The postreceptor events regulating the signal of insulin downstream in rat intestinal cells have not yet been analyzed. Our objectives were to identify the nature of receptor substrates and phosphorylated proteins involved in the signaling of insulin and to investigate the mechanism(s) by which insulin enhances intestinal hydrolases. In response to insulin, the following proteins were rapidly phosphorylated on tyrosine residues: 1) insulin receptor substrates-1 (IRS-1), -2, and -4; 2) phospholipase C-isoenzyme-gamma; 3) the Ras-GTPase-activating protein (GAP) associated with Rho GAP and p62(Src); 4) the insulin receptor beta-subunit; 5) the p85 subunits of phosphatidylinositol 3-kinase (PI 3-kinase); 6) the Src homology 2 alpha-collagen pro...
The insulin receptor transduces insulin\u27s biological signal through the tyrosine kinase present i...
The molecular mechanisms of cellular insulin action have been the focus of much investigation since ...
The insulin receptor transduces insulin\u27s biological signal through the tyrosine kinase present i...
Les travaux antérieurs du laboratoire ont démontré que l'administration d'insuline à des ratons non-...
Although mitogen-activating protein (MAP) kinases are crucial signal transduction molecules regulati...
Although mitogen-activating protein (MAP) kinases are crucial signal transduction molecules regulati...
Although mitogen-activating protein (MAP) kinases are crucial signal transduction molecules regulati...
The mechanism(s) by which rat immature enterocytes exhibit increased responsiveness to insulin befor...
The mechanism(s) by which insulin enhance prematurely the activity of brush border membrane (BBM) hy...
Insulin is an important regulator of growth and initiates its action by binding to its receptor, whi...
Physiological doses of insulin in rats resulted in a rapid redistri-bution of key signaling proteins...
Insulin stimulates the tyrosine kinase activity of its receptor resulting in the phosphorylation of ...
Insulin rapidly stimulates tyrosine phosphorylation of a 185-kDa protein in most cell types. This pr...
Insulin stimulates the tyrosine kinase activity of its receptor resulting in the phosphorylation of ...
To further document the effect of insulin on intestinal maturation, suckling rats were treated eithe...
The insulin receptor transduces insulin\u27s biological signal through the tyrosine kinase present i...
The molecular mechanisms of cellular insulin action have been the focus of much investigation since ...
The insulin receptor transduces insulin\u27s biological signal through the tyrosine kinase present i...
Les travaux antérieurs du laboratoire ont démontré que l'administration d'insuline à des ratons non-...
Although mitogen-activating protein (MAP) kinases are crucial signal transduction molecules regulati...
Although mitogen-activating protein (MAP) kinases are crucial signal transduction molecules regulati...
Although mitogen-activating protein (MAP) kinases are crucial signal transduction molecules regulati...
The mechanism(s) by which rat immature enterocytes exhibit increased responsiveness to insulin befor...
The mechanism(s) by which insulin enhance prematurely the activity of brush border membrane (BBM) hy...
Insulin is an important regulator of growth and initiates its action by binding to its receptor, whi...
Physiological doses of insulin in rats resulted in a rapid redistri-bution of key signaling proteins...
Insulin stimulates the tyrosine kinase activity of its receptor resulting in the phosphorylation of ...
Insulin rapidly stimulates tyrosine phosphorylation of a 185-kDa protein in most cell types. This pr...
Insulin stimulates the tyrosine kinase activity of its receptor resulting in the phosphorylation of ...
To further document the effect of insulin on intestinal maturation, suckling rats were treated eithe...
The insulin receptor transduces insulin\u27s biological signal through the tyrosine kinase present i...
The molecular mechanisms of cellular insulin action have been the focus of much investigation since ...
The insulin receptor transduces insulin\u27s biological signal through the tyrosine kinase present i...