S
Sabriye Canakci
Researcher at Karadeniz Technical University
Publications - 56
Citations - 710
Sabriye Canakci is an academic researcher from Karadeniz Technical University. The author has contributed to research in topics: Anoxybacillus & Anoxybacillus gonensis. The author has an hindex of 15, co-authored 49 publications receiving 577 citations.
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Characterization of a thermoalkalophilic esterase from a novel thermophilic bacterium, Anoxybacillus gonensis G2
TL;DR: The thermal and pH stability profiles for the enzyme showed that the thermophilic bacterium A. gonensis G2 secretes an extracellular thermoalkalophilic PHB depolymerase active at 60 degrees C, and stable at this temperature for 120 min at pH 7.5 and for 24 h at pH7.5 range at 4 degrees C by retaining over 75% of its initial activities.
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Determination and characterization of thermostable esterolytic activity from a novel thermophilic bacterium Anoxybacillus gonensis A4.
TL;DR: A novel hot spring thermophile, Anoxybacillus gonensis A4 was investigated in terms of capability of tributyrin degradation and characterization of its thermostable esterase activity by the hydrolysis of p-nitrophenyl butyrate (PNPB).
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Cloning, purification, and characterization of a thermostable α-l-arabinofuranosidase from Anoxybacillus kestanbolensis AC26Sari
TL;DR: Findings suggest that AbfAC26Sari is an exo-acting enzyme that has no apparent requirement of metal ions for activity and its activity was strongly inhibited by 1 mM Cu2+ and Hg2+.
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Purification and characterization of a highly thermostable α-l-Arabinofuranosidase from Geobacillus caldoxylolyticus TK4
TL;DR: Analysis of its amino acid sequence revealed significant homology and conservation of different catalytic residues with α-l-arabinofuranosidases belonging to family 51 of the glycoside hydrolases, suggesting that AbfATK4 is an exo-acting enzyme.
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Biochemical characterization of a novel glucose isomerase from Anoxybacillus gonensis G2T that displays a high level of activity and thermal stability
TL;DR: The results reported here are indicative of a new GI with desirable kinetics and stability parameters for the efficient production of HFCS at industrial scale.