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A Time for MYC: Metabolism and Therapy

机译:Myc的时间:新陈代谢和治疗

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摘要

The MYC oncogene is frequently deregulated in human cancers, whereas the proto-oncogene is exquisitely, tightly regulated in normal cells. Deregulated MYC drives transcriptional imbalance, thereby altering metabolism and disrupting the circadian Bmall-Clock E-box-dependent transcriptional circuitry. Sustained oncogenic MYC expression drives a constitutive growth program with mammalian target of rapamycin (mTOR) activation that renders cells dependent on nutrients, such that glucose or glutamine deprivation could trigger cell death and key enzymes such as lactate dehydrogenase A (LDHA) and glutaminase (GLS) amenable for targeting in cancers. Further, MYC-mediated suppression of the circadian clock is surmised to suspend the inhibitory effect of Bmall-Clock on metabolism, allowing for MYC-driven cancer cells to reach a higher state of anabolic metabolism. Hence, metabolic therapy could be deployed, particularly at specific times of the day, to diminish side effects to normal tissues while maintaining antitumor efficacy.
机译:Myc oncogogene经常在人类癌症中造成管癌,而原癌基因在正常细胞中被精确地调节。解除管制的Myc驱动转录失衡,从而改变新陈代谢并破坏昼夜时钟e-box依赖性转录电路。持续的致癌物质表达驱动哺乳动物催乳素(MTOR)活化的哺乳动物靶标的组成型增长计划,使得依赖于营养素的细胞,使得葡萄糖或谷氨酰胺剥夺可能引发细胞死亡和关键酶如乳酸脱氢酶A(LDHA)和谷氨酰胺酶(GLS )适合靶向癌症。此外,Myc介导的昼夜节奏抑制急剧抑制BMALL - 时钟对新陈代谢的抑制作用,从而允许Myc驱动的癌细胞达到更高的合成代谢状态。因此,可以部署代谢治疗,特别是在一天的特异性时间,以在保持抗肿​​瘤功效的同时对正常组织递减副作用。

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