SummaryClass IIa histone deacetylases (HDACs) are signal-dependent modulators of transcription with established roles in muscle differentiation and neuronal survival. We show here that in liver, class IIa HDACs (HDAC4, 5, and 7) are phosphorylated and excluded from the nucleus by AMPK family kinases. In response to the fasting hormone glucagon, class IIa HDACs are rapidly dephosphorylated and translocated to the nucleus where they associate with the promoters of gluconeogenic enzymes such as G6Pase. In turn, HDAC4/5 recruit HDAC3, which results in the acute transcriptional induction of these genes via deacetylation and activation of FOXO family transcription factors. Loss of class IIa HDACs in murine liver results in inhibition of FOXO targ...
SummarySurvival during prolonged food deprivation depends on the activation of hepatic gluconeogenes...
Histone deacetylases (HDACs) are enzymes that regulate protein functions by catalyzing the removal o...
International audienceSkeletal muscle plays a major role in controlling body mass and metabolism: it...
SummaryClass IIa histone deacetylases (HDACs) are signal-dependent modulators of transcription with ...
Hormonal regulation of glucose and lipid metabolism is pivotal for metabolic homeostasis and energy ...
Dysregulation of hepatic glucose production (HGP) serves as a major underlying mechanism for the pat...
Insulin-mediated glucose uptake is highly sensitive to the levels of the facilitative glucose transp...
SummaryCirculating levels of insulin and glucagon reflect the nutritional state of animals and elici...
Organismal physiology is built upon the foundation of molecular processes. A central axis to maintai...
1. Skeletal muscle oxidative function and metabolic gene expression ar...
In the current study, we investigated the importance of histone deacetylase (HDAC)6 for glucocortico...
Foxa2 (Hnf3beta) is a winged-helix/forkhead transcription factor that regulates gene expression in t...
<p>Administration of oleanolic acid stimulates AMPK activity which leads to an increased inhibitory ...
The emergence of specialized cell types and their organisation into organs and tissues involve the t...
Type 2 diabetes mellitus (T2DM) is a chronic disease manifested by hyperglycemia. It is essential to...
SummarySurvival during prolonged food deprivation depends on the activation of hepatic gluconeogenes...
Histone deacetylases (HDACs) are enzymes that regulate protein functions by catalyzing the removal o...
International audienceSkeletal muscle plays a major role in controlling body mass and metabolism: it...
SummaryClass IIa histone deacetylases (HDACs) are signal-dependent modulators of transcription with ...
Hormonal regulation of glucose and lipid metabolism is pivotal for metabolic homeostasis and energy ...
Dysregulation of hepatic glucose production (HGP) serves as a major underlying mechanism for the pat...
Insulin-mediated glucose uptake is highly sensitive to the levels of the facilitative glucose transp...
SummaryCirculating levels of insulin and glucagon reflect the nutritional state of animals and elici...
Organismal physiology is built upon the foundation of molecular processes. A central axis to maintai...
1. Skeletal muscle oxidative function and metabolic gene expression ar...
In the current study, we investigated the importance of histone deacetylase (HDAC)6 for glucocortico...
Foxa2 (Hnf3beta) is a winged-helix/forkhead transcription factor that regulates gene expression in t...
<p>Administration of oleanolic acid stimulates AMPK activity which leads to an increased inhibitory ...
The emergence of specialized cell types and their organisation into organs and tissues involve the t...
Type 2 diabetes mellitus (T2DM) is a chronic disease manifested by hyperglycemia. It is essential to...
SummarySurvival during prolonged food deprivation depends on the activation of hepatic gluconeogenes...
Histone deacetylases (HDACs) are enzymes that regulate protein functions by catalyzing the removal o...
International audienceSkeletal muscle plays a major role in controlling body mass and metabolism: it...