4.6 Article

Stereoselective Glycal Fluorophosphorylation: Synthesis of ADP-2-fluoroheptose, an Inhibitor of the LPS Biosynthesis

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 14, Issue 31, Pages 9530-9539

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.200801279

Keywords

fluorine; glycal; glycosyl transferases; nucleotides; polysaccharides; selectfluor

Funding

  1. Mutabilis S.A
  2. Marie Curie Training Network [MRT-NCT-2005-019561]

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Heptosides are found in important bacterial glycolipids such as lipopolysaccliaride (LPS). the biosynthesis of which is targeted for the develoopment of novel antibacterial agents. This work describes the synthesis of a fluorinated analogue of ADP-L-glycero-beta-D-manno-heptopyranose, the donor substrate of the heptosyl transferase WaaC, which catalyzes the incorporation of this carbohydrate into LPS. Synthetically, the key step for the preparation of ADP-2F-heptose is the Simultaneous and stercoselective installation of both the fluorine atom at C-2 and the phosphoryl group at C-1 through a selectfluor-mediated (selectfluor= 1-clilol-omettivi-4-fluorodiazonia-bicy[2.2.2]octane bis(triflate)) electrophific addition/nucleophilic substitution involving a heptosylplycal. Therefore, we detail in this article 1) the stereoselective preparation of the key intermediates heptosylglycals, 2) the development of a new fluorophosphorylation procedure allowing an excellent beta-gluco stereoselectivity with all-equatorial glycals, 3) the synthesis of the target ADP-2F-heptose, and 4) some comments on the contacts observed between the fluorine atom of the final molecule and the protein in the crystallographic structure of heptosyltransferase WaaC.

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