Pleiotropic Effects of GIP on Islet Function Involve Osteopontin
doi: 10.2337/db10-1532
pmid: 21810601
pmc: PMC3161325
handle: 11562/362921 , 11568/199649 , 11381/2762575
doi: 10.2337/db10-1532
pmid: 21810601
pmc: PMC3161325
handle: 11562/362921 , 11568/199649 , 11381/2762575
Pleiotropic Effects of GIP on Islet Function Involve Osteopontin
OBJECTIVE The incretin hormone GIP (glucose-dependent insulinotropic polypeptide) promotes pancreatic β-cell function by potentiating insulin secretion and β-cell proliferation. Recently, a combined analysis of several genome-wide association studies (Meta-analysis of Glucose and Insulin-Related Traits Consortium [MAGIC]) showed association to postprandial insulin at the GIP receptor (GIPR) locus. Here we explored mechanisms that could explain the protective effects of GIP on islet function. RESEARCH DESIGN AND METHODS Associations of GIPR rs10423928 with metabolic and anthropometric phenotypes in both nondiabetic (N = 53,730) and type 2 diabetic individuals (N = 2,731) were explored by combining data from 11 studies. Insulin secretion was measured both in vivo in nondiabetic subjects and in vitro in islets from cadaver donors. Insulin secretion was also measured in response to exogenous GIP. The in vitro measurements included protein and gene expression as well as measurements of β-cell viability and proliferation. RESULTS The A allele of GIPR rs10423928 was associated with impaired glucose- and GIP-stimulated insulin secretion and a decrease in BMI, lean body mass, and waist circumference. The decrease in BMI almost completely neutralized the effect of impaired insulin secretion on risk of type 2 diabetes. Expression of GIPR mRNA was decreased in human islets from carriers of the A allele or patients with type 2 diabetes. GIP stimulated osteopontin (OPN) mRNA and protein expression. OPN expression was lower in carriers of the A allele. Both GIP and OPN prevented cytokine-induced reduction in cell viability (apoptosis). In addition, OPN stimulated cell proliferation in insulin-secreting cells. CONCLUSIONS These findings support β-cell proliferative and antiapoptotic roles for GIP in addition to its action as an incretin hormone. Identification of a link between GIP and OPN may shed new light on the role of GIP in preservation of functional β-cell mass in humans.
- University of British Columbia Canada
- Lund University Sweden
- Steno Diabetes Center Copenhagen Denmark
- University of Helsinki Finland
- University of Pisa Italy
Male, Gastric Inhibitory Polypeptide, GIP; GIPR; beta cell function; osteopontin, pleiotropic effect of GIP; islet function; osteopontin, Islets of Langerhans, Diabetes Mellitus, Type 2, Glucagon-Like Peptide 1, Insulin-Secreting Cells, Insulin Secretion, Diabetes Mellitus, Genetics, Humans, Insulin, Osteopontin, Type 2, Alleles, Genome-Wide Association Study
Male, Gastric Inhibitory Polypeptide, GIP; GIPR; beta cell function; osteopontin, pleiotropic effect of GIP; islet function; osteopontin, Islets of Langerhans, Diabetes Mellitus, Type 2, Glucagon-Like Peptide 1, Insulin-Secreting Cells, Insulin Secretion, Diabetes Mellitus, Genetics, Humans, Insulin, Osteopontin, Type 2, Alleles, Genome-Wide Association Study
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