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Publication : SRF and MKL1 Independently Inhibit Brown Adipogenesis.

First Author  Rosenwald M Year  2017
Journal  PLoS One Volume  12
Issue  1 Pages  e0170643
PubMed ID  28125644 Mgi Jnum  J:246750
Mgi Id  MGI:5919045 Doi  10.1371/journal.pone.0170643
Citation  Rosenwald M, et al. (2017) SRF and MKL1 Independently Inhibit Brown Adipogenesis. PLoS One 12(1):e0170643
abstractText  Active brown adipose tissue is responsible for non-shivering thermogenesis in mammals which affects energy homeostasis. The molecular mechanisms underlying this activation as well as the formation and activation of brite adipocytes have gained increasing interest in recent years as they might be utilized to regulate systemic metabolism. We show here that the transcriptional regulators SRF and MKL1 both act as repressors of brown adipogenesis. Loss-of-function of these transcription factors leads to a significant induction of brown adipocyte differentiation, increased levels of UCP1 and other thermogenic genes as well as increased respiratory function, while SRF induction exerts the opposite effects. Interestingly, we observed that knockdown of MKL1 does not lead to a reduced expression of typical SRF target genes and that the SRF/MKL1 inhibitor CCG-1423 had no significant effects on brown adipocyte differentiation. Contrary, knockdown of MKL1 induces a significant increase in the transcriptional activity of PPARgamma target genes and MKL1 interacts with PPARgamma, suggesting that SRF and MKL1 independently inhibit brown adipogenesis and that MKL1 exerts its effect mainly by modulating PPARgamma activity.
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