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Omega-3 Fatty Acids Activate Ciliary FFAR4 to Control Adipogenesis

Authors :
Daniel Kopinke
Keren I. Hilgendorf
Anja Mezger
Janos Demeter
Alessandra M. Norris
Jeremy F. Reiter
Selena L. Rice
Carl T. Johnson
Peter K. Jackson
William J. Greenleaf
Source :
Cell, vol 179, iss 6, Cell
Publication Year :
2019
Publisher :
eScholarship, University of California, 2019.

Abstract

Summary Adult mesenchymal stem cells, including preadipocytes, possess a cellular sensory organelle called the primary cilium. Ciliated preadipocytes abundantly populate perivascular compartments in fat and are activated by a high-fat diet. Here, we sought to understand whether preadipocytes use their cilia to sense and respond to external cues to remodel white adipose tissue. Abolishing preadipocyte cilia in mice severely impairs white adipose tissue expansion. We discover that TULP3-dependent ciliary localization of the omega-3 fatty acid receptor FFAR4/GPR120 promotes adipogenesis. FFAR4 agonists and ω-3 fatty acids, but not saturated fatty acids, trigger mitosis and adipogenesis by rapidly activating cAMP production inside cilia. Ciliary cAMP activates EPAC signaling, CTCF-dependent chromatin remodeling, and transcriptional activation of PPARγ and CEBPα to initiate adipogenesis. We propose that dietary ω-3 fatty acids selectively drive expansion of adipocyte numbers to produce new fat cells and store saturated fatty acids, enabling homeostasis of healthy fat tissue.

Details

Database :
OpenAIRE
Journal :
Cell, vol 179, iss 6, Cell
Accession number :
edsair.doi.dedup.....e143c07ed2b27be3afcd521c50a83534