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MYC and AMPK–Save Energy or Die!

机译:MYC和AMPK –节省能源或死亡!

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摘要

MYC sustains non-stop proliferation by altering metabolic machinery to support growth of cell mass. As part of the metabolic transformation MYC promotes lipid, nucleotide and protein synthesis by hijacking citric acid cycle to serve biosynthetic processes, which simultaneously exhausts ATP production. This leads to the activation of cellular energy sensing protein, AMP-activated protein kinase (AMPK). Cells with normal growth control can stop cell proliferation machinery to replenish ATP reservoirs whereas MYC prevents such break by blocking the cell cycle exit. The relentless cell cycle activation, accompanied by sustained metabolic stress and AMPK activity, switches the energy-saving AMPK to pro-apoptotic AMPK. The AMPK-involving metabolic side of MYC apoptosis may provide novel avenues for therapeutic development. Here we first review the role of anabolic MYC and catabolic AMPK pathways in context of cancer and then discuss how the concomitant activity of both pathways in tumor cells may result in targetable synthetic lethal vulnerabilities.
机译:MYC通过改变新陈代谢机制来支持细胞量的增长,从而维持不间断的增殖。作为代谢转化的一部分,MYC通过劫持柠檬酸循环来促进生物合成过程,从而同时促进ATP的产生,从而促进脂质,核苷酸和蛋白质的合成。这导致细胞能量感应蛋白AMP激活的蛋白激酶(AMPK)的激活。具有正常生长控制的细胞可以停止细胞增殖机制以补充ATP储库,而MYC通过阻止细胞周期退出来防止这种破坏。无情的细胞周期激活,伴随持续的代谢压力和AMPK活性,将节能的AMPK转换为促凋亡的AMPK。 MYC细胞凋亡中涉及AMPK的代谢方面可能为治疗发展提供新途径。在这里,我们首先回顾合成代谢MYC和分解代谢AMPK途径在癌症中的作用,然后讨论肿瘤细胞中这两种途径的伴随活性如何导致可靶向的合成致死性脆弱性。

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