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Quantitative metabolic flux analysis reveals an unconventional pathway of fatty acid synthesis in cancer cells deficient for the mitochondrial citrate transport protein

机译:定量代谢通量分析显示线粒体柠檬酸盐转运蛋白缺乏癌细胞中脂肪酸合成的非常规途径

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摘要

The mitochondrial citrate transport protein (CTP), encoded by SLC25A1, accommodates bidirectional trafficking of citrate between the mitochondria and cytosol, supporting lipid biosynthesis and redox homeostasis. Genetic CTP deficiency causes a fatal neurodevelopmental syndrome associated with the accumulation of L-and D-2-hydroxyglutaric acid, and elevated CTP expression is associated with poor prognosis in several types of cancer, emphasizing the importance of this transporter in multiple human pathologies. Here we describe the metabolic consequences of CTP deficiency in cancer cells. As expected from the phenotype of CTP-deficient humans, somatic CTP loss in cancer cells induces broad dysregulation of mitochondrial metabolism, resulting in accumulation of lactate and of the L-and D-enantiomers of 2-hydroxyglutarate (2HG) and depletion of TCA cycle intermediates. It also eliminates mitochondrial import of citrate from the cytosol. To quantify the impact of CTP deficiency on metabolic flux, cells were cultured with a set of C-13-glucose and C-13-glutamine tracers with resulting data integrated by metabolic flux analysis (MFA). CTP-deficient cells displayed a major restructuring of central carbon metabolism, including suppression of pyruvate dehydrogenase (PDH) and induction of glucose-dependent anaplerosis through pyruvate carboxylase (PC). We also observed an unusual lipogenic pathway in which carbon from glucose supplies mitochondrial production of alpha-ketoglutarate (AKG), which is then trafficked to the cytosol and used to supply reductive carboxylation by isocitrate dehydrogenase 1 (IDH1). The resulting citrate is cleaved to produce lipogenic acetyl-CoA, thereby completing a novel pathway of glucose-dependent reductive carboxylation. In CTP deficient cells, IDH1 inhibition suppresses lipogenesis from either glucose or glutamine, implicating IDH1 as a required component of fatty acid synthesis in states of CTP deficiency.
机译:由SLC25A1编码的线粒体柠檬酸盐蛋白(CTP)可容纳线粒体和细胞溶胶之间的柠檬酸盐的双向行动,支持脂质生物合成和氧化还原稳态。遗传CTP缺乏症导致致命的神经发育综合征与L-and D-2-羟基戊酸的积累相关,并且升高的CTP表达与几种类型的癌症预后不良有关,强调该转运蛋白在多种人类病理中的重要性。在这里,我们描述了CTP缺乏癌细胞的代谢后果。从CTP缺陷人类的表型预期,癌细胞中的体细胞CTP损失诱导线粒体代谢的广泛失调,导致乳酸的积累和2-羟基戊酸酯(2Hg)的L-和D-映体和TCA循环的耗尽中间体。它还消除了来自细胞溶胶的线粒体进口柠檬酸盐。为了量化CTP缺乏对代谢通量的影响,用一组C-13-葡萄糖和C-13-谷氨酰胺示踪剂培养细胞,其通过代谢通量分析(MFA)集成的结果。 CTP缺陷细胞显示中央碳代谢的主要重组,包括抑制丙酮酸脱氢酶(PDH),并通过丙酮酸羧化酶(PC)诱导葡萄糖依赖性脉络剂。我们还观察到一种不寻常的富血源性途径,其中来自葡萄糖供应的碳的碳系α-酮戊酸(akg)产生,然后将其被以亚乙酸脱氢酶1(IDH1)供给还原羧化供应。得到的柠檬酸盐被裂解以产生脂质原乙酰辅酶,从而完成葡萄糖依赖性羧化的新途径。在CTP缺陷的细胞中,IDH1抑制抑制来自葡萄糖或谷氨酰胺的脂肪生成,暗示IDH1作为CTP缺乏状态中脂肪酸合成的所需组分。

著录项

  • 来源
    《Metabolic engineering》 |2017年第2017期|共10页
  • 作者单位

    Univ Texas Southwestern Med Ctr Dallas Childrens Med Ctr Res Inst 5323 Harry Hines Blvd Dallas;

    Univ Texas Southwestern Med Ctr Dallas Childrens Med Ctr Res Inst 5323 Harry Hines Blvd Dallas;

    Univ Texas Southwestern Med Ctr Dallas Childrens Med Ctr Res Inst 5323 Harry Hines Blvd Dallas;

    Univ Texas Southwestern Med Ctr Dallas Childrens Med Ctr Res Inst 5323 Harry Hines Blvd Dallas;

    Univ Texas Southwestern Med Ctr Dallas Dept Pathol 5323 Harry Hines Blvd Dallas TX 75390 USA;

    Univ Texas Southwestern Med Ctr Dallas Childrens Med Ctr Res Inst 5323 Harry Hines Blvd Dallas;

    Univ Texas Southwestern Med Ctr Dallas Childrens Med Ctr Res Inst 5323 Harry Hines Blvd Dallas;

    Univ Texas Southwestern Med Ctr Dallas Childrens Med Ctr Res Inst 5323 Harry Hines Blvd Dallas;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 蛋白质;
  • 关键词

    SLC25A1; Citrate transporter; 2HG; IDH1; Lung cancer; Cancer metabolism;

    机译:SLC25A1;柠檬酸盐转运蛋白;2Hg;IDH1;肺癌;癌症新陈代谢;

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