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In vitro metabolic stability of iodinated obestatin peptides
Authors:De Spiegeleer Bart  Van Dorpe Sylvia  Vergote Valentijn  Wynendaele Evelien  Pauwels Ewald  Van De Wiele Christophe  Garcia-Solis Pablo  Solis-Sainz Juan Carlos
Institution:Drug Quality and Registration Group, Faculty of Pharmaceutical Sciences, Ghent University, Harelbekestraat 72, B-9000 Ghent, Belgium. Bart.DeSpiegeleer@UGent.be
Abstract:Different iodinated mouse obestatin peptides have been characterized toward their in vitro stability in the main metabolic compartments plasma, liver and kidney. Using HPLC-UV for quantification, significant differences in the degradation kinetics of the iodinated peptides, arising from both enzymatic proteolysis and dehalogenation, were found when compared to the native, unmodified peptide. HPLC-MS/MS analysis demonstrated that the cleavage sites were dependent upon the biological matrix and the location of the amino acid residue incorporating the iodine atom(s). The degrading proteases were found to target peptide bonds further away from the iodine incorporation, while proteolytic cleavages of nearby peptide bonds were more limited. Diiodinated amino acid residue containing peptides were found to be more susceptible to deiodination than the mono-iodinated derivative. In plasma, the percentage of peptide degradation solely attributed to deiodinase activity after 20 min incubation reached up to 25% for 2,5-diiodo-H(19)-obestatin compared to 20% and only 3% for (3,5-diiodo-Y(16))- and (3-iodo-Y(16)) obestatin, respectively. Hence, our results demonstrate that the different iodinated peptides pose significantly different metabolization properties and thus, also different biological activities are expected for peptides upon iodination.
Keywords:m-Obestatin  Mouse obestatin  2  5-Diiodo-H  Diiodination on the histidine amino acid residue  2-Iodo-H  Monoiodination on the histidine amino acid residue  3  5-Diiodo-Y  Diiodination on the tyrosine amino acid residue  3-Iodo-Y  Monoiodination on the tyrosine amino acid residue  MIT  Monoiodinated tyrosine  DIT  Diiodinated tyrosine  MIH  Monoiodinated histidine  DIH  Diiodinated histidine  ID or DI  Iodothyronine deiodinase  IYD  Iodotyrosine deiodinase  DIP  Di-iodinated peptide  MIP  Mono-iodinated peptide  NIP  Non-iodinated peptide  M  Proteolytic metabolite
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