Dipeptidyl Peptidase IV-Resistant [d-Ala2]Glucose-Dependent Insulinotropic Polypeptide (GIP) Improves Glucose Tolerance in Normal and Obese Diabetic Rats
- 1 March 2002
- journal article
- Published by American Diabetes Association in Diabetes
- Vol. 51 (3) , 652-661
- https://doi.org/10.2337/diabetes.51.3.652
Abstract
The therapeutic potential of glucose-dependent insulinotropic polypeptide (GIP) for improving glycemic control has largely gone unstudied. A series of synthetic GIP peptides modified at the NH2-terminus were screened in vitro for resistance to dipeptidyl peptidase IV (DP IV) degradation and potency to stimulate cyclic AMP and affinity for the transfected rat GIP receptor. In vitro experiments indicated that [d-Ala2]GIP possessed the greatest resistance to enzymatic degradation, combined with minimal effects on efficacy at the receptor. Thus, [d-Ala2]GIP1–42 was selected for further testing in the perfused rat pancreas and bioassay in conscious Wistar and Zucker rats. When injected subcutaneously in normal Wistar, Fa/?, or fa/fa Vancouver Diabetic Fatty (VDF) Zucker rats, both GIP and [d-Ala2]GIP significantly reduced glycemic excursions during a concurrent oral glucose tolerance test via stimulation of insulin release. The latter peptide displayed greater in vivo effectiveness, likely because of resistance to enzymatic degradation. Hence, despite reduced bioactivity in diabetic models at physiological concentrations, GIP and analogs with improved plasma stability still improve glucose tolerance when given in supraphysiological doses, and thus may prove useful in the treatment of diabetic states.Keywords
This publication has 61 references indexed in Scilit:
- A New Pathway for Glucose-dependent Insulinotropic Polypeptide (GIP) Receptor SignalingJournal of Biological Chemistry, 2001
- Role of glucose in chronic desensitization of isolated rat islets and mouse insulinoma (betaTC-3) cells to glucose-dependent insulinotropic polypeptideJournal of Endocrinology, 2000
- Characterization of the Carboxyl-terminal Domain of the Rat Glucose-dependent Insulinotropic Polypeptide (GIP) ReceptorJournal of Biological Chemistry, 1999
- Postprandial stimulation of insulin release by glucose-dependent insulinotropic polypeptide (GIP). Effect of a specific glucose-dependent insulinotropic polypeptide receptor antagonist in the rat.Journal of Clinical Investigation, 1996
- GIP receptors and signal-transduction mechanismsActa Physiologica Scandinavica, 1996
- The insulinotropic region of gastric inhibitory polypeptide; fragment analysis suggests the bioactive site lies between residues 19 and 30Canadian Journal of Physiology and Pharmacology, 1996
- The insulinotropic region of gastric inhibitory polypeptide; fragment analysis suggests the bioactive site lies between residues 19 and 30Canadian Journal of Physiology and Pharmacology, 1996
- Dipeptidyl‐peptidase IV hydrolyses gastric inhibitory polypeptide, glucagon‐like peptide‐1(7–36)amide, peptide histidine methionine and is responsible for their degradation in human serumEuropean Journal of Biochemistry, 1993
- Glucose Dependent Insulinotropic Polypeptide (GIP) Infused Intravenously is Insulinotropic in the Fasting State in Type 2 (Non-Insulin Dependent) Diabetes MellitusHormone and Metabolic Research, 1989
- Effects of Intravenously Infused Porcine Gip on Serum Insulin, Plasma C-Peptide, and Pancreatic Polypeptide in Non-Insulin-Dependent Diabetes in the Fasting StateScandinavian Journal of Gastroenterology, 1985