUT14 and Creatine Metabolism

机译:通过Uprogulature14和肌酸代谢来适应缺氧癌细胞中HIF1α细胞的HIF1α缺失

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摘要

Hypoxia-inducible factor 1a is a key regulator of the hypoxia response in normal and cancer tissues. It is well recognized to regulate glycolysis and is a target for therapy. However, how tumor cells adapt to grow in the absence of HIF1 alpha is poorly understood and an important concept to understand for developing targeted therapies is the flexibility of the metabolic response to hypoxia via alternative pathways. We analyzed pathways that allow cells to survive hypoxic stress in the absence of HIF1 alpha, using the HCT116 colon cancer cell line with deleted HIF1 alpha versus control. Spheroids were used to provide a 3D model of metabolic gradients. We conducted a metabolomic, transcriptomic, and proteomic analysis and integrated the results. These showed surprisingly that in three-dimensional growth, a key regulatory step of glycolysis is Aldolase A rather than phosphofructokinase. Furthermore, glucose uptake could be maintained in hypoxia through upregulation of GLUT14, not previously recognized in this role. Finally, there was a marked adaptation and change of phosphocreatine energy pathways, which made the cells susceptible to inhibition of creatine metabolism in hypoxic conditions. Overall, our studies show a complex adaptation to hypoxia that can bypass HIF1 alpha, but it is targetable and it provides new insight into the key metabolic pathways involved in cancer growth.
机译:缺氧诱导因子1a是正常和癌组织中缺氧反应的关键调节因子。识别出来调节糖酵解并是治疗的靶标。然而,肿瘤细胞在没有HIF1α的情况下,肿瘤细胞如何变得较差,并且了解用于开发靶向疗法的重要概念是通过替代途径对缺氧的代谢反应的灵活性。我们分析了允许细胞在没有HIF1α的情况下在没有HIF1α的情况下存活缺氧应力的途径,使用HCT116结肠癌细胞系具有缺失的HIF1α与对照。球形用于提供代谢梯度的3D模型。我们进行了代谢物,转录组和蛋白质组学分析并综合了结果。这些令人惊讶地表明,在三维生长中,糖醇分解的关键调节步骤是醛糖酶A而不是磷酸溶酶酶。此外,通过在此作用中未识别的上调,可以在缺氧中保持葡萄糖摄取。最后,存在明显的适应性和磷酸化能量途径的变化,使细胞易于抑制缺氧条件下的肌酸代谢。总体而言,我们的研究表明,对缺氧可以绕过HIF1α的缺氧,但它是有序的,并且它可以进入癌症生长所涉及的关键代谢途径的新洞察力。

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