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Metabolic Dependencies in RAS-Driven Cancers

机译:RAS驱动癌症中的代谢依赖性

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摘要

The ability to inhibit the RAS oncogene has been the holy grail of oncology because of the critical role of this gene in a multitude of tumor types. In addition, RAS-mutant tumors are among the most aggressive and refractory to treatment. Although directly targeting the RAS oncogene has proven challenging, an alternative approach for treating RAS-driven cancers is to inhibit critical downstream events that are required for tumor maintenance. Indeed, much focus has been put on inhibiting signaling cascades downstream of RAS. Recent studies have shown that oncogenic RAS promotes a metabolic reprogramming of tumor cells, shifting them toward an anabolic metabolism necessary to produce biomass to support unconstrained proliferation. These cancers also use a diverse set of fuel sources to meet their metabolic needs and have even developed a variety of mechanisms to act as metabolic scavengers to obtain necessary metabolic substrates from both extracellular and intracellular sources. Collectively, these adaptations can create "metabolic bottle-necks" whereby tumor cells rely on particular pathways or rate-limiting metabolites. In this regard, inhibiting individual or combinations of these metabolic pathways can attenuate growth in preclinical models. Because these dependencies are tumor selective and downstream of oncogenic RAS, there is the opportunity for therapeutic intervention. Although targeting tumor metabolism is still in the early days of translation to patients, our continued advances in understanding critical metabolic adaptations in RAS-driven cancers, as well as the ability to study this altered metabolism in relevant tumor models, will accelerate the development of new therapeutic approaches. (C)2015 AACR.
机译:由于该基因在众多肿瘤类型中的关键作用,抑制Ras癌基因的能力已经是肿瘤的神圣吊装。此外,RAS-突变肿瘤是治疗最具侵略性和难以忍受的肿瘤之一。虽然直接靶向Ras癌基因已被证明挑战,但治疗RAS驱动癌症的替代方法是抑制肿瘤维护所需的临界下游事件。实际上,抑制了RA下游的信号级联的焦点很多。最近的研究表明,致癌RAS促进肿瘤细胞的代谢重新编程,使它们朝向产生生物质产生的合成代谢以支持无约束的增殖。这些癌症还使用各种燃料来源来满足其代谢需求,甚至开发出各种机制,以充当代谢清除剂,以获得来自细胞外和细胞内来源的必要的代谢底物。集体,这些适应可以创造“代谢瓶颈”,由此肿瘤细胞依赖于特定途径或限速代谢物。在这方面,抑制这些代谢途径的个体或组合可以在临床前模型中衰减生长。因为这些依赖性是肿瘤选择性和肿瘤癌的下游,所以有机会治疗干预。虽然靶向肿​​瘤代谢仍处于翻译的早期对患者的初期,但我们继续进展在RAS驱动的癌症中了解关键代谢适应,以及研究相关肿瘤模型中的这种改变的新陈代谢的能力,将加速新的新的治疗方法。 (c)2015年AACR。

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