Insulin release by glucagon and secretin: studies with secretin-glucagon hybrids
H. Kofod, D. Andreu, P. Thams, R. B. Merrifield, C. J. Hedeskov, B. Hansen and A. Lernmark Hagedorn Research Laboratory, Gentofte, Denmark. Secretin and glucagon potentiate glucose-induced insulin release. We have compared the effects of secretin and glucagon with that of four hybrid molecules of th...
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Veröffentlicht in: | American journal of physiology: endocrinology and metabolism 1988-04, Vol.254 (4), p.E454-E458 |
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Zusammenfassung: | H. Kofod, D. Andreu, P. Thams, R. B. Merrifield, C. J. Hedeskov, B. Hansen and A. Lernmark
Hagedorn Research Laboratory, Gentofte, Denmark.
Secretin and glucagon potentiate glucose-induced insulin release. We have
compared the effects of secretin and glucagon with that of four hybrid
molecules of the two hormones on insulin release and formation of cyclic
AMP (cAMP) in isolated mouse pancreatic islets. All six peptides
potentiated the release of insulin at 10 mM D-glucose, and their effects
were indistinguishable with respect to the dynamics of release,
dose-response relationship, and glucose dependency. However, measurements
of cAMP accumulation in the presence of the phosphodiesterase inhibitor
3-isobutyl-1-methylxanthine (10(-4) M) showed that the fold increase
compared with glucose alone had the following ranking order: secretin =
[Tyr10, Tyr13]-secretin 1.6 less than [Tyr10, Tyr13, Trp25]secretin 1.8
less than glucagon 1.9 less than [Asp3, Glu9, Arg12]glucagon 2.3 = [Asp3,
Glu9]glucagon. These results suggest that despite similar potentiating
effects of secretin and glucagon on glucose-induced insulin release, their
modes of action may be different. |
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ISSN: | 0193-1849 0002-9513 1522-1555 |
DOI: | 10.1152/ajpendo.1988.254.4.E454 |