Mediator MED23 Links Insulin Signaling to the Adipogenesis Transcription Cascade
Mice, Knockout
0301 basic medicine
Adipogenesis
Mediator Complex
DEVBIO
DNA
Fibroblasts
Mice
03 medical and health sciences
SIGNALING
3T3-L1 Cells
Animals
Insulin
Gene Regulatory Networks
Genes, Lethal
Early Growth Response Protein 2
Developmental Biology
Adaptor Proteins, Signal Transducing
Signal Transduction
ets-Domain Protein Elk-1
DOI:
10.1016/j.devcel.2009.04.006
Publication Date:
2009-05-19T09:55:20Z
AUTHORS (7)
ABSTRACT
Adipocyte differentiation is orchestrated by multiple signaling pathways and a temporally regulated transcriptional cascade. However, the mechanisms by which insulin signaling is linked to this cascade remain unclear. Here we show that the Med23 subunit of the Mediator Complex and its interacting transcription factor Elk1 are critical regulators of adipogenesis. Med23(-/-) embryonic fibroblast cells were refractory to hormone-induced adipogenesis. Knockdown of either Med23 or Elk1, or overexpression of dominant-negative Elk1, inhibited adipogenesis. In the absence of either Elk1 or Med23, Krox20, an immediate early gene stimulated by insulin during adipogenesis, was uninducible. Moreover, the adipogenic defect in Med23-deficient cells was rescued by ectopic expression of Krox20 or one of its downstream factors, C/EBPbeta or PPARgamma. Mechanistically, the insulin-stimulated, Med23-deficient preinitiation complex failed to initiate robust transcription of Krox20. Collectively, our results suggest that Med23 serves as a critical link transducing insulin signaling to the transcriptional cascade during adipocyte differentiation.
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