The winged helix transcription factor Foxa3 regulates adipocyte differentiation and depot-selective fat tissue expansion

L Xu, V Panel, X Ma, C Du, L Hugendubler… - … and cellular biology, 2013 - Taylor & Francis
L Xu, V Panel, X Ma, C Du, L Hugendubler, O Gavrilova, A Liu, T McLaughlin, KH Kaestner
Molecular and cellular biology, 2013Taylor & Francis
Conversion of mesenchymal stem cells into terminally differentiated adipocytes progresses
sequentially through regulated transcriptional steps. While it is clear that the late phases of
adipocyte maturation are governed by the nuclear receptor peroxisome proliferator-activated
receptor gamma (PPARγ), less is known about the transcriptional control of the initial stages
of differentiation. To identify early regulators, we performed a small interfering RNA (siRNA)
screen of Forkhead-box genes in adipocytes and show here for the first time that the winged …
Conversion of mesenchymal stem cells into terminally differentiated adipocytes progresses sequentially through regulated transcriptional steps. While it is clear that the late phases of adipocyte maturation are governed by the nuclear receptor peroxisome proliferator-activated receptor gamma (PPARγ), less is known about the transcriptional control of the initial stages of differentiation. To identify early regulators, we performed a small interfering RNA (siRNA) screen of Forkhead-box genes in adipocytes and show here for the first time that the winged helix factor Foxa3 promotes adipocyte differentiation by cooperating with C/EBPβ and -δ to transcriptionally induce PPARγ expression. Furthermore, we demonstrate that mice with genetic ablation of Foxa3 have a selective decrease in epididymal fat depot and a cell-autonomous defect to induce PPARγ specifically in their visceral adipocytes. In obese subjects, FOXA3 is differentially expressed in visceral and subcutaneous adipose depots. Overall, our study implicates Foxa3 in the regulation of adipocyte differentiation and depot-selective adipose tissue expansion.
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