Synthesis of 2,3-Dideoxy-2-fluoro-2,3-endo-methylene- and 2,3-Dideoxy-2-fluoro-3‑C‑hydroxymethyl-2,3-endo-methylene-pentofuranoses and Their Use in the Preparation of Conformationally Locked Bicyclic Nucleosides

Construction of protected 2,3-dideoxy-2-fluoro-2,3-endo-methylene-pento­furanoses from d-glyceraldehyde and 2,3-dideoxy-2-fluoro-3-C-hydroxy­methyl-2,3-endo-methylene-pento­furanoses from d-isoascorbic acid, via Simmons–Smith-type stereoselective cyclopropanations on the respective fluoroallyl alcoh...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Journal of organic chemistry 2015-02, Vol.80 (4), p.2198-2215
Hauptverfasser: Clarkson, Rob, Komsta, Zofia, Mayes, Benjamin A, Moussa, Adel, Shelbourne, Montserrat, Stewart, Alistair, Tyrrell, Andrew J, Wallis, Laura L, Weymouth-Wilson, Alexander C
Format: Artikel
Sprache:eng
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:Construction of protected 2,3-dideoxy-2-fluoro-2,3-endo-methylene-pento­furanoses from d-glyceraldehyde and 2,3-dideoxy-2-fluoro-3-C-hydroxy­methyl-2,3-endo-methylene-pento­furanoses from d-isoascorbic acid, via Simmons–Smith-type stereoselective cyclopropanations on the respective fluoroallyl alcohols, is described. Synthesis of the corresponding conformationally locked sugar modified uridine and guanosine nucleosides was achieved via Vorbrüggen or Mitsunobu methodologies. Stereochemical confirmation of the novel nucleosides was performed on the basis of 2D NOESY NMR experiments. Analysis of 2′,3′-dideoxy-2′-fluoro-3′-C-hydroxy­methyl-2′,3′-endo-methylene-uridine by X-ray crystallography yielded the principal conformational parameters and indicated that the furanoid ring adopted an oE/oT1, East pucker. The uridine and guanosine nucleosides were found to be inactive in the hepatitis C virus (HCV) cell-based replicon assay, which was corroborated on examination of the corresponding nucleoside triphosphates against the HCV NS5B polymerase.
ISSN:0022-3263
1520-6904
DOI:10.1021/jo502712g