| Literature DB >> 23806835 |
Lorenzo Caputi1, Martin Rejzek, Thomas Louveau, Ellis C O'Neill, Lionel Hill, Anne Osbourn, Robert A Field.
Abstract
In connection with prospective (18)F-PET imaging studies, the potential for enzymatic synthesis of fluorine-labelled glycosides of small molecules was investigated. Approaches to the enzymatic synthesis of anomeric phosphates of d-gluco-configured fluorosugars proved ineffective. In contrast, starting in the d-galacto series and relying on the consecutive action of Escherichia coli galactokinase (GalK), galactose-1-phosphate uridylyltransferase (GalPUT), uridine-5'-diphosphogalactose 4-epimerase (GalE) and oat root glucosyltransferase (SAD10), a quick and effective synthesis of 6-deoxy-6-fluoro-d-glucosyl N-methylanthranilate ester was achieved.Entities:
Keywords: Biotransformation; Fluorosugar; Glucosyltransferase; Natural product; Sugar nucleotide
Mesh:
Substances:
Year: 2013 PMID: 23806835 PMCID: PMC3898844 DOI: 10.1016/j.bmc.2013.05.057
Source DB: PubMed Journal: Bioorg Med Chem ISSN: 0968-0896 Impact factor: 3.641
Figure 1Outline of enzymatic approaches. (A) Hexokinase-phosphoglucomutase approach from Glc. (B) Mutant galactokinase-uridylyltransferase approach from Glc. (C) Galactokinase-uridylyltransferase-epimerase approach from Gal.
Figure 3One-pot, multi-enzyme synthesis of 1-O-(N-methylanthraniloyl)-6-deoxy-6-fluoro-β-d-glucopyranose (6F-Glc-NMA).
Figure 2(A–D) 1H NMR signals of the anomeric protons H1″ and H1. (A) GalE mediated epimerisation of UDP-d-Gal into UDP-d-Glc. Lower trace, no enzyme (NE) control; upper trace, time point 1 h (UDP-Gal/UDP-Glc 1.0:3.8). (B) GalE mediated epimerisation of UDP-6F-d-Gal into UDP-6F-d-Glc. Lower trace, no enzyme; upper trace, time point 1 h (1.0:2.0). (C) SAD10 mediated transformation of UDP-d-Glc and N-methylanthranilic acid to give 1-O-(N-methylanthraniloyl)-β-d-glucopyranose (Glc-NMA). Lower trace, no enzyme; upper trace, time point 1 h (∼12% conversion). (D) SAD10 mediated transformation of UDP-6F-d-Glc and N-methylanthranilic acid to give 1-O-(N-methylanthraniloyl)-6-deoxy-6-fluoro-β-d-glucopyranose (6F-Glc-NMA). Lower trace, no enzyme; upper trace, time point 1 h (∼21% conversion). (C and D) The minor impurities (dd) are the residual galacto-configured sugar nucleotides starting materials.