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Medicine and Health Sciences Commons

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Pharmacy and Pharmaceutical Sciences

University of Kentucky

2011

Asparagine deamidation

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Mechanism And Kinetics Of Covalent Amide-Linked Adduct Formation In Solution And Solid Peptide Formulations, Michael Paul Dehart Jan 2011

Mechanism And Kinetics Of Covalent Amide-Linked Adduct Formation In Solution And Solid Peptide Formulations, Michael Paul Dehart

Theses and Dissertations--Pharmacy

Peptides and proteins are prone to chemical and physical degradation in solutions and solids. One of the most common chemical degradation pathways involves deamidation of asparagine residues through a reactive succinimide intermediate resulting in the formation of aspartyl and isoaspartyl degradation products.

In this work, kinetic studies in aqueous solutions demonstrated that the succinimide intermediate is susceptible to attack by nucleophiles other than water. This may lead to a variety of alternative degradants. In solutions containing high concentrations of ammonia, the succinimide generated in the deamidation of the model peptides Phe-Asn-Gly and Phe-isoAsn-Gly underwent back-reaction with ammonia leading to peptide …