
pmid: 7549895
Activation of tyrosine kinase-containing receptors and intracellular tyrosine kinases by ligand stimulation is known to be crucial for mediating initial and subsequent events involved in mitogenic signal transduction. Receptors for insulin and insulin-like growth factor 1 (IGF-1) contain cytoplasmic tyrosine kinase domains that undergo autophosphorylation upon ligand stimulation. Activation of these receptors also leads to pronounced and rapid tyrosine phosphorylation of insulin receptor substrate 1 (IRS-1) in cells of connective tissue origin. A related substrate, designated 4PS, is similarly phosphorylated by insulin and IGF-1 stimulation in many hematopoietic cell types. IRS-1 and 4PS possess a number of tyrosine phosphorylation sites that are within motifs that bind specific SH2-containing molecules known to be involved in mitogenic signaling such as PI-3 kinase, SHPTP-2 (Syp) and Grb-2. Thus, they appear to act as docking substrates for a variety of signaling molecules. The majority of hematopoietic cytokines bind to receptors that do not possess intrinsic kinase activity, and these receptors have been collectively termed as members of the hematopoietin receptor superfamily. Despite their lack of tyrosine kinase domains, stimulation of these receptors has been demonstrated to activate intracellular kinases leading to tyrosine phosphorylation of multiple substrates. Recent evidence has demonstrated that activation of different members of the Janus family of tyrosine kinases is involved in mediating tyrosine phosphorylation events by specific cytokines. Stimulation of the interleukin 4 (IL-4) receptor, a member of the hematopoietin receptor superfamily, is thought to result in activation of Jak1, Jak3, and/or Fes tyrosine kinases.(ABSTRACT TRUNCATED AT 250 WORDS)
Molecular Sequence Data, Receptors, Interleukin, Protein-Tyrosine Kinases, Phosphoproteins, Models, Biological, Receptor, Insulin, Receptors, Interleukin-4, Antigens, CD, Insulin Receptor Substrate Proteins, Animals, Cytokines, Humans, Amino Acid Sequence, Interleukin-4, Insulin-Like Growth Factor I, Phosphorylation, Cell Division, Signal Transduction
Molecular Sequence Data, Receptors, Interleukin, Protein-Tyrosine Kinases, Phosphoproteins, Models, Biological, Receptor, Insulin, Receptors, Interleukin-4, Antigens, CD, Insulin Receptor Substrate Proteins, Animals, Cytokines, Humans, Amino Acid Sequence, Interleukin-4, Insulin-Like Growth Factor I, Phosphorylation, Cell Division, Signal Transduction
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