Structure-Activity Relationships of Glucose-Dependent Insulinotropic Polypeptide (GIP)

Six GIP1-30NH2 analogs were synthesized with modifications (de-protonation, N-methylation, reversed chirality, and substitution) at positions 1, 3, and 4 of the N-terminus, and additionally, a cyclized GIP derivative was synthesized. The relationship between altered structure to biological activity...

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Bibliographic Details
Published inBiological chemistry Vol. 384; no. 3; pp. 403 - 407
Main Authors Hinke, S.A., Gelling, R., Manhart, S., Lynn, F., Pederson, R.A., Kühn-Wache, K., Rosche, F., Demuth, H.-U., Coy, D., McIntosh, C.H.S.
Format Journal Article
LanguageEnglish
Published Germany Walter de Gruyter 01.03.2003
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ISSN1431-6730
DOI10.1515/BC.2003.046

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Summary:Six GIP1-30NH2 analogs were synthesized with modifications (de-protonation, N-methylation, reversed chirality, and substitution) at positions 1, 3, and 4 of the N-terminus, and additionally, a cyclized GIP derivative was synthesized. The relationship between altered structure to biological activity was assessed by measuring receptor binding affinity and ability to stimulate adenylyl cyclase in CHO-K1 cells transfected with the wild-type GIP receptor (wtGIPR). These structureactivity relationship studies demonstrate the importance of the GIP N-terminus and highlight structural constraints that can be introduced in GIP analogs. These analogs may be useful starting points for design of peptides with enhanced in vivo bioactivity.
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ISSN:1431-6730
DOI:10.1515/BC.2003.046