医学
黑色素瘤
谷氨酰胺分解
靶向治疗
癌症研究
重编程
代谢途径
厌氧糖酵解
糖酵解
合成致死
癌症
内科学
癌细胞
生物
新陈代谢
细胞
DNA修复
遗传学
基因
作者
Alexander W. Loftus,Mehrdad Zarei,Hanna Kakish,Omid Hajihassani,Jonathan J. Hue,Christina Boutros,Hallie J. Graor,Faith Nakazzi,Tsegaw Bahlibi,Jordan M. Winter,Luke D. Rothermel
标识
DOI:10.1016/j.ctrv.2024.102795
摘要
Melanoma metabolism can be reprogrammed by activating BRAF mutations. These mutations are present in up to 50% of cutaneous melanomas, with the most common being V600E. BRAF mutations augment glycolysis to promote macromolecular synthesis and proliferation. Prior to the development of targeted anti-BRAF therapies, these mutations were associated with accelerated clinical disease in the metastatic setting. Combination BRAF and MEK inhibition is a first line treatment option for locally advanced or metastatic melanoma harboring targetable BRAF mutations. This therapy shows excellent response rates but these responses are not durable, with almost all patients developing resistance. When BRAF mutated melanoma cells are inhibited with targeted therapies the metabolism of those cells also changes. These cells rely less on glycolysis for energy production, and instead shift to a mitochondrial phenotype with upregulated TCA cycle activity and oxidative phosphorylation. An increased dependence on glutamine utilization is exhibited to support TCA cycle substrates in this metabolic rewiring of BRAF mutated melanoma. Herein we describe the relevant core metabolic pathways modulated by BRAF inhibition. These adaptive pathways represent vulnerabilities that could be targeted to overcome resistance to BRAF inhibitors. This review evaluates current and future therapeutic strategies that target metabolic reprogramming in melanoma cells, particularly in response to BRAF inhibition.
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