C-3 epimers of sugar amino acids as foldameric building blocks: improved synthesis, useful derivatives, coupling strategies

Amino Acids. 2017 Feb;49(2):223-240. doi: 10.1007/s00726-016-2346-5. Epub 2016 Nov 1.

Abstract

To obtain key sugar derivatives for making homooligomeric foldamers or α/β-chimera peptides, economic and multigram scale synthetic methods were to be developed. Though described in the literature, the cost-effective making of both 3-amino-3-deoxy-ribofuranuronic acid (H-t X-OH) and its C-3 epimeric stereoisomer, the 3-amino-3-deoxy-xylofuranuronic acid (H-c X-OH) from D-glucose is described here. The present synthetic route elaborated is (1) appropriate for large-scale synthesis; (2) reagent costs reduced (e.g. by a factor of 400); (3) yields optimized are ~80% or higher for all six consecutive steps concluding -t X- or -c X- and (4) reaction times shortened. Thus, a new synthetic route step-by-step optimized for yield, cost, time and purification is given both for D-xylo and D-ribo-amino-furanuronic acids using sustainable chemistry (e.g. less chromatography with organic solvents; using continuous-flow reactor). Our study encompasses necessary building blocks (e.g. -X-OMe, -X-OiPr, -X-NHMe, Fmoc-X-OH) and key coupling reactions making -Aaa-t X-Aaa- or -Aaa-t X-t X-Aaa- type "inserts". Completed for both stereoisomers of X, including the newly synthesized Fmoc-c X-OH, producing longer oligomers for drug design and discovery is more of a reality than a wish.

Keywords: Azido sugars; Foldamers; Nucleophilic substitution; Sugar amino acids.

MeSH terms

  • Amino Acids / chemical synthesis*
  • Amino Acids / chemistry
  • Amino Sugars / chemical synthesis*
  • Chemistry Techniques, Synthetic / economics
  • Glucose / chemistry
  • Stereoisomerism
  • Uronic Acids / chemical synthesis*

Substances

  • Amino Acids
  • Amino Sugars
  • Uronic Acids
  • Glucose