Carbodiimide Induced Cross-Linking, Ligand Addition, and Degradation in Gelatin

碳二亚胺 明胶 化学 酰胺 降级(电信) 反应机理 高分子化学 肽键 水溶液 有机化学 生物化学 催化作用 电信 计算机科学
作者
Christopher Cammarata,Mitchell E. Hughes,Clyde M. Ofner
出处
期刊:Molecular Pharmaceutics [American Chemical Society]
卷期号:12 (3): 783-793 被引量:81
标识
DOI:10.1021/mp5006118
摘要

The water-soluble carbodiimide, 1-ethyl-3-(3-(dimethylaminopropyl)-carbodiimide (EDC) is widely used in protein chemistry. We used EDC-induced gelatin cross-linking as a model for amide bond formation to resolve reaction ambiguities with common variables of buffers, gelatin concentration, and pH. Percentage changes in SEC high molecular weight peak areas were used to follow the reactions. Differences in reaction rate and extent were observed with four commonly used buffers, while differences in extent were observed for commonly used concentrations and pH. We also investigated an anhydride mechanism for aqueous EDC-induced amide bond formation that has received little attention since its proposal in 1995. Gelatin carboxyl groups had a synergistic role during the addition of hydrazine to corroborate the anhydride formation between carboxyl groups. EDC-induced degradation of gelatin was investigated using percentage changes in SEC low molecular weight peak areas. The degradation occurred in excess EDC at neutral to alkaline pH and was enhanced substantially when reacting amino groups were not available. A mechanism of EDC-induced gelatin degradation is proposed and designated the extended Khorana mechanism. This EDC side reaction has the potential to occur in peptides and proteins under similar conditions.
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