Abstract
Protein exposed to glucose is cleaved, undergoes conformational change and develops fluorescent adducts ('glycofluorophores'). These changes are presumed to result from the covalent attachment of glucose to amino groups. We have demonstrated, however, that the fragmentation and conformational changes observed are dependent upon hydroxyl radicals produced by glucose autoxidation, or some closely related process, and that antioxidants dissociate structural damage caused by the exposure of glucose to protein from the incorporation of monosaccharide into protein. We have also provided further evidence that glycofluorophore formation is dependent upon metal-catalysed oxidative processes associated with ketoaldehyde formation. If experimental glycation is an adequate model of tissue damage occurring in diabetes mellitus, then these studies indicate a therapeutic role for antioxidants.
MeSH Terms
Aging/metabolism
Animals
Copper/metabolism
Diabetes Mellitus, Experimental/metabolism
Free Radicals
Glucose/metabolism
Glycosylation
Hydrogen Peroxide/metabolism
Hydroxides/metabolism
Hydroxyl Radical
Models, Biological
Monosaccharides/metabolism
Oxidation-Reduction
Peptide Fragments/analysis
Protein Conformation
Proteins/metabolism
Sorbitol/metabolism
Chemicals
Free Radicals
Hydroxides
Monosaccharides
Peptide Fragments
Proteins
Hydroxyl Radical
Sorbitol
Copper
Hydrogen Peroxide
Glucose
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Hunt J V
Cell Biology Research Group, Brunel University, Uxbridge, Middlesex, U.K.
Dean R T
Wolff S P
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