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Publication : Human but not mouse adipogenesis is critically dependent on LMO3.

First Author  Lindroos J Year  2013
Journal  Cell Metab Volume  18
Issue  1 Pages  62-74
PubMed ID  23823477 Mgi Jnum  J:199236
Mgi Id  MGI:5501358 Doi  10.1016/j.cmet.2013.05.020
Citation  Lindroos J, et al. (2013) Human but Not Mouse Adipogenesis Is Critically Dependent on LMO3. Cell Metab 18(1):62-74
abstractText  Increased visceral fat is associated with a high risk of diabetes and metabolic syndrome and is in part caused by excessive glucocorticoids (GCs). However, the molecular mechanisms remain undefined. We now identify the GC-dependent gene LIM domain only 3 (LMO3) as being selectively upregulated in a depot-specific manner in human obese visceral adipose tissue, localizing primarily in the adipocyte fraction. Visceral LMO3 levels were tightly correlated with expression of 11beta-hydroxysteroid dehydrogenase type-1 (HSD11B1), the enzyme responsible for local activation of GCs. In early human adipose stromal cell differentiation, GCs induced LMO3 via the GC receptor and a positive feedback mechanism involving 11betaHSD1. No such induction was observed in murine adipogenesis. LMO3 overexpression promoted, while silencing of LMO3 suppressed, adipogenesis via regulation of the proadipogenic PPARgamma axis. These results establish LMO3 as a regulator of human adipogenesis and could contribute a mechanism resulting in visceral-fat accumulation in obesity due to excess glucocorticoids.
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