C/EBP regulates hepatic transcription of 11 beta-hydroxysteroid dehydrogenase type 1 - A novel mechanism for cross-talk between the C/EBP and glucocorticoid signaling pathways
Ljs. Williams et al., C/EBP regulates hepatic transcription of 11 beta-hydroxysteroid dehydrogenase type 1 - A novel mechanism for cross-talk between the C/EBP and glucocorticoid signaling pathways, J BIOL CHEM, 275(39), 2000, pp. 30232-30239
Glucocorticoid action within individual cells is potently modulated by 11 b
eta-hydroxysteroid dehydrogenase (11 beta-HSD), which, by interconverting a
ctive and inert glucocorticoids, determines steroid access to receptors. Ty
pe 1 11 beta-HSD (11 beta-HSD1) is highly expressed in liver where it regen
erates glucocorticoids, thus amplifying their action and contributing to in
duction of glucocorticoid-responsive genes, most of which are also regulate
d by members of the C/EBP (CAAT/enhancer-binding protein) family of transcr
iption factors. Here we demonstrate that C/EBP alpha is a potent activator
of the 11 beta-HSD1 gene in hepatoma cells and that mice deficient in C/EBP
alpha have reduced hepatic 11 beta-HSD1 expression. In contrast, C/EBP bet
a is a relatively weak activator of 11 beta- HSD1 transcription in hepatoma
cells and attenuates C/EBP alpha induction, and mice that lack C/EBP beta
have increased hepatic 11 beta-HSD1 mRNA. The 11 beta-HSD1 promoter (betwee
n -812 and +76) contains 10 C/EBP binding sites, and mutation of the promot
er proximal sites decreases the C/EBP inducibility of the promoter. One sit
e encompasses the transcription start, and both C/EBP alpha and C/EBP beta
are present in complexes formed by liver nuclear proteins at this site. The
regulation of 11 beta-HSD1 expression, and hence intracellular glucocortic
oid levels, by members of the C/EBP family provides a novel mechanism for c
ross-talk between the C/EBP family of transcription factors and the glucoco
rticoid signaling pathway.