PloS one

Metabolic daily rhythms start before clock gene rhythms in mouse embryonic stem cells

Updated

Abstract

Undifferentiated (ESCs, n = 6 cultures/timepoint) exhibit a self-sustained rhythm in glucose uptake, which is not aligned with the rhythmic expression of clock genes.

  • Rhythmic glucose uptake in undifferentiated ESCs suggests a physiological rhythm independent of clock gene expression.
  • Upon , some clock genes display circadian patterns, indicating a potential link between differentiation and circadian rhythm development.
  • The amplitude of glucose utilization rhythm increases in differentiated embryonic stem cells (dESCs), highlighting changes in energy metabolism during development.
  • Findings challenge the notion that rhythmic transcription of clock genes is essential for physiological rhythmicity.

Simplified

Key numbers

10-fold
Increase in glucose uptake amplitude
In acutely differentiated cells compared to undifferentiated .
2
Rhythmic glucose uptake cycles
Observed over a 48-hour sampling period.

Full Text

What this is

  • This research investigates in mouse () and their into dESCs.
  • It examines the relationship between glucose utilization and clock gene expression.
  • Findings suggest that rhythmic glucose uptake occurs in undifferentiated , preceding the rhythmic expression of clock genes.

Essence

  • Rhythmic glucose utilization in undifferentiated occurs before the rhythmic expression of clock genes, which only becomes evident upon .

Key takeaways

  • Rhythmic glucose uptake is observed in undifferentiated , indicating a physiological rhythm independent of clock gene expression.
  • Upon , some clock genes exhibit rhythmic expression, and the amplitude of glucose utilization increases significantly.

Caveats

  • The study relies on a limited number of cultures (n = 6) for each condition, which may affect the generalizability of the findings.
  • The exact mechanisms linking glucose utilization rhythms and clock gene expression remain unclear.

Definitions

  • circadian rhythms: Biological processes that display an endogenous, entrainable oscillation of about 24 hours.
  • embryonic stem cells (ESCs): Pluripotent cells derived from early-stage embryos capable of differentiating into various cell types.
  • differentiation: The process by which a less specialized cell becomes a more specialized cell type.

Simplified

Funding

Competing interests

Competing Interests: The authors have declared that no competing interests exist.
PubMed

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