首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Glutamine regulates mitochondrial uncoupling protein 2 to promote glutaminolysis in neuroblastoma cells
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Glutamine regulates mitochondrial uncoupling protein 2 to promote glutaminolysis in neuroblastoma cells

机译:谷氨酰胺调节线粒体解耦蛋白2以促进神经母细胞瘤细胞的谷氨酸溶解

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Mitochondrial uncoupling protein 2 (UCP2) is highly abundant in rapidly proliferating cells that utilize aerobic glycolysis, such as stem cells, cancer cells, and cells of the immune system. However, the function of UCP2 has been a longstanding conundrum. Considering the strict regulation and unusually short life time of the protein, we propose that UCP2 acts as a "signaling protein" under nutrient shortage in cancer cells. We reveal that glutamine shortage induces the rapid and reversible downregulation of UCP2, decrease of the metabolic activity and proliferation of neuroblastoma cells, that are regulated by glutamine per se but not by glutamine metabolism. Our findings indicate a very rapid (within 1 h) metabolic adaptation that allows the cell to survive by either shifting its metabolism to the use of the alternative fuel glutamine or going into a reversible, more quiescent state. The results imply that UCP2 facilitates glutamine utilization as an energetic fuel source, thereby providing metabolic flexibility during glucose shortage. The targeting UCP2 by drugs to intervene with cancer cell metabolism may represent a new strategy for treatment of cancers resistant to other therapies.
机译:线粒体非耦合蛋白2(UCP2)在快速增殖的细胞中高度丰富,其利用有氧糖醇溶解,例如干细胞,癌细胞和免疫系统的细胞。然而,UCP2的功能是长期的难题。考虑到蛋白质的严格调节和异常短暂的寿命,我们提出了UCP2在癌细胞中营养不足的“信号蛋白”。我们揭示谷氨酰胺短缺诱导UCP2的快速和可逆下调,降低神经母细胞瘤细胞的代谢活性和增殖,这是由谷氨酰胺本身调节但不是谷氨酰胺代谢。我们的研究结果表明,一种非常快速(在1小时内以内)代谢适应,允许细胞通过将其代谢转移到使用替代燃料谷氨酰胺或进入可逆的更静态状态而生存。结果意味着UCP2促进谷氨酰胺利用作为能量燃料源,从而在葡萄糖短缺期间提供代谢柔韧性。药物靶向UCP2与癌细胞代谢进行干预,可以代表治疗抗抗其他疗法的癌症的新策略。

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