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Merck
CN
  • Critical roles of transcriptional coactivator MED1 in the formation and function of mouse adipose tissues.

Critical roles of transcriptional coactivator MED1 in the formation and function of mouse adipose tissues.

Genes & development (2021-04-24)
Keiichi Ito, Marc Schneeberger, Alan Gerber, Miki Jishage, Francois Marchildon, Aarthi V Maganti, Paul Cohen, Jeffrey M Friedman, Robert G Roeder
摘要

The MED1 subunit has been shown to mediate ligand-dependent binding of the Mediator coactivator complex to multiple nuclear receptors, including the adipogenic PPARγ, and to play an essential role in ectopic PPARγ-induced adipogenesis of mouse embryonic fibroblasts. However, the precise roles of MED1, and its various domains, at various stages of adipogenesis and in adipose tissue have been unclear. Here, after establishing requirements for MED1, including specific domains, for differentiation of 3T3L1 cells and both primary white and brown preadipocytes, we used multiple genetic approaches to assess requirements for MED1 in adipocyte formation, maintenance, and function in mice. We show that MED1 is indeed essential for the differentiation and/or function of both brown and white adipocytes, as its absence in these cells leads to, respectively, defective brown fat function and lipodystrophy. This work establishes MED1 as an essential transcriptional coactivator that ensures homeostatic functions of adipocytes.

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Sigma-Aldrich
3X FLAG® 肽, lyophilized powder
Sigma-Aldrich
ESGRO®重组小鼠LIF蛋白, ESGRO Leukemia Inhibitory Factor (LIF) supplement for mouse ES cell culture. Each vial contains 10^7 units/ml.
Roche
DAPI, 4′,6-Diamidine-2′-phenylindole dihydrochloride
Sigma-Aldrich
GMEM培养基, With L-glutamine, without tryptose phosphate broth and sodium bicarbonate, powder, suitable for cell culture