| Literature DB >> 27152632 |
Martin Kaufmann1, Philipp M Meissner2, Daniel Pelke2, Clemens Mügge3, Lothar W Kroh2.
Abstract
Structure-reactivity relationships of Amadori rearrangement products compared to their related ketoses were derived from multiple NMR spectroscopic techniques. Besides structure elucidation of six Amadori rearrangement products derived from d-glucose and d-galactose with l-alanine, l-phenylalanine and l-proline, especially quantitative (13)C selective saturation transfer NMR spectroscopy was applied to deduce information on isomeric systems. It could be shown exemplarily that the Amadori compound N-(1-deoxy-d-fructos-1-yl)-l-proline exhibits much higher isomerisation rates than d-fructose, which can be explained by C-1 substituent mediated intramolecular catalysis. In combination with a reduced carbonyl activity of Amadori compounds compared to their related ketoses which results in an increased acyclic keto isomer concentration, the results on isomerisation dynamics lead to a highly significant increased reactivity of Amadori compounds. This can be clearly seen, comparing approximated carbohydrate milieu stability time constants (ACuSTiC) which is 1 s for N-(1-deoxy-d-fructos-1-yl)-l-proline and 10 s for d-fructose at pD 4.20 ± 0.05 at 350 K. In addition, first NMR spectroscopic data are provided, which prove that α-pyranose of (amino acid substituted) d-fructose adopts both, (2)C5 and (5)C2 conformation.Entities:
Keywords: Amadori compound; Dynamic NMR spectroscopy; Isomerisation dynamics; N-(1-deoxy-d-fructos-1-yl)-l-alanine (PubChem CID: 71316979); N-(1-deoxy-d-fructos-1-yl)-l-phenylalanine (PubChem CID: 71316982); N-(1-deoxy-d-fructos-1-yl)-l-proline (PubChem CID: 71316983); Reactivity; Ring inversion; d-Fructose; d-Fructose (PubChem CID: 5984); d-Fructose + l-Proline (PubChem CID: 118797558); d-Tagatose (PubChem CID: 92092)
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Year: 2016 PMID: 27152632 DOI: 10.1016/j.carres.2016.04.016
Source DB: PubMed Journal: Carbohydr Res ISSN: 0008-6215 Impact factor: 2.104