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Molecular cloning and tissue distribution of PHAS-I, an intracellular target for insulin and growth factors
1Department of Molecular Biology and Pharmacology, Washington University School of Medicine, St. Louis, MO 63110.
Abstract:
Although the actions of insulin and a number of growth factors that signal via protein-tyrosine kinase receptors are believed to involve increased phosphorylation of key intracellular proteins, relatively few of the downstream phosphoproteins have been identified. In this report we describe a cDNA encoding one of the most prominent insulin-stimulated phosphoproteins in rat adipocytes. The cDNA encodes a protein, designated PHAS-I, which has 117 amino acids and a M(r) of 12,400. When translated in vitro and subjected to SDS/PAGE, PHAS-I migrates anomalously, having an apparent M(r) of 21,000. The predicted amino acid composition is interesting in that approximately 45% of the PHAS-I protein is accounted for by only four amino acids--serine, threonine, proline, and glycine. The PHAS-I gene is expressed in a variety of tissues, although the highest levels of mRNA are present in fat and skeletal muscle, two of the most insulin-responsive tissues. The nucleotide and deduced amino acid sequences of PHAS-I differ from any that have been reported, and homology screening provided no clues concerning the function of the protein. However, in view of its tissue distribution and the fact that the protein is phosphorylated in response to insulin, we speculate that PHAS-I is important in insulin action.
Insights
Researchers identified PHAS-I, a key insulin-stimulated phosphoprotein in rat fat cells. This protein
Area of Science:
- Molecular Biology
- Cell Signaling
- Biochemistry
Background:
- Insulin and growth factors signal through protein-tyrosine kinases.
- Phosphorylation of intracellular proteins is a key signaling mechanism.
- Few downstream phosphoproteins in these pathways have been identified.
Purpose of the Study:
- To identify and characterize a prominent insulin-stimulated phosphoprotein in rat adipocytes.
- To describe the cDNA encoding this protein and its properties.
Main Methods:
- cDNA cloning and sequencing.
- In vitro translation and SDS-PAGE analysis.
- Tissue-specific mRNA expression analysis.
Main Results:
- A cDNA encoding PHAS-I (117 amino acids, M(r) 12,400) was identified.
- PHAS-I exhibits anomalous migration on SDS-PAGE (apparent M(r) 21,000).
- PHAS-I mRNA is highly expressed in insulin-responsive tissues (fat, skeletal muscle).
Conclusions:
- PHAS-I is a novel protein, highly phosphorylated in response to insulin.
- Its tissue distribution suggests a role in insulin action.
- The function of PHAS-I remains to be elucidated but is likely significant in insulin signaling.