Three p160 family members, p/CIP, SRC1, and TIF2, have been identified as transcriptional coactivators for nuclear hormone receptors and other transcription factors in vitro. In a previous study, we reported initial characterization of the obesity-resistant phenotypes of p/CIP and SRC-1 double knockout (DKO) mice, which exhibit increased energy expenditure, and suggested that nuclear hormone receptor target genes were involved in these phenotypes. In this study, we demonstrate that p/CIP and SRC1 control insulin signaling in a cell-autonomous manner both in vitro and in vivo. Genetic deletion of p/ CIP and SRC-1 increases glucose uptake and enhances insulin sensitivity in both regular chow- and high fat diet-fed DKO mice despite increased f...
Overnutrition causes hyperactivation of mTORC1-dependent negative feedback loops leading to the down...
We have explored the effects of two members of the p160 coregulator family on energy homeostasis. TI...
Objective: Insulin resistance can be triggered by enhanced dephosphorylation of the insulin receptor...
Three p160 family members, p/CIP, SRC1, and TIF2, have been identified as transcriptional coactivato...
SummarySeveral transcriptional coactivators have been implicated in modulating the transcriptional a...
AbstractWe have explored the effects of two members of the p160 coregulator family on energy homeost...
AbstractWe have explored the effects of two members of the p160 coregulator family on energy homeost...
International audienceWe have explored the effects of two members of the p160 coregulator family on ...
International audienceWe have explored the effects of two members of the p160 coregulator family on ...
Abstract Background Obesity is associated with insulin resistance that can often be improved by calo...
<p>A. Lentiviral shRNA constructs of p/CIP, SRC-1, or both were used to stably knockdown endogenous ...
Insulin is an essential hormone for the maintenance of whole-body glucose homeostasis, inducing gluc...
Nuclear receptors and their coactivators have been shown to function as key regulators of adipose ti...
AbstractInsulin signaling in adipose tissue plays an important role in lipid storage and regulation ...
The TALLYHO/Jng (TH) mouse strain is a polygenic model for type 2 diabetes (T2D) characterized by mo...
Overnutrition causes hyperactivation of mTORC1-dependent negative feedback loops leading to the down...
We have explored the effects of two members of the p160 coregulator family on energy homeostasis. TI...
Objective: Insulin resistance can be triggered by enhanced dephosphorylation of the insulin receptor...
Three p160 family members, p/CIP, SRC1, and TIF2, have been identified as transcriptional coactivato...
SummarySeveral transcriptional coactivators have been implicated in modulating the transcriptional a...
AbstractWe have explored the effects of two members of the p160 coregulator family on energy homeost...
AbstractWe have explored the effects of two members of the p160 coregulator family on energy homeost...
International audienceWe have explored the effects of two members of the p160 coregulator family on ...
International audienceWe have explored the effects of two members of the p160 coregulator family on ...
Abstract Background Obesity is associated with insulin resistance that can often be improved by calo...
<p>A. Lentiviral shRNA constructs of p/CIP, SRC-1, or both were used to stably knockdown endogenous ...
Insulin is an essential hormone for the maintenance of whole-body glucose homeostasis, inducing gluc...
Nuclear receptors and their coactivators have been shown to function as key regulators of adipose ti...
AbstractInsulin signaling in adipose tissue plays an important role in lipid storage and regulation ...
The TALLYHO/Jng (TH) mouse strain is a polygenic model for type 2 diabetes (T2D) characterized by mo...
Overnutrition causes hyperactivation of mTORC1-dependent negative feedback loops leading to the down...
We have explored the effects of two members of the p160 coregulator family on energy homeostasis. TI...
Objective: Insulin resistance can be triggered by enhanced dephosphorylation of the insulin receptor...