Characterization of a novel xylanase from Armillaria gemina and its immobilization onto SiO2 nanoparticles

被引:26
作者
Dhiman, Saurabh Sudha [1 ,2 ]
Kalyani, Dayanand [1 ]
Jagtap, Sujit Sadashiv [1 ]
Haw, Jung-Rim [2 ]
Kang, Yun Chan [1 ]
Lee, Jung-Kul [1 ,2 ]
机构
[1] Konkuk Univ, Dept Chem Engn, Seoul 143701, South Korea
[2] Konkuk Univ, Inst SK KU Biomat, Seoul 143701, South Korea
基金
新加坡国家研究基金会;
关键词
Denaturation constant; Enthalpy; Immobilization; SiO2; Xylanase; Xylooligosaccharide; PURIFICATION; STRAIN;
D O I
10.1007/s00253-012-4381-9
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Enhanced catalytic activities of different lignocellulases were obtained from Armillaria gemina under statistically optimized parameters using a jar fermenter. This strain showed maximum xylanase, endoglucanase, cellobiohydrolase, and beta-glucosidase activities of 1,270, 146, 34, and 15 U mL(-1), respectively. Purified A. gemina xylanase (AgXyl) has the highest catalytic efficiency (k (cat)/K (m) = 1,440 mg mL(-1) s(-1)) ever reported for any fungal xylanase, highlighting the significance of the current study. We covalently immobilized the crude xylanase preparation onto functionalized silicon oxide nanoparticles, achieving 117 % immobilization efficiency. Further immobilization caused a shift in the optimal pH and temperature, along with a fourfold improvement in the half-life of crude AgXyl. Immobilized AgXyl gave 37.8 % higher production of xylooligosaccharides compared to free enzyme. After 17 cycles, the immobilized enzyme retained 92 % of the original activity, demonstrating its potential for the synthesis of xylooligosaccharides in industrial applications.
引用
收藏
页码:1081 / 1091
页数:11
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