Secretagogue-dependent phosphorylation of the insulin granule membrane protein phogrin is mediated by cAMP-dependent protein kinase

Citation
C. Wasmeier et Jc. Hutton, Secretagogue-dependent phosphorylation of the insulin granule membrane protein phogrin is mediated by cAMP-dependent protein kinase, J BIOL CHEM, 276(34), 2001, pp. 31919-31928
Citations number
37
Categorie Soggetti
Biochemistry & Biophysics
Journal title
JOURNAL OF BIOLOGICAL CHEMISTRY
ISSN journal
00219258 → ACNP
Volume
276
Issue
34
Year of publication
2001
Pages
31919 - 31928
Database
ISI
SICI code
0021-9258(20010824)276:34<31919:SPOTIG>2.0.ZU;2-J
Abstract
Phogrin, a 60/64-kDa integral membrane protein of dense-core granules in ne uroendocrine cells, is phosphorylated in a Ca2+-sensitive manner in respons e to secretagogue stimulation of pancreatic beta -cells. Phosphorylation of the phogrin cytosolic domain by beta -cell homogenates was Ca2+-independen t but stimulated by cAMP. Recombinant protein kinase A (PKA) could phosphor ylate phogrin directly. High performance liquid chromatography analysis of tryptic phosphopeptides, combined with site-directed mutagenesis of candida te sites, revealed the presence of two phosphorylation sites at Ser-680 and Thr-699, located in the juxtamembrane region between the transmembrane spa n and the protein-tyrosine phosphatase homology domain of phogrin. Full-len gth wild-type phogrin, as well as mutant versions where Ser-680 and Thr-699 had been replaced either by alanines or by aspartic acid residues, were ta rgeted to secretory granules in transfected AtT20 neuroendocrine cells. Sti mulation of these cells with a range of secretagogues, including K+, BaCl2, and forskolin, demonstrated that the in vivo phosphorylation sites are the same as those identified in vitro. In MIN6 beta -cells, the PKA inhibitor H-89 prevented Ca2+-dependent phogrin phosphorylation in response to glucos e, suggesting that Ca2+ exerts its effect on phogrin phosphorylation throug h regulating the activity of PKA.