Reitman Zachary J, Duncan Christopher G, Poteet Ethan, Winters Ali, Yan Liang-Jun, Gooden David M, Spasojevic Ivan, Boros Laszlo G, Yang Shao-Hua, Yan Hai
From the Department of Pathology, the Department of Medicine, MedStar Union Memorial Hospital, Baltimore, Maryland 21218.
From the Department of Pathology.
J Biol Chem. 2014 Aug 22;289(34):23318-28. doi: 10.1074/jbc.M114.575183. Epub 2014 Jul 1.
Mutations in the cytosolic NADP(+)-dependent isocitrate dehydrogenase (IDH1) occur in several types of cancer, and altered cellular metabolism associated with IDH1 mutations presents unique therapeutic opportunities. By altering IDH1, these mutations target a critical step in reductive glutamine metabolism, the metabolic pathway that converts glutamine ultimately to acetyl-CoA for biosynthetic processes. While IDH1-mutated cells are sensitive to therapies that target glutamine metabolism, the effect of IDH1 mutations on reductive glutamine metabolism remains poorly understood. To explore this issue, we investigated the effect of a knock-in, single-codon IDH1-R132H mutation on the metabolism of the HCT116 colorectal adenocarcinoma cell line. Here we report the R132H-isobolome by using targeted (13)C isotopomer tracer fate analysis to trace the metabolic fate of glucose and glutamine in this system. We show that introduction of the R132H mutation into IDH1 up-regulates the contribution of glutamine to lipogenesis in hypoxia, but not in normoxia. Treatment of cells with a d-2-hydroxyglutarate (d-2HG) ester recapitulated these changes, indicating that the alterations observed in the knocked-in cells were mediated by d-2HG produced by the IDH1 mutant. These studies provide a dynamic mechanistic basis for metabolic alterations observed in IDH1-mutated tumors and uncover potential therapeutic targets in IDH1-mutated cancers.
胞质NADP(+)-依赖型异柠檬酸脱氢酶(IDH1)的突变存在于多种癌症类型中,与IDH1突变相关的细胞代谢改变带来了独特的治疗机会。通过改变IDH1,这些突变靶向还原型谷氨酰胺代谢中的关键步骤,该代谢途径最终将谷氨酰胺转化为乙酰辅酶A用于生物合成过程。虽然IDH1突变的细胞对靶向谷氨酰胺代谢的疗法敏感,但IDH1突变对还原型谷氨酰胺代谢的影响仍知之甚少。为了探究这个问题,我们研究了敲入的单密码子IDH1-R132H突变对HCT116结肠直肠腺癌细胞系代谢的影响。在此,我们通过使用靶向(13)C同位素异构体示踪命运分析来追踪该系统中葡萄糖和谷氨酰胺的代谢命运,报告了R132H-异波洛姆曲线。我们发现,将R132H突变引入IDH1会在缺氧而非常氧条件下上调谷氨酰胺对脂肪生成的贡献。用d-2-羟基戊二酸(d-2HG)酯处理细胞重现了这些变化,表明在敲入细胞中观察到的改变是由IDH1突变体产生的d-2HG介导的。这些研究为IDH1突变肿瘤中观察到的代谢改变提供了动态的机制基础,并揭示了IDH1突变癌症中的潜在治疗靶点。