Glucocorticoid receptor-PPARα axis in fetal mouse liver prepares neonates for milk lipid catabolism

Elife. 2016 Jul 1:5:e11853. doi: 10.7554/eLife.11853.

Abstract

In mammals, hepatic lipid catabolism is essential for the newborns to efficiently use milk fat as an energy source. However, it is unclear how this critical trait is acquired and regulated. We demonstrate that under the control of PPARα, the genes required for lipid catabolism are transcribed before birth so that the neonatal liver has a prompt capacity to extract energy from milk upon suckling. The mechanism involves a fetal glucocorticoid receptor (GR)-PPARα axis in which GR directly regulates the transcriptional activation of PPARα by binding to its promoter. Certain PPARα target genes such as Fgf21 remain repressed in the fetal liver and become PPARα responsive after birth following an epigenetic switch triggered by β-hydroxybutyrate-mediated inhibition of HDAC3. This study identifies an endocrine developmental axis in which fetal GR primes the activity of PPARα in anticipation of the sudden shifts in postnatal nutrient source and metabolic demands.

Keywords: FGF21; HDAC3; PPARα; developmental biology; glucocorticoid receptor; hepatic steatosis; ketone body; mouse; stem cells.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Energy Metabolism
  • Gene Expression Regulation, Developmental*
  • Lipid Metabolism*
  • Liver / embryology*
  • Metabolism*
  • Mice
  • Milk / metabolism*
  • PPAR alpha / metabolism*
  • Receptors, Glucocorticoid / metabolism*

Substances

  • PPAR alpha
  • Receptors, Glucocorticoid

Grants and funding

The funders had no role in study design, data collection and interpretation, or the decision to submit the work for publication.