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Structure and Activity of the Streptomyces coelicolor A3(2) beta-N-Acetylhexosaminidase Provides Further Insight into GH20 Family Catalysis and Inhibition

Thi, Nhung Nguyen; Offen, Wendy A; Shareck, François; Davies, Gideon J; Doucet, Nicolas (2014). Structure and Activity of the Streptomyces coelicolor A3(2) beta-N-Acetylhexosaminidase Provides Further Insight into GH20 Family Catalysis and Inhibition Biochemistry , vol. 53 , nº 11. p. 1789-1800. DOI: 10.1021/bi401697j.

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Résumé

beta-N-acetylhexosaminidases (HEX) are glycosidases that catalyze the glycosidic linkage hydrolysis of gluco- and galacto-configured N-acetyl-beta-d-hexosaminides. These enzymes are important in human physiology and are candidates for the biocatalytic production of carbohydrates and glycomimetics. In this study, the three-dimensional structure of the wild-type and catalytically impaired E302Q HEX variant from the soil bacterium Streptomyces coelicolor A3(2) (ScHEX) were solved in ligand-free forms and in the presence of 6-acetamido-6-deoxy-castanospermine (6-Ac-Cas). The E302Q variant was also trapped as an intermediate with oxazoline bound to the active center. Crystallographic evidence highlights structural variations in the loop 3 environment, suggesting conformational heterogeneity for important active-site residues of this GH20 family member. The enzyme was investigated for its beta-N-acetylhexosaminidase activity toward chitooligomers and pNP-acetyl gluco- and galacto-configured N-acetyl hexosaminides. Kinetic analyses confirm the beta(1-4) glycosidic linkage substrate preference, and HPLC profiles support an exoglycosidase mechanism, where the enzyme cleaves sugars from the nonreducing end of substrates. ScHEX possesses significant activity toward chitooligosaccharides of varying degrees of polymerization, and the final hydrolytic reaction yielded pure GlcNAc without any byproduct, promising high applicability for the enzymatic production of this highly valued chemical. Thermostability and activation assays further suggest efficient conditions applicable to the enzymatic production of GlcNAc from chitooligomers.

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Centre: Centre INRS-Institut Armand Frappier
Date de dépôt: 12 avr. 2017 15:30
Dernière modification: 12 avr. 2017 15:43
URI: http://espace.inrs.ca/id/eprint/3124

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