Glycation of a lysine-containing tetrapeptide by D-glucose and D-fructose--influence of different reaction conditions on the formation of Amadori/Heyns products |
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Authors: | Jakas Andreja Katić Anja Bionda Nina Horvat Stefica |
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Affiliation: | Division of Organic Chemistry and Biochemistry, Rudjer Boskovi? Institute, PO Box 180, Bijenicka 54, HR-10002 Zagreb, Croatia. jakas@irb.hr |
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Abstract: | The site specificity, extent, and nature of modification of the tetrapeptide, Leu-Ser-Lys-Leu (1), incubated with d-glucose or d-fructose in methanol, or in phosphate buffer of pH 5.7, 7.4, and 8.0 were investigated. The generated mono- and di-glycated Amadori (1-deoxy-d-fructosyl derivatives) and Heyns rearrangement products (N-alkylated glucosamine/mannosamine derivatives) were isolated and characterized by NMR and mass spectrometry. The results identified the epsilon-amino group of the Lys residue as the preferential glycation site in tetrapeptide 1. Under all conditions investigated, glucose afforded higher yields of glycation products than fructose. In the reactions carried out in buffer, glycation at pH 7.4 and 8.0 was much faster than at pH 5.7. |
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Keywords: | Amadori compound Fructose Glucose Glycation Heyns compound Maillard reaction |
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