SummaryDyslipidemia and atherosclerosis are associated with reduced insulin sensitivity and diabetes, but the mechanism is unclear. Gain of function of the gene encoding deacetylase SirT1 improves insulin sensitivity and could be expected to protect against lipid abnormalities. Surprisingly, when transgenic mice overexpressing SirT1 (SirBACO) are placed on atherogenic diet, they maintain better glucose homeostasis, but develop worse lipid profiles and larger atherosclerotic lesions than controls. We show that transcription factor cAMP response element binding protein (Creb) is deacetylated in SirBACO mice. We identify Lys136 is a substrate for SirT1-dependent deacetylation that affects Creb activity by preventing its cAMP-dependent phosphor...
Objective: Leptin alleviates hyperglycemia in rodent models of Type 1 diabetes by activating leptin ...
SummaryThe NAD+-dependent protein deacetylase SIRT6 regulates genome stability, cancer, and lifespan...
Objective: SIRT1 has been proposed to be a key signaling node linking changes in energy metabolism t...
SummaryDyslipidemia and atherosclerosis are associated with reduced insulin sensitivity and diabetes...
SummaryIn yeast, worms, and flies, an extra copy of the gene encoding the Sirtuin Sir2 increases met...
SummaryIncreases in adiposity trigger metabolic and inflammatory changes that interfere with insulin...
SummaryAlthough persistent elevations in circulating glucose concentrations promote compensatory inc...
The SIRT1 deacetylase inhibits fat synthesis and stimulates fat oxidation in response to fasting, bu...
SummaryIn patients with poorly controlled type 2 diabetes mellitus (T2DM), hepatic insulin resistanc...
Cholesterol levels in mammalian cells are controlled by an intricate mechanism in which the transcri...
Insulin resistance is an important risk factor for the development of type 2 diabetes and the metabo...
SummaryUnder various conditions, mammals have the ability to maintain serum glucose concentration wi...
Caloric restriction (CR) has been shown to prevent the onset of insulin resistance and to delay age-...
Excessive hepatic glucose production is a hallmark of insulin resistance in type 2 diabetes. The cAM...
Excessive hepatic glucose production is a hallmark of insulin resistance in type 2 diabetes. The cAM...
Objective: Leptin alleviates hyperglycemia in rodent models of Type 1 diabetes by activating leptin ...
SummaryThe NAD+-dependent protein deacetylase SIRT6 regulates genome stability, cancer, and lifespan...
Objective: SIRT1 has been proposed to be a key signaling node linking changes in energy metabolism t...
SummaryDyslipidemia and atherosclerosis are associated with reduced insulin sensitivity and diabetes...
SummaryIn yeast, worms, and flies, an extra copy of the gene encoding the Sirtuin Sir2 increases met...
SummaryIncreases in adiposity trigger metabolic and inflammatory changes that interfere with insulin...
SummaryAlthough persistent elevations in circulating glucose concentrations promote compensatory inc...
The SIRT1 deacetylase inhibits fat synthesis and stimulates fat oxidation in response to fasting, bu...
SummaryIn patients with poorly controlled type 2 diabetes mellitus (T2DM), hepatic insulin resistanc...
Cholesterol levels in mammalian cells are controlled by an intricate mechanism in which the transcri...
Insulin resistance is an important risk factor for the development of type 2 diabetes and the metabo...
SummaryUnder various conditions, mammals have the ability to maintain serum glucose concentration wi...
Caloric restriction (CR) has been shown to prevent the onset of insulin resistance and to delay age-...
Excessive hepatic glucose production is a hallmark of insulin resistance in type 2 diabetes. The cAM...
Excessive hepatic glucose production is a hallmark of insulin resistance in type 2 diabetes. The cAM...
Objective: Leptin alleviates hyperglycemia in rodent models of Type 1 diabetes by activating leptin ...
SummaryThe NAD+-dependent protein deacetylase SIRT6 regulates genome stability, cancer, and lifespan...
Objective: SIRT1 has been proposed to be a key signaling node linking changes in energy metabolism t...