SYNTHESIS AND SECRETION OF GLUCAGON-LIKE PEPTIDE-1 BY FETAL-RAT INTESTINAL-CELLS IN CULTURE

Citation
Thj. Huang et Pl. Brubaker, SYNTHESIS AND SECRETION OF GLUCAGON-LIKE PEPTIDE-1 BY FETAL-RAT INTESTINAL-CELLS IN CULTURE, Endocrine, 3(7), 1995, pp. 499-503
Citations number
38
Categorie Soggetti
Endocrynology & Metabolism
Journal title
ISSN journal
1355008X
Volume
3
Issue
7
Year of publication
1995
Pages
499 - 503
Database
ISI
SICI code
1355-008X(1995)3:7<499:SASOGP>2.0.ZU;2-Z
Abstract
Secretion of the intestinal proglucagon-derived peptides (PGDPs) inclu ding the incretin glucagon-like peptide-1 (GLP-1) is regulated, at lea st in part, by the duodenal hormone glucose-dependent insulinotropic p eptide (GIP) through a protein kinase (PK) A-dependent pathway. It has been demonstrated that the activation of PKA increases the synthesis of some intestinal PGDPs, particularly the glucagon-like immunoreactiv e (GLI) peptides glicentin and oxyntomodulin. However; the effects of CIP on CLI and GLP-1 synthesis are not known. Fetal rat intestinal cel ls in culture were therefore treated for up to 24 h with 5 mM dbcAMP o r 10(-6) M GIP and the changes in glicentin, oxyntomodulin, GLP-1(x-37 ) and GLP-1(x-36NH2) secretion and synthesis were examined by RIA and HPLC. Both dbcAMP and GIP increased the acute (2 h; to 224 +/- 21 and 256 +/- 20% of controls, respectively, P<0.001) and chronic (24 h; to 230 +/- 22 and 130 +/- 6% of controls, respectively, P<0.001) secretio n of intestinal PGDPs. In contrast, the total culture content of PGDPs was increased only after 24 h of incubation (to 156 +/- 15 and 125 +/ - 7% of controls for dbcAMP and GIP, respectively, P<0.01). HPLC analy sis confirmed that the intestinal cultures produced the GLI peptides g licentin and oxyntomodulin, as well as the biologically active forms o f GLP-1, GLP-1(7-37) and GLP-1(7-36NH2). The relative proportion of th ese peptides was not altered by treatment with dbcAMP or GIP. Thus, in addition to its effects on GLP-1 release from the rat intestine, CIP appears to be an important regulator of the synthesis of this insulino tropic peptide.