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Mutation Hotspot for Changing the Substrate Specificity of β-N-Acetylhexosaminidase: A Library of GlcNAcases.


ABSTRACT: β-N-Acetylhexosaminidase from Talaromyces flavus (TfHex; EC 3.2.1.52) is an exo-glycosidase with dual activity for cleaving N-acetylglucosamine (GlcNAc) and N-acetylgalactosamine (GalNAc) units from carbohydrates. By targeting a mutation hotspot of the active site residue Glu332, we prepared a library of ten mutant variants with their substrate specificity significantly shifted towards GlcNAcase activity. Suitable mutations were identified by in silico methods. We optimized a microtiter plate screening method in the yeast Pichia pastoris expression system, which is required for the correct folding of tetrameric fungal β-N-acetylhexosaminidases. While the wild-type TfHex is promiscuous with its GalNAcase/GlcNAcase activity ratio of 1.2, the best single mutant variant Glu332His featured an 8-fold increase in selectivity toward GlcNAc compared with the wild-type. Several prepared variants, in particular Glu332Thr TfHex, had significantly stronger transglycosylation capabilities than the wild-type, affording longer chitooligomers - they behaved like transglycosidases. This study demonstrates the potential of mutagenesis to alter the substrate specificity of glycosidases.

SUBMITTER: Nekvasilova P 

PROVIDER: S-EPMC9604439 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

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Mutation Hotspot for Changing the Substrate Specificity of β-<i>N</i>-Acetylhexosaminidase: A Library of GlcNAcases.

Nekvasilová Pavlína P   Kulik Natalia N   Kotik Michael M   Petrásková Lucie L   Slámová Kristýna K   Křen Vladimír V   Bojarová Pavla P  

International journal of molecular sciences 20221018 20


β-<i>N</i>-Acetylhexosaminidase from <i>Talaromyces flavus</i> (<i>Tf</i>Hex; EC 3.2.1.52) is an <i>exo</i>-glycosidase with dual activity for cleaving <i>N</i>-acetylglucosamine (GlcNAc) and <i>N</i>-acetylgalactosamine (GalNAc) units from carbohydrates. By targeting a mutation hotspot of the active site residue Glu332, we prepared a library of ten mutant variants with their substrate specificity significantly shifted towards GlcNAcase activity. Suitable mutations were identified by in silico m  ...[more]

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