Issue 12, 2003

The economical synthesis of [2′-13C, 1,3-15N2]uridine; preliminary conformational studies by solid state NMR

Abstract

The synthesis of [2′-13C, 1,3-15N2]uridine 11 was achieved as follows. An epimeric mixture of D-[1-13C]ribose 3 and D-[1-13C]arabinose 4 was obtained in excellent yield by condensation of K13CN with D-erythrose 2 using a modification of the Kiliani–Fischer synthesis. Efficient separation of the two aldose epimers was pivotally achieved by a novel ion-exchange (Sm3+) chromatography method. D-[2-13C]Ribose 5 was obtained from D-[1-13C]arabinose 4 using a Ni(II) diamine complex (nickel chloride plus TEMED). Combination of these procedures in a general cycling manner can lead to the very efficient preparation of specifically labelled 13C-monosaccharides of particular chirality. 15N-labelling was introduced in the preparation of [2′-13C, 1,3-15N2]uridine 11via [15N2]urea. Cross polarisation magic angle spinning (CP-MAS) solid-state NMR experiments using rotational echo double resonance (REDOR) were carried out on crystals of the labelled uridine to show that the inter-atomic distance between C-2′ and N-1 is closely similar to that calculated from X-ray crystallographic data. The REDOR method will be used now to determine the conformation of bound substrates in the bacterial nucleoside transporters NupC and NupG.

Graphical abstract: The economical synthesis of [2′-13C, 1,3-15N2]uridine; preliminary conformational studies by solid state NMR

Article information

Article type
Paper
Submitted
13 Feb 2003
Accepted
23 Apr 2003
First published
09 May 2003

Org. Biomol. Chem., 2003,1, 2057-2062

The economical synthesis of [2′-13C, 1,3-15N2]uridine; preliminary conformational studies by solid state NMR

S. G. Patching, D. A. Middleton, P. J. F. Henderson and R. B. Herbert, Org. Biomol. Chem., 2003, 1, 2057 DOI: 10.1039/B301275A

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