11β-hydroxysteroid dehydrogenase type 1 knockout mice show attenuated glucocorticoid-inducible responses and resist hyperglycemia on obesity or stress

Y Kotelevtsev, MC Holmes, A Burchell… - Proceedings of the …, 1997 - National Acad Sciences
Y Kotelevtsev, MC Holmes, A Burchell, PM Houston, D Schmoll, P Jamieson, R Best…
Proceedings of the National Academy of Sciences, 1997National Acad Sciences
Glucocorticoid hormones, acting via nuclear receptors, regulate many metabolic processes,
including hepatic gluconeogenesis. It recently has been recognized that intracellular
glucocorticoid concentrations are determined not only by plasma hormone levels, but also
by intracellular 11β-hydroxysteroid dehydrogenases (11β-HSDs), which interconvert active
corticosterone (cortisol in humans) and inert 11-dehydrocorticosterone (cortisone in
humans). 11β-HSD type 2, a dehydrogenase, thus excludes glucocorticoids from otherwise …
Glucocorticoid hormones, acting via nuclear receptors, regulate many metabolic processes, including hepatic gluconeogenesis. It recently has been recognized that intracellular glucocorticoid concentrations are determined not only by plasma hormone levels, but also by intracellular 11β-hydroxysteroid dehydrogenases (11β-HSDs), which interconvert active corticosterone (cortisol in humans) and inert 11-dehydrocorticosterone (cortisone in humans). 11β-HSD type 2, a dehydrogenase, thus excludes glucocorticoids from otherwise nonselective mineralocorticoid receptors in the kidney. Recent data suggest the type 1 isozyme (11β-HSD-1) may function as an 11β-reductase, regenerating active glucocorticoids from circulating inert 11-keto forms in specific tissues, notably the liver. To examine the importance of this enzyme isoform in vivo, mice were produced with targeted disruption of the 11β-HSD-1 gene. These mice were unable to convert inert 11-dehydrocorticosterone to corticosterone in vivo. Despite compensatory adrenal hyperplasia and increased adrenal secretion of corticosterone, on starvation homozygous mutants had attenuated activation of the key hepatic gluconeogenic enzymes glucose-6-phosphatase and phosphoenolpyruvate carboxykinase, presumably, because of relative intrahepatic glucocorticoid deficiency. The 11β-HSD-1 −/− mice were found to resist hyperglycamia provoked by obesity or stress. Attenuation of hepatic 11β-HSD-1 may provide a novel approach to the regulation of gluconeogenesis.
National Acad Sciences