Insulin resistance in peripheral tissues is the primary cause responsible for onset of type II diabetes mellitus. Recently, the genetic and biochemical dissection of intracellular signalling pathways transducing the metabolic and mitogenic effects of insulin has contributed to the understanding of the molecular causes of this insulin resistance. In particular, important efforts have been developed to comprehend the role of negative regulators of insulin signalling, since they might represent future therapeutical targets to reduce insulin resistance in peripheral tissues. Herein, we will briefly review major intracellular signalling pathways activated by insulin and how they are negatively regulated by distinct mechanisms. In particular, the...
OBJECTIVE—Type 2 diabetes is characterized by diminished pancreatic -cell mass and function. Insulin...
Insulin resistance is thought to be the primary defect in the pathophysiology of type 2 diabetes. Th...
The molecular mechanisms of cellular insulin action have been the focus of much investigation since ...
Insulin is the primary hormone involved in glucose homeostasis, and impairment of insulin action and...
Chronic growth hormone (GH) therapy has been shown to cause insulin resistance, but the mechanism re...
peer reviewedBased on the analysis of SHIP2+/- and SHIP2-/- mice showing that the lipid phophatase S...
Signaling through the phosphatidylinositol 3-kinase (PI3K) pathway is crucial for metabolic response...
Insulin sensitivity is critically dependent on the activity of PI3K (phosphoinositide 3-kinase) and ...
The epidemic of type 2 diabetes and impaired glucose tolerance is one of the main causes of morbidit...
Type 2 diabetes develops due to a combination of insulin resistance and β-cell failure and current t...
AbstractSH2 domain containing inositol polyphosphate 5-phosphatase (SHIP2) dephosphorylates phosphat...
Insulin resistance in T2DM has been characterized by several defects in insulin signalling. Insul...
Insulin binding to its receptor leads to autophosphory-lation and activation of the tyrosine kinase ...
SummaryInsulin resistance is a primary defect in type 2 diabetes characterized by impaired periphera...
Initial attempts to unravel the molecular mechanism of insulin resistance have strongly suggested th...
OBJECTIVE—Type 2 diabetes is characterized by diminished pancreatic -cell mass and function. Insulin...
Insulin resistance is thought to be the primary defect in the pathophysiology of type 2 diabetes. Th...
The molecular mechanisms of cellular insulin action have been the focus of much investigation since ...
Insulin is the primary hormone involved in glucose homeostasis, and impairment of insulin action and...
Chronic growth hormone (GH) therapy has been shown to cause insulin resistance, but the mechanism re...
peer reviewedBased on the analysis of SHIP2+/- and SHIP2-/- mice showing that the lipid phophatase S...
Signaling through the phosphatidylinositol 3-kinase (PI3K) pathway is crucial for metabolic response...
Insulin sensitivity is critically dependent on the activity of PI3K (phosphoinositide 3-kinase) and ...
The epidemic of type 2 diabetes and impaired glucose tolerance is one of the main causes of morbidit...
Type 2 diabetes develops due to a combination of insulin resistance and β-cell failure and current t...
AbstractSH2 domain containing inositol polyphosphate 5-phosphatase (SHIP2) dephosphorylates phosphat...
Insulin resistance in T2DM has been characterized by several defects in insulin signalling. Insul...
Insulin binding to its receptor leads to autophosphory-lation and activation of the tyrosine kinase ...
SummaryInsulin resistance is a primary defect in type 2 diabetes characterized by impaired periphera...
Initial attempts to unravel the molecular mechanism of insulin resistance have strongly suggested th...
OBJECTIVE—Type 2 diabetes is characterized by diminished pancreatic -cell mass and function. Insulin...
Insulin resistance is thought to be the primary defect in the pathophysiology of type 2 diabetes. Th...
The molecular mechanisms of cellular insulin action have been the focus of much investigation since ...