Core Pluripotency Factors Directly Regulate Metabolism in Embryonic Stem Cell to Maintain Pluripotency
Pluripotent Stem Cells
0301 basic medicine
Thyroid Hormones
Membrane Proteins
Cell Differentiation
Mice, SCID
Mice
03 medical and health sciences
Mice, Inbred NOD
Hexokinase
Animals
Humans
Carrier Proteins
Glycolysis
Octamer Transcription Factor-3
Embryonic Stem Cells
Thyroid Hormone-Binding Proteins
DOI:
10.1002/stem.2073
Publication Date:
2015-06-09T16:17:56Z
AUTHORS (11)
ABSTRACT
AbstractPluripotent stem cells (PSCs) have distinct metabolic properties that support their metabolic and energetic needs and affect their stemness. In particular, high glycolysis is critical for the generation and maintenance of PSCs. However, it is unknown how PSCs maintain and acquire this metabolic signature. In this study, we found that core pluripotency factors regulate glycolysis directly by controlling the expression of glycolytic enzymes. Specifically, Oct4 directly governs Hk2 and Pkm2, which are important glycolytic enzymes that determine the rate of glycolytic flux. The overexpression of Hk2 and Pkm2 sustains high levels of glycolysis during embryonic stem cell (ESC) differentiation. Moreover, the maintenance of high glycolysis levels by Hk2 and Pkm2 overexpression hampers differentiation and preserves the pluripotency of ESCs in the absence of leukemia inhibitory factor. Overall, our study identifies a direct molecular connection between core pluripotency factors and ESC metabolic signatures and demonstrates the significance of metabolism in cell fate determination. Stem Cells 2015;33:2699–2711
SUPPLEMENTAL MATERIAL
Coming soon ....
REFERENCES (45)
CITATIONS (95)
EXTERNAL LINKS
PlumX Metrics
RECOMMENDATIONS
FAIR ASSESSMENT
Coming soon ....
JUPYTER LAB
Coming soon ....