PLoS ONE · 2013 · 42 citations · 23 references
Carbohydrate-binding ModuleEngineeringBiochemistryNatural SciencesBiocatalysisEnzyme CatalysisGlycobiologyBiotechnologyMolecular BiologyPolysaccharideSilico DesignPichia Pastoris Gs115Recombinant Auman5a-cbmFamily 5Enzymatic ModificationCarbohydrate-protein InteractionBiomolecular EngineeringCellulose-binding Capacity
The AuMan5A, an acidophilic glycoside hydrolase (GH) family 5 β-mannanase derived from Aspergillus usamii YL-01-78, consists of an only catalytic domain (CD). To perfect enzymatic properties of the AuMan5A, a family 1 carbohydrate-binding module (CBM) of the Trichoderma reesei cellobiohydrolase I (TrCBH I), having the lowest binding free energy with cellobiose, was selected by in silico design, and fused into its C-terminus forming a fusion β-mannanase, designated as AuMan5A-CBM. Then, its encoding gene, Auman5A-cbm, was constructed as it was designed theoretically, and expressed in Pichia pastoris GS115. SDS-PAGE analysis displayed that both recombinant AuMan5A-CBM (reAuMan5A-CBM) and AuMan5A (reAuMan5A) were secreted into the cultured media with apparent molecular masses of 57.3 and 49.8 kDa, respectively. The temperature optimum of the reAuMan5A-CBM was 75°C, being 5°C higher than that of the reAuMan5A. They were stable at temperatures of 68 and 60°C, respectively. Compared with reAuMan5A, the reAuMan5A-CBM showed an obvious decrease in K m and a slight alteration in V max. In addition, the fusion of a CBM of the TrCBH I into the AuMan5A contributed to its cellulose-binding capacity.
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Colorimetric Method for Determination of Sugars and Related Substances
Michel Dubois, K. A. Gilles, J. K. Hamilton et al. · Analytical Chemistry · 1956 · 51K citations
Henrik Stålbrand, Anu Saloheimo, Jari Vehmaanperä et al. · Applied and Environmental Microbiology · 1995 · 178 citations · Full text