Type 2 diabetes is a disorder of hyperglycemia resulting from failure of beta cells to produce adequate insulin to accommodate an increased metabolic demand. Here we show that regulation of mRNA translation through phosphorylation of eukaryotic initiation factor 2 (elF2α) is essential to preserve the integrity of the endoplasmic reticulum (ER) and to increase insulin production to meet the demand imposed by a high-fat diet. Accumulation of unfolded proteins in the ER activates phosphorylation of elF2α at Ser51 and inhibits translation. To elucidate the role of this pathway in beta-cell function we studied glucose homeostasis in Eif2s1tm1Rjk mutant mice, which have an alanine substitution at Ser51. Heterozygous (Eif2s1+/tm1Rjk) mice became o...
Disruption of the mTOR nutrient complex, which is a crucial evolutionarily-conserved pathway that re...
Free fatty acids cause pancreatic beta-cell apoptosis and may contribute to beta-cell loss in type 2...
Indiana University-Purdue University Indianapolis (IUPUI)The islet beta cell is unique in its abilit...
Type 2 diabetes is a disorder of hyperglycemia resulting from failure of beta cells to produce adequ...
Both the rate of overall translation and the specific acceleration of proinsulin synthesis are known...
As professional secretory cells, beta cells require adaptable mRNA translation to facilitate a rapid...
Death and dysfunction of insulin producing pancreatic β-cells is a major feature of diabetes. Recent...
SummaryThe molecular mechanisms linking the stress of unfolded proteins in the endoplasmic reticulum...
Insulin regulates glycaemia, lipogenesis and increases mRNA translation. Cells with reduced eukaryot...
ABSTRACT Pancreatic beta cell response to glucose is critical for the maintenance of normoglycemia. ...
Diabetes is an epidemic of worldwide proportions caused by β -cell failure. Nutrient fluctuations a...
Insulin regulates glycaemia, lipogenesis and increases mRNA translation. Cells with reduced eukaryot...
Type 2 diabetes is a growing epidemic that has been accompanied by a similarly drastic increase in o...
The prevalence of type 2 diabetes is increasing dramatically worldwide. Type 2 diabetes is a major h...
Free fatty acids cause pancreatic beta-cell apoptosis and may contribute to beta-cell loss in type 2...
Disruption of the mTOR nutrient complex, which is a crucial evolutionarily-conserved pathway that re...
Free fatty acids cause pancreatic beta-cell apoptosis and may contribute to beta-cell loss in type 2...
Indiana University-Purdue University Indianapolis (IUPUI)The islet beta cell is unique in its abilit...
Type 2 diabetes is a disorder of hyperglycemia resulting from failure of beta cells to produce adequ...
Both the rate of overall translation and the specific acceleration of proinsulin synthesis are known...
As professional secretory cells, beta cells require adaptable mRNA translation to facilitate a rapid...
Death and dysfunction of insulin producing pancreatic β-cells is a major feature of diabetes. Recent...
SummaryThe molecular mechanisms linking the stress of unfolded proteins in the endoplasmic reticulum...
Insulin regulates glycaemia, lipogenesis and increases mRNA translation. Cells with reduced eukaryot...
ABSTRACT Pancreatic beta cell response to glucose is critical for the maintenance of normoglycemia. ...
Diabetes is an epidemic of worldwide proportions caused by β -cell failure. Nutrient fluctuations a...
Insulin regulates glycaemia, lipogenesis and increases mRNA translation. Cells with reduced eukaryot...
Type 2 diabetes is a growing epidemic that has been accompanied by a similarly drastic increase in o...
The prevalence of type 2 diabetes is increasing dramatically worldwide. Type 2 diabetes is a major h...
Free fatty acids cause pancreatic beta-cell apoptosis and may contribute to beta-cell loss in type 2...
Disruption of the mTOR nutrient complex, which is a crucial evolutionarily-conserved pathway that re...
Free fatty acids cause pancreatic beta-cell apoptosis and may contribute to beta-cell loss in type 2...
Indiana University-Purdue University Indianapolis (IUPUI)The islet beta cell is unique in its abilit...