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计算机模拟基因表达分析揭示了异柠檬酸脱氢酶1(IDH1)野生型胶质瘤中的糖酵解和乙酸盐回补途径,以及IDH1突变型胶质瘤中的乳酸和谷氨酸回补途径。

In silico gene expression analysis reveals glycolysis and acetate anaplerosis in IDH1 wild-type glioma and lactate and glutamate anaplerosis in IDH1-mutated glioma.

作者信息

Khurshed Mohammed, Molenaar Remco J, Lenting Krissie, Leenders William P, van Noorden Cornelis J F

机构信息

Department of Medical Biology, Academic Medical Center, University of Amsterdam, 1105 AZ Amsterdam, The Netherlands.

Department of Pathology, Radboudumc, 6500 HB Nijmegen, The Netherlands.

出版信息

Oncotarget. 2017 Jul 25;8(30):49165-49177. doi: 10.18632/oncotarget.17106.

Abstract

Hotspot mutations in isocitrate dehydrogenase 1 (IDH1) initiate low-grade glioma and secondary glioblastoma and induce a neomorphic activity that converts α-ketoglutarate (α-KG) to the oncometabolite D-2-hydroxyglutarate (D-2-HG). It causes metabolic rewiring that is not fully understood. We investigated the effects of IDH1 mutations (IDH1MUT) on expression of genes that encode for metabolic enzymes by data mining The Cancer Genome Atlas. We analyzed 112 IDH1 wild-type (IDH1WT) versus 399 IDH1MUT low-grade glioma and 157 IDH1WT versus 9 IDH1MUT glioblastoma samples. In both glioma types, IDH1WT was associated with high expression levels of genes encoding enzymes that are involved in glycolysis and acetate anaplerosis, whereas IDH1MUT glioma overexpress genes encoding enzymes that are involved in the oxidative tricarboxylic acid (TCA) cycle. In vitro, we observed that IDH1MUT cancer cells have a higher basal respiration compared to IDH1WT cancer cells and inhibition of the IDH1MUT shifts the metabolism by decreasing oxygen consumption and increasing glycolysis. Our findings indicate that IDH1WT glioma have a typical Warburg phenotype whereas in IDH1MUT glioma the TCA cycle, rather than glycolytic lactate production, is the predominant metabolic pathway. Our data further suggest that the TCA in IDH1MUT glioma is driven by lactate and glutamate anaplerosis to facilitate production of α-KG, and ultimately D-2-HG. This metabolic rewiring may be a basis for novel therapies for IDH1MUT and IDH1WT glioma.

摘要

异柠檬酸脱氢酶1(IDH1)的热点突变引发低级别胶质瘤和继发性胶质母细胞瘤,并诱导一种新的活性,将α-酮戊二酸(α-KG)转化为致癌代谢物D-2-羟基戊二酸(D-2-HG)。它导致了尚未完全理解的代谢重编程。我们通过挖掘癌症基因组图谱研究了IDH1突变(IDH1MUT)对编码代谢酶的基因表达的影响。我们分析了112个IDH1野生型(IDH1WT)与399个IDH1MUT低级别胶质瘤样本,以及157个IDH1WT与9个IDH1MUT胶质母细胞瘤样本。在这两种胶质瘤类型中,IDH1WT与编码参与糖酵解和乙酸盐回补途径的酶的基因高表达水平相关,而IDH1MUT胶质瘤则过度表达编码参与氧化三羧酸(TCA)循环的酶的基因。在体外,我们观察到与IDH1WT癌细胞相比,IDH1MUT癌细胞具有更高的基础呼吸率,抑制IDH1MUT会通过减少氧气消耗和增加糖酵解来改变代谢。我们的研究结果表明,IDH1WT胶质瘤具有典型的瓦博格表型,而在IDH1MUT胶质瘤中,TCA循环而非糖酵解产生乳酸是主要的代谢途径。我们的数据进一步表明,IDH1MUT胶质瘤中的TCA循环由乳酸和谷氨酸回补途径驱动,以促进α-KG的产生,并最终促进D-2-HG的产生。这种代谢重编程可能是IDH1MUT和IDH1WT胶质瘤新疗法的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90d2/5564758/a6fbe3d4a12b/oncotarget-08-49165-g001.jpg

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