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Somatic Oxidative Bioenergetics Transitions into Pluripotency-Dependent Glycolysis to Facilitate Nuclear Reprogramming

Cell Metabolism · 2011 · Vol. 14(2) · pp. 264–271
Clifford D.L. FolmesTimothy J. NelsonAlmudena Martinez‐FernandezD. Kent ArrellJelena Zlatkovic LindorPetras P. DzejaYasuhiro IkedaCarmen Pérez-TerzicAndré Terzic
Mitochondrial Function and PathologyPluripotent Stem Cells ResearchCRISPR and Genetic EngineeringBioenergeticsReprogrammingSomatic cellOxidative phosphorylationCell biologyGlycolysisEnergy metabolismBiologyChemistryMetabolism

MeSH terms

AnimalsCell DifferentiationCell LineElectron TransportEnergy MetabolismGlucoseGlycolysisMitochondriaOxidative PhosphorylationOxygen ConsumptionGene Expression Regulation, DevelopmentalPluripotent Stem CellsMiceMetabolomicsCellular Reprogramming

Funding

  • Mayo Clinic
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