Back to Search
Start Over
Altered metabolic landscape in IDH-mutant gliomasaffects phospholipid, energy, and oxidative stress pathways
- Source :
- EMBO Molecular Medicine, EMBO Molecular Medicine, 9, 12, pp. 1681-1695, EMBO Molecular Medicine, 9, 1681-1695
- Publication Year :
- 2017
-
Abstract
- Heterozygous mutations in NADP‐dependent isocitrate dehydrogenases (IDH) define the large majority of diffuse gliomas and are associated with hypermethylation of DNA and chromatin. The metabolic dysregulations imposed by these mutations, whether dependent or not on the oncometabolite D‐2‐hydroxyglutarate (D2HG), are less well understood. Here, we applied mass spectrometry imaging on intracranial patient‐derived xenografts of IDH‐mutant versus IDH wild‐type glioma to profile the distribution of metabolites at high anatomical resolution in situ . This approach was complemented by in vivo tracing of labeled nutrients followed by liquid chromatography–mass spectrometry (LC‐MS) analysis. Selected metabolites were verified on clinical specimen. Our data identify remarkable differences in the phospholipid composition of gliomas harboring the IDH1 mutation. Moreover, we show that these tumors are characterized by reduced glucose turnover and a lower energy potential, correlating with their reduced aggressivity. Despite these differences, our data also show that D2HG overproduction does not result in a global aberration of the central carbon metabolism, indicating strong adaptive mechanisms at hand. Intriguingly, D2HG shows no quantitatively important glucose‐derived label in IDH‐mutant tumors, which suggests that the synthesis of this oncometabolite may rely on alternative carbon sources. Despite a reduction in NADPH, glutathione levels are maintained. We found that genes coding for key enzymes in de novo glutathione synthesis are highly expressed in IDH‐mutant gliomas and the expression of cystathionine‐β‐synthase ( CBS ) correlates with patient survival in the oligodendroglial subtype. This study provides a detailed and clinically relevant insight into the in vivo metabolism of IDH1‐mutant gliomas and points to novel metabolic vulnerabilities in these tumors.
- Subjects :
- Male
0301 basic medicine
Mutant
Mice, SCID
Imaging
Mice
chemistry.chemical_compound
Mice, Inbred NOD
glioma
Tumor Cells, Cultured
Research Articles
Phospholipids
Cancer
chemistry.chemical_classification
Carbon Isotopes
Brain Neoplasms
Glioma
Isocitrate Dehydrogenase
Chromatin
Survival Rate
Isocitrate dehydrogenase
Biochemistry
Isotope Labeling
DNA methylation
Molecular Medicine
Female
Research Article
mass spectrometry imaging
Biology
CBS
03 medical and health sciences
All institutes and research themes of the Radboud University Medical Center
medicine
Animals
Humans
Gene
phospholipids
Nitrogen Isotopes
Mass spectrometry
Glutathione
Lipid Metabolism
medicine.disease
Oxidative Stress
Metabolism
030104 developmental biology
Enzyme
chemistry
Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
Energy Metabolism
Nanomedicine Radboud Institute for Molecular Life Sciences [Radboudumc 19]
Neuroscience
Subjects
Details
- ISSN :
- 17574676
- Volume :
- 9
- Database :
- OpenAIRE
- Journal :
- EMBO Molecular Medicine
- Accession number :
- edsair.doi.dedup.....73c854a2a6cb58246253571b6c5b4491