Cell Reports · 2014 · 65 citations · 35 references
Glucose HomeostasisMetabolic RemodelingInsulin SignalingMetabolic SyndromeMetabolic SignalingCell SignalingHealth SciencesHepatic GluconeogenesisMolecular SignalingDiabetes ManagementBiochemistryLiver PhysiologyType 2PharmacologyCell BiologyPgc-1α ActivityDiabetesPhysiologyMetabolic RegulationDiabetes MellitusGluconeogenic ActivityMetabolismMedicine
PGC-1α plays a central role in hepatic gluconeogenesis and has been implicated in the onset of type 2 diabetes. Acetylation is an important posttranslational modification for regulating the transcriptional activity of PGC-1α. Here, we show that PCAF is a pivotal acetyltransferase for acetylating PGC-1α in both fasted and diabetic states. PCAF acetylates two lysine residues K328 and K450 in PGC-1α, which subsequently triggers its proteasomal degradation and suppresses its transcriptional activity. Adenoviral-mediated expression of PCAF in the obese mouse liver greatly represses gluconeogenic enzyme activation and glucose production and improves glucose homeostasis and insulin sensitivity. Moreover, liver-specific knockdown of PCAF stimulates PGC-1α activity, resulting in an increase in blood glucose and hepatic glucose output. Our results suggest that PCAF might be a potential pharmacological target for developing agents against metabolic disorders associated with hyperglycemia, such as obesity and diabetes.
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A Cold-Inducible Coactivator of Nuclear Receptors Linked to Adaptive Thermogenesis
Pere Puigserver, Zhidan Wu, Cheol Won Park et al. · Cell · 1998 · 3.8K citations · Full text
Signal Transduction, Receptor (Biochemistry), Molecular Biology +4
Nutrient control of glucose homeostasis through a complex of PGC-1α and SIRT1
Joseph T. Rodgers, Carles Lerín, Wilhelm Haas et al. · Nature · 2005 · 3.1K citations