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1.
Appl Biochem Biotechnol ; 186(4): 877-894, 2018 Dec.
Article in English | MEDLINE | ID: mdl-29779183

ABSTRACT

A novel ß-glucosidase from higher termite Microcerotermes annandalei (MaBG) was obtained via a screening method targeting ß-glucosidases with increased activities in the presence of glucose. The purified natural MaBG showed a subunit molecular weight of 55 kDa and existed in a native form as a dimer without any glycosylation. Gene-specific primers designed from its partial amino acid sequences were used to amplify the corresponding 1,419-bp coding sequence of MaBG which encodes a 472-amino acid glycoside hydrolase family 1 (GH1) ß-glucosidase. When expressed in Komagataella pastoris, the recombinant MaBG appeared as a ~ 55-kDa protein without glycosylation modifications. Kinetic parameters as well as the lack of secretion signal suggested that MaBG is an intracellular enzyme and not involved in cellulolysis. The hydrolytic activities of MaBG were enhanced in the presence of up to 3.5-4.5 M glucose, partly due to its strong transglucosylation activity, which suggests its applicability in biosynthetic processes. The potential synthetic activities of the recombinant MaBG were demonstrated in the synthesis of para-nitrophenyl-ß-D-gentiobioside via transglucosylation and octyl glucoside via reverse hydrolysis. The information obtained from this study has broadened our insight into the functional characteristics of this variant of termite GH1 ß-glucosidase and its applications in bioconversion and biotechnology.


Subject(s)
Insect Proteins/chemistry , Isoptera/enzymology , beta-Glucosidase/chemistry , Animals , Cloning, Molecular , Hydrolysis , Insect Proteins/genetics , Isoptera/genetics , Kinetics , Substrate Specificity , beta-Glucosidase/genetics
2.
Protein Expr Purif ; 115: 132-40, 2015 Nov.
Article in English | MEDLINE | ID: mdl-26166179

ABSTRACT

ß-Xylosidases catalyze the breakdown of ß-1,4-xylooligosaccharides, which are produced from degradation of xylan by xylanases, to fermentable xylose. Due to their important role in xylan degradation, there is an interest in using these enzymes in biofuel production from lignocellulosic biomass. In this study, the coding sequence of a glycoside hydrolase family 3 ß-xylosidase from Aspergillus niger ASKU28 (AnBX) was cloned and expressed in Pichia pastoris as an N-terminal fusion protein with the α-mating factor signal sequence (α-MF) and a poly-histidine tag. The expression level was increased to 5.7 g/l in a fermenter system as a result of optimization of only five codons near the 5' end of the α-MF sequence. The recombinant AnBX was purified to homogeneity through a single-step Phenyl Sepharose chromatography. The enzyme exhibited an optimal activity at 70°C and at pH 4.0-4.5, and a very high kinetic efficiency toward a xyloside substrate. AnBX demonstrated an exo-type activity with retention of the ß-configuration, and a synergistic action with xylanase in hydrolysis of beechwood xylan. This study provides comprehensive data on characterization of a glycoside hydrolase family 3 ß-xylosidase that have not been determined in any prior investigations. Our results suggested that AnBX may be useful for degradation of lignocellulosic biomass in bioethanol production, pulp bleaching process and beverage industry.


Subject(s)
Aspergillus niger/enzymology , Fungal Proteins/metabolism , Recombinant Proteins/metabolism , Xylosidases/metabolism , Cloning, Molecular , Codon/genetics , Fungal Proteins/chemistry , Fungal Proteins/genetics , Fungal Proteins/isolation & purification , Hydrolysis , Kinetics , Recombinant Proteins/chemistry , Recombinant Proteins/genetics , Recombinant Proteins/isolation & purification , Xylans , Xylosidases/chemistry , Xylosidases/genetics , Xylosidases/isolation & purification
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