Ureido sugars with eight various alkyl groups at N-3 were studied by means of ~H, ~3C, and 15N NMR spectroscopy in CDC13 solution and a 13C CP MAS technique in the solid state. The analysis of chemical shifts and coupling constants suggests the Z,Z-anti conformation of the ureido part of molecule. D
13C CP MAS and high-resolution 1H, 13C, 15N NMR study of new ureido sugars, derivatives of 2-amino-2-deoxy-β-d-glucopyranose and l-amino acid
✍ Scribed by Iwona Wawer; Boguslawa Piekarska-Bartoszewicz; Andrzej Temeriusz
- Publisher
- Elsevier Science
- Year
- 1995
- Tongue
- English
- Weight
- 578 KB
- Volume
- 279
- Category
- Article
- ISSN
- 0008-6215
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✦ Synopsis
Ureido sugars with seven various L-amino acid ester residues were studied by means of 'H, "C, and "N NMR in solution and 13C CP MAS in the solid state. The chemical shifts and coupling constants in the 'H, t3C, and "N NMR spectra indicated that the replacement of one amino acid residue by another has no significant effect on the conformation of glucopyranose moiety. The shielding of nitrogen linked to glucose does not change, whereas the shielding of nitrogen of amino acid residues increases in the order Ala < Leu < Phe < Val < Gly and can be explained by the p-effect of the alkyl substituent at C,. "C CP MAS spectra of l-5 were recorded and assigned. The C-3 and C-6 carbons of sugar, the carbonyl carbons of the ureido bridge, and the carbons of the amino acid ester residues are deshielded in the solid state compared to the respective values for CDCl, solution owing to the loss of conformational flexibility and different intermolecular interactions.
📜 SIMILAR VOLUMES
The 15N NMR spectra of a series of derivatives of 2-amino-2-deoxy-b-D-glucopyranose and dipeptides or secondary amines were recorded. In the dipeptide derivatives the chemical shift of nitrogen atom N-1 (linked to sugar) is essentially unchanged and the shifts of nitrogen atoms N-3 and N-6 are deter
Four new derivatives of methyl 3,4,6-triacetyl-2-deoxy-(3'-arylureido)-fl-D-glucopyranoside were studied by ~H, ~3C, ~SN NMR in CDC13 solutions and by ~3C, ~3N NMR in the solid state. The replacement of one aryl substituent by another has no influence on the proton and carbon chemical shifts within