Title of article :
Mutation of fungal endoglucanases into glycosynthases and characterization of their acceptor substrate specificity
Author/Authors :
Blanchard، نويسنده , , Sophie and Cottaz، نويسنده , , Sylvain and Coutinho، نويسنده , , Pedro M. and Patkar، نويسنده , , Shamkant and Vind، نويسنده , , Jesper and Boer، نويسنده , , Harry and Koivula، نويسنده , , Anu and Driguez، نويسنده , , Hugues and Armand، نويسنده , , Sylvie، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Abstract :
Humicola insolens mutant Cel7B E197A is a powerful endo-glycosynthase displaying an acceptor substrate specificity restricted to β-d-glucosyl, β-d-xylosyl, β-d-mannosyl and β-d-glucosaminyl in +1 subsite. Our aim was to extend this substrate specificity to β-d-N-acetylglucosaminyl, in order to get access to a wider array of oligosaccharidic structures obtained through glycosynthase assisted synthesis. In a first approach a trisaccharide bearing a β-d-N-acetylglucosaminyl residue was docked at the +1 subsite of H. insolens Cel7B, indicating that the mutation of only one residue, His209, could lead to the expected wider acceptor specificity. Three H. insolens Cel7B glycosynthase mutants (H209A, H209G and H209A/A211T) were produced and expressed in Aspergillus oryzae. In parallel, sequence alignment investigations showed that several cellulases from family GH7 display an alanine residue instead of histidine at position 209. Amongst them, Trichoderma reesei Cel7B, an endoglucanase sharing the highest degree of sequence identity with Humicola Cel7B, was found to naturally accept a β-d-N-acetylglucosaminyl residue at +1 subsite. The T. reesei Cel7B mutant nucleophile E196A was produced and expressed in Saccharomyces cerevisiae, and its activity as glycosynthase, together with the H. insolens glycosynthase mutants, was evaluated toward various glycosidic acceptors.
Keywords :
Cellulase , oligosaccharide synthesis , Enzymatic synthesis , Glycosynthase , protein engineering
Journal title :
Journal of Molecular Catalysis B Enzymatic
Journal title :
Journal of Molecular Catalysis B Enzymatic