Journal of Proteome Research · 2011 · 102 citations · 51 references
Glycated PeptidesPeptide EngineeringGlycobiologyMolecular BiologyProteomics AnalysisGlycoproteomicsNonenzymatic GlycationBioanalysisProteomicsGlycosylationBiochemistryInsulin ManagementDiabetes ComplicationsComprehensive IdentificationNatural SciencesPeptide LibraryDiabetesPhysiologyDiabetic Kidney DiseaseProtein EngineeringDiabetes MellitusTheir Glycation MotifsMedicineCarbohydrate-protein Interaction
Nonenzymatic glycation of proteins sets the stage for formation of advanced glycation end-products and development of chronic complications of diabetes. In this report, we extended our previous methods on proteomics analysis of glycated proteins to comprehensively identify glycated proteins in control and diabetic human plasma and erythrocytes. Using immunodepletion, enrichment, and fractionation strategies, we identified 7749 unique glycated peptides, corresponding to 3742 unique glycated proteins. Semiquantitative comparisons showed that glycation levels of a number of proteins were significantly increased in diabetes and that erythrocyte proteins were more extensively glycated than plasma proteins. A glycation motif analysis revealed that some amino acids were favored more than others in the protein primary structures in the vicinity of the glycation sites in both sample types. The glycated peptides and corresponding proteins reported here provide a foundation for potential identification of novel markers for diabetes, hyperglycemia, and diabetic complications in future studies.
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Sequence logos: a new way to display consensus sequences
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