• Title of article

    Anatomy of Glycosynthesis: Structure and Kinetics of the Humicola insolens Cel7B E197A and E197S Glycosynthase Mutants Original Research Article

  • Author/Authors

    Valérie M-A Ducros، نويسنده , , Chris A. Tarling، نويسنده , , David L Zechel، نويسنده , , A. Marek Brzozowski، نويسنده , , Torben P. Frandsen، نويسنده , , Ingemar von Ossowski، نويسنده , , Martin Schülein and Gideon J. Davies، نويسنده , , Stephen G. Withers and Pedro M. Alzari، نويسنده , , Gideon J Davies، نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 2003
  • Pages
    10
  • From page
    619
  • To page
    628
  • Abstract
    The formation of glycoconjugates and oligosaccharides remains one of the most challenging chemical syntheses. Chemo-enzymatic routes using retaining glycosidases have been successfully harnessed but require tight kinetic or thermodynamic control. “Glycosynthases,” specifically engineered glycosidases that catalyze the formation of glycosidic bonds from glycosyl donor and acceptor alcohol, are an emerging range of synthetic tools in which catalytic nucleophile mutants are harnessed together with glycosyl fluoride donors to generate powerful and versatile catalysts. Here we present the structural and kinetic dissection of the Humicola insolens Cel7B glycosynthases in which the nucleophile of the wild-type enzyme is mutated to alanine and serine (E197A and E197S). 3-D structures reveal the acceptor and donor subsites and the basis for substrate inhibition. Kinetic analysis shows that the E197S mutant is considerably more active than the corresponding alanine mutant due to a 40-fold increase in kcat.
  • Journal title
    Chemistry and Biology
  • Serial Year
    2003
  • Journal title
    Chemistry and Biology
  • Record number

    1158671