Type 2 diabetes develops due to a combination of insulin resistance and β-cell failure and current therapeutics aim at both of these underlying causes. Several negative regulators of insulin signaling are known and are the subject of drug discovery efforts. We sought to identify novel contributors to insulin resistance and hence potentially novel targets for therapeutic intervention.An arrayed cDNA library encoding 18,441 human transcripts was screened for inhibitors of insulin signaling and revealed known inhibitors and numerous potential novel regulators. The novel hits included proteins of various functional classes such as kinases, phosphatases, transcription factors, and GTPase associated proteins. A series of secondary assays confirme...
The molecular mechanisms of cellular insulin action have been the focus of much investigation since ...
Nearly eighty years since the discovery of insulin, the intracellular signal transduction cascade re...
Initial attempts to unravel the molecular mechanism of insulin resistance have strongly suggested th...
Type 2 diabetes develops due to a combination of insulin resistance and β-cell failure and current t...
BACKGROUND: Hepatic insulin resistance impairs insulin's ability to suppress hepatic glucose product...
Hepatic insulin resistance impairs insulin’s ability to suppress hepatic glucose production (HGP) an...
The insulin-stimulated uptake of glucose by muscle and adipose is vital for the maintenance of gluco...
Type 2 diabetes (T2D) is a chronic metabolic disorder affecting almost half a billion people worldwi...
Diabetes is a metabolic disease that raises the risk of microvascular and neurological disorders. In...
Insulin resistance is one of the dominant symptoms of type 2 diabetes (T2D). Although the molecular ...
SummaryInsulin resistance is a primary defect in type 2 diabetes characterized by impaired periphera...
The prevalence of type 2 diabetes in the United States is projected to double or triple by 2050. We ...
Insulin resistance is a primary defect in type 2 diabetes characterized by impaired peripheral gluco...
Insulin is an essential hormone for the maintenance of whole-body glucose homeostasis, inducing gluc...
Insulin resistance in peripheral tissues is the primary cause responsible for onset of type II diabe...
The molecular mechanisms of cellular insulin action have been the focus of much investigation since ...
Nearly eighty years since the discovery of insulin, the intracellular signal transduction cascade re...
Initial attempts to unravel the molecular mechanism of insulin resistance have strongly suggested th...
Type 2 diabetes develops due to a combination of insulin resistance and β-cell failure and current t...
BACKGROUND: Hepatic insulin resistance impairs insulin's ability to suppress hepatic glucose product...
Hepatic insulin resistance impairs insulin’s ability to suppress hepatic glucose production (HGP) an...
The insulin-stimulated uptake of glucose by muscle and adipose is vital for the maintenance of gluco...
Type 2 diabetes (T2D) is a chronic metabolic disorder affecting almost half a billion people worldwi...
Diabetes is a metabolic disease that raises the risk of microvascular and neurological disorders. In...
Insulin resistance is one of the dominant symptoms of type 2 diabetes (T2D). Although the molecular ...
SummaryInsulin resistance is a primary defect in type 2 diabetes characterized by impaired periphera...
The prevalence of type 2 diabetes in the United States is projected to double or triple by 2050. We ...
Insulin resistance is a primary defect in type 2 diabetes characterized by impaired peripheral gluco...
Insulin is an essential hormone for the maintenance of whole-body glucose homeostasis, inducing gluc...
Insulin resistance in peripheral tissues is the primary cause responsible for onset of type II diabe...
The molecular mechanisms of cellular insulin action have been the focus of much investigation since ...
Nearly eighty years since the discovery of insulin, the intracellular signal transduction cascade re...
Initial attempts to unravel the molecular mechanism of insulin resistance have strongly suggested th...