Fatty acid labeling from glutamine in hypoxia can be explained by isotope exchange without net reductive isocitrate dehydrogenase (IDH) flux.
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Amino acid management in cancerA roadmap for interpreting (13)C metabolite labeling patterns from cellsA rapid method for quantifying free and bound acetate based on alkylation and GC-MS analysisStage-Specific Changes in Plasmodium Metabolism Required for Differentiation and Adaptation to Different Host and Vector EnvironmentsMetabolic engineering of Mortierella alpina for arachidonic acid production with glycerol as carbon sourceBioinformatics: the next frontier of metabolomicsOxidation of alpha-ketoglutarate is required for reductive carboxylation in cancer cells with mitochondrial defects.From Krebs to clinic: glutamine metabolism to cancer therapy.Cancer-associated isocitrate dehydrogenase 1 (IDH1) R132H mutation and d-2-hydroxyglutarate stimulate glutamine metabolism under hypoxia.Inhibition of neuronal cell mitochondrial complex I with rotenone increases lipid β-oxidation, supporting acetyl-coenzyme A levels.Metabolic effect of TAp63α: enhanced glycolysis and pentose phosphate pathway, resulting in increased antioxidant defenseMetabolic plasticity maintains proliferation in pyruvate dehydrogenase deficient cellsHypoxia-Mediated Increases in L-2-hydroxyglutarate Coordinate the Metabolic Response to Reductive StressHypoxia Induces Production of L-2-Hydroxyglutarate.Glutamine synthetase activity fuels nucleotide biosynthesis and supports growth of glutamine-restricted glioblastoma.Metabolic Engineering of Mortierella alpina for Enhanced Arachidonic Acid Production through the NADPH-Supplying StrategyThe airway epithelium undergoes metabolic reprogramming in individuals at high risk for lung cancer.Acetate as a Metabolic and Epigenetic Modifier of Cancer Therapy.Review of metabolic pathways activated in cancer cells as determined through isotopic labeling and network analysis.Metabolic scavenging by cancer cells: when the going gets tough, the tough keep eating.Acetate Recapturing by Nuclear Acetyl-CoA Synthetase 2 Prevents Loss of Histone Acetylation during Oxygen and Serum LimitationQuantitative analysis of acetyl-CoA production in hypoxic cancer cells reveals substantial contribution from acetate.
P2860
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P2860
Fatty acid labeling from glutamine in hypoxia can be explained by isotope exchange without net reductive isocitrate dehydrogenase (IDH) flux.
description
2013 nî lūn-bûn
@nan
2013年の論文
@ja
2013年論文
@yue
2013年論文
@zh-hant
2013年論文
@zh-hk
2013年論文
@zh-mo
2013年論文
@zh-tw
2013年论文
@wuu
2013年论文
@zh
2013年论文
@zh-cn
name
Fatty acid labeling from gluta ...... rate dehydrogenase (IDH) flux.
@en
Fatty acid labeling from gluta ...... ctive isocitrate dehydrogenase
@nl
type
label
Fatty acid labeling from gluta ...... rate dehydrogenase (IDH) flux.
@en
Fatty acid labeling from gluta ...... ctive isocitrate dehydrogenase
@nl
prefLabel
Fatty acid labeling from gluta ...... rate dehydrogenase (IDH) flux.
@en
Fatty acid labeling from gluta ...... ctive isocitrate dehydrogenase
@nl
P2860
P356
P1476
Fatty acid labeling from gluta ...... rate dehydrogenase (IDH) flux.
@en
P2093
Joshua D Rabinowitz
Tomer Shlomi
P2860
P304
31363-31369
P356
10.1074/JBC.M113.502740
P407
P577
2013-09-12T00:00:00Z