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Protein phosphorylation in pancreatic islets: evidence for separate Ca2+ and cAMP-enhanced phosphorylation of two 57,000 Mr proteins
Authors:A Kowluru  M J MacDonald
Institution:Department of Pediatrics University of Wisconsin School of Medicine 1300 University Avenue Madison, Wisconsin 53706 USA
Abstract:There is a phosphopeptide that has an Mr of 53,000 to 60,000 in insulin-secreting tissues and there is general agreement that this peptide can be phosphorylated in a calcium-dependent manner. The present report shows that there are at least two phosphoproteins with Mr's near 57,000 in rat pancreatic islet cytosol. One peptide has an Mr of 57,000, a pl of 7.5 - 8 and is phosphorylated in a Ca2+-enhanced manner, and the other has an Mr of 54,000, a pl of 5 - 5.5 and is phosphorylated in a cAMP-enhanced manner, as judged by two-dimensional polyacrylamide gel electrophoresis. Sepharose 4B chromatography indicated that the former polypeptide resides in a native protein complex that has an Mr of about 500,000 and the latter in a complex that has an Mr of about 180,000. Tritiated azido cyclic AMP binds to an islet polypeptide that has an Mr of 54,000. The results suggest that Ca2+ and cAMP could regulate stimulus-secretion coupling in pancreatic islets via protein phosphorylation.
Keywords:EGTA  ethylene glycol bis (β-aminoethyl ether)-N  N  N′N′-tetraacetic acid  Hepes  4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid  MOPS  3-(N morpholino)-propanesulfonic acid  SDS  sodium dodecyl sulfate
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