The Forkhead transcription factor FOXA2 plays a fundamental role in controlling metabolic homeostasis in the liver during fasting. The precise molecular regulation of FOXA2 in response to nutrients is not fully understood. Here, we studied whether FOXA2 could be controlled at a post-translational level by acetylation. By means of LC-MS/MS analyses, we identified five acetylated residues in FOXA2. Sirtuin family member SIRT1 was found to interact with and deacetylate FOXA2, the latter process being dependent on the NAD +-binding catalytic site of SIRT1. Deacetylation by SIRT1 reduced protein stability of FOXA2 by targeting it towards proteasomal degradation, and inhibited transcription from the FOXA2-driven G6pase and CPT1a promoters. While ...
SummaryUnder various conditions, mammals have the ability to maintain serum glucose concentration wi...
SummaryClass IIa histone deacetylases (HDACs) are signal-dependent modulators of transcription with ...
Gene duplication is a powerful driver of evolution. Newly duplicated genes acquire new roles that ar...
textabstractThe Forkhead transcription factor FOXA2 plays a fundamental role in controlling metaboli...
The Forkhead transcription factor FOXA2 plays a fundamental role in controlling metabolic homeostasi...
SummaryCirculating levels of insulin and glucagon reflect the nutritional state of animals and elici...
<p>(A) SIRT1 affects FOXA2 protein stability. HEK293T cells were transfected with FLAG-FOXA2 in the ...
<p>Graphical representation of the interaction and deacetylation of FOXA2 by SIRT1 depending on avai...
SummaryCirculating levels of insulin and glucagon reflect the nutritional state of animals and elici...
The winged helix transcription factor Foxa2 is an important regulator that plays a critical role in ...
The winged helix transcription factor Foxa2 is an important regulator that plays a critical role in ...
SummarySurvival during prolonged food deprivation depends on the activation of hepatic gluconeogenes...
SummaryFoxO1 integrates multiple metabolic pathways. Nutrient levels modulate FoxO1 acetylation, but...
AbstractForkhead transcription factors of the FoxO subfamily are emerging as a shared component amon...
The Forkhead box A2 transcription factor (Foxa2/HNF-3β) has been shown to be a key regulator of gen...
SummaryUnder various conditions, mammals have the ability to maintain serum glucose concentration wi...
SummaryClass IIa histone deacetylases (HDACs) are signal-dependent modulators of transcription with ...
Gene duplication is a powerful driver of evolution. Newly duplicated genes acquire new roles that ar...
textabstractThe Forkhead transcription factor FOXA2 plays a fundamental role in controlling metaboli...
The Forkhead transcription factor FOXA2 plays a fundamental role in controlling metabolic homeostasi...
SummaryCirculating levels of insulin and glucagon reflect the nutritional state of animals and elici...
<p>(A) SIRT1 affects FOXA2 protein stability. HEK293T cells were transfected with FLAG-FOXA2 in the ...
<p>Graphical representation of the interaction and deacetylation of FOXA2 by SIRT1 depending on avai...
SummaryCirculating levels of insulin and glucagon reflect the nutritional state of animals and elici...
The winged helix transcription factor Foxa2 is an important regulator that plays a critical role in ...
The winged helix transcription factor Foxa2 is an important regulator that plays a critical role in ...
SummarySurvival during prolonged food deprivation depends on the activation of hepatic gluconeogenes...
SummaryFoxO1 integrates multiple metabolic pathways. Nutrient levels modulate FoxO1 acetylation, but...
AbstractForkhead transcription factors of the FoxO subfamily are emerging as a shared component amon...
The Forkhead box A2 transcription factor (Foxa2/HNF-3β) has been shown to be a key regulator of gen...
SummaryUnder various conditions, mammals have the ability to maintain serum glucose concentration wi...
SummaryClass IIa histone deacetylases (HDACs) are signal-dependent modulators of transcription with ...
Gene duplication is a powerful driver of evolution. Newly duplicated genes acquire new roles that ar...