• Title of article

    Proof of principle for the synthesis of hydroxy-aryl esters of glycosidic polyols and non-reducing oligosaccharides with subsequent enzymatic coupling to a tyrosine-containing tripeptide Original Research Article

  • Author/Authors

    Ruud ter Haar، نويسنده , , Jelle Wildschut، نويسنده , , Asaf K. Sugih، نويسنده , , W. Bart M?ller، نويسنده , , Pieter de Waard، نويسنده , , Carmen G. Boeriu، نويسنده , , Hero J. Heeres، نويسنده , , Henk A. Schols، نويسنده , , Harry Gruppen، نويسنده ,

  • Issue Information
    دوهفته نامه با شماره پیاپی سال 2011
  • Pages
    8
  • From page
    1005
  • To page
    1012
  • Abstract
    To enable enzymatic coupling of saccharides to proteins, several di- and trisaccharides were hydroxy-arylated using anhydrous transesterification with methyl 3-(4-hydroxyphenyl)propionate, catalyzed by potassium carbonate. This transesterification resulted in the attachment of up to 3 hydroxy-aryl units per oligosaccharide molecule, with the monosubstituted product being by far the most abundant. The alkaline reaction conditions, however, resulted in a partial breakdown of reducing sugars. This breakdown could easily be bypassed by a preceding sugar reduction step converting them to polyols. Hydroxy-arylated products were purified by using solid phase extraction, based on the number of hydroxy-aryl moieties attached. Monohydroxy-arylated saccharose was subsequently linked to a tyrosine-containing tripeptide using horseradish peroxidase, as monitored by LC–MSn. This proof of principle for peptide and protein glycation with a range of possible saccharides and glycosidic polyols can lead to products with unique new properties.
  • Keywords
    Oligosaccharide hydroxy-arylation , Protein functionality , Horseradish peroxidase , Protein glycation
  • Journal title
    Carbohydrate Research
  • Serial Year
    2011
  • Journal title
    Carbohydrate Research
  • Record number

    967149