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1.
J Biosci Bioeng ; 125(3): 287-294, 2018 Mar.
Article in English | MEDLINE | ID: mdl-29153955

ABSTRACT

A GH 134 ß-1,4-mannanase SsGH134 from Streptomyces sp. NRRL B-24484 possesses a carbohydrate binding module (CBM) 10 and a glycoside hydrolase 134 domain at the N- and C-terminal regions, respectively. Recombinant SsGH134 expressed in Escherichia coli. SsGH134 was maximally active within a pH range of 4.0-6.5 and retained >80% of this maximum after 90 min at 30°C within a pH range of 3.0-10.0. The ß-1,4-mannanase activity of SsGH134 towards glucomannan was 30% of the maximal activity after an incubation at 100°C for 120 min, indicating that SsGH134 is pH-tolerant and thermostable ß-1,4-mannanase. SsGH134, SsGH134-ΔCBM10 (CBM10-linker-truncated SsGH134) and SsGH134-G34W (substitution of Gly34 to Trp) bound to microcrystalline cellulose, ß-mannan and chitin, regardless of the presence or absence of CBM10. These indicate that GH 134 domain strongly bind to the polysaccharides. Although deleting CBM10 increased the catalytic efficiency of the ß-1,4-mannanase, its disruption decreased the pH, solvent and detergent stability of SsGH134. These findings indicate that CBM10 inhibits the ß-1,4-mannanase activity of SsGH134, but it is involved in stabilizing its enzymatic activity within a neutral-to-alkaline pH range, and in the presence of various organic solvents and detergents. We believe that SsGH134 could be useful to a diverse range of industries.


Subject(s)
Protein Interaction Domains and Motifs , Streptomyces/enzymology , Streptomyces/genetics , beta-Mannosidase , Amino Acid Sequence , Carbohydrate Metabolism/genetics , Catalysis , Catalytic Domain/genetics , Cellulose/metabolism , Enzyme Stability , Hydrogen-Ion Concentration , Mannans/metabolism , Protein Binding , Protein Interaction Domains and Motifs/genetics , Recombinant Proteins/chemistry , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Sequence Alignment , Streptomyces/metabolism , beta-Mannosidase/chemistry , beta-Mannosidase/genetics , beta-Mannosidase/metabolism
2.
Appl Microbiol Biotechnol ; 101(8): 3237-3245, 2017 Apr.
Article in English | MEDLINE | ID: mdl-28105485

ABSTRACT

A ß-1,4-mannanase, termed AoMan134A, that belongs to the GH 134 family was identified in the filamentous fungus Aspergillus oryzae. Recombinant AoMan134A was expressed in Pichia pastoris, and the purified enzyme produced mannobiose, mannotriose, mannotetraose, and mannopentaose from galactose-free ß-mannan, with mannotriose being the predominant reaction product. The catalytic efficiency (k cat/K m ) of AoMan134A was 6.8-fold higher toward galactomannan from locust bean gum, than toward galactomannan from guar gum, but similar toward galactomannan from locust bean gum and glucomannan from konjac flour. After incubation at 70°C for 120 min, the activity of AoMan134A toward glucomannan decreased to 50% of the maximal activity at 30°C. AoMan134A retained 50% of its ß-1,4-mannanase activity after heating at 90°C for 30 min, indicating that AoMan134A is thermostable. Furthermore, AoMan134A was stable within a neutral-to-alkaline pH range, as well as exhibiting stability in the presence of a range of organic solvents, detergents, and metal ions. These findings suggest that AoMan134A could be useful in a diverse range of industries where conversion of ß-mannans is of prime importance.


Subject(s)
Aspergillus oryzae/enzymology , Glycoside Hydrolases/classification , beta-Mannosidase/chemistry , beta-Mannosidase/metabolism , Amino Acid Sequence , Aspergillus oryzae/genetics , Cloning, Molecular , Enzyme Stability , Galactans/metabolism , Galactose/analogs & derivatives , Glycoside Hydrolases/chemistry , Glycoside Hydrolases/genetics , Hydrogen-Ion Concentration , Industrial Microbiology , Kinetics , Mannans/chemistry , Mannans/metabolism , Plant Gums/metabolism , Substrate Specificity , Temperature , beta-Mannosidase/classification , beta-Mannosidase/genetics
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