Xylan-specific carbohydrate-binding module belonging to family 6 enhances the catalytic performance of a GH11 endo-xylanase

被引:31
作者
Hoffmam, Zaira B. [1 ]
Zanphorlin, Leticia M. [1 ]
Cota, Junio [1 ]
Diogo, Jose A. [1 ]
Almeida, Gabriela B. [1 ]
Damasio, Andre R. L. [1 ]
Squina, Fabio [1 ]
Murakami, Mario T. [2 ]
Ruller, Roberto [1 ]
机构
[1] Ctr Nacl Pesquisa Energia & Mat, Lab Nacl Ciencia & Tecnol Bioetanol CTBE, Sao Paulo, Brazil
[2] Ctr Nacl Pesquisa Energia & Mat, Lab Nacl Biociencias LNBio, Sao Paulo, Brazil
基金
巴西圣保罗研究基金会;
关键词
CHIMERIC CELLULASES; ETHANOL-PRODUCTION; SUGARCANE BAGASSE; BIOMASS; HYDROLYSIS; CELLULOSE; SACCHARIFICATION; CLASSIFICATION; DECONSTRUCTION; CONSTRUCTION;
D O I
10.1016/j.nbt.2016.02.006
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Xylanases catalyze the hydrolysis of beta-1,4-linked xylosyl moieties from xylan chains, one of the most abundant hemicellulosic polysaccharides found in plant cell walls. These enzymes can exist either as single catalytic domains or as modular proteins composed of one or more carbohydrate-binding modules (CBMs) appended to the catalytic core. However, the molecular mechanisms governing the synergistic effects between catalytic domains and their CBMs are not fully understood. Thus, the goal of this study was to evaluate the functional effects of the fusion of a CBM belonging to family 6, which exhibits high affinity to xylan, with the GH11 xylanase from Bacillus subtilis, which does not have a CBM in its wild-type form. The wild-type enzyme (BsXyl11) and the chimeric protein (BsXyl11-CBM6) were heterologously produced in Escherichia coli and purified to homogeneity for biochemical characterization. The molecular fusion did not alter the pH and temperature dependence, but kinetic data revealed an increase of 65% in the catalytic efficiency of the chimeric enzyme. Furthermore, the BsXyl11-CBM6 chimera was used to supplement the commercial cocktail Accellerase (R) 1500 and improved the reducing sugar release by 17% from pretreated sugarcane bagasse. These results indicate that CBM6 can be used as a molecular tool to enhance the catalytic performance of endo-xylanases (GH11) and provide a new strategy for the development of optimized biocatalysts for biotechnological applications.
引用
收藏
页码:467 / 472
页数:6
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