化学
木糖
木聚糖
木聚糖酶
碱金属
重组DNA
生物化学
基质(水族馆)
多糖
发酵
酶
有机化学
生物
生态学
基因
作者
Fenghua Wang,Xiuqi Ge,Zhaoting Yuan,Xue Zhang,Xiuxiu Chu,Fuping Lu,Yihan Liu
标识
DOI:10.1016/j.bioorg.2022.105887
摘要
Nowadays, alkali-tolerant β-xylosidases and their molecular mechanism of pH adaptability have been poorly studied. Here, a novel GH43 β-xylosidase (XYLO) was isolated from Bacillus clausii TCCC 11004, and the recombinant β-xylosidase (rXYLO) was most active at pH 8.0 and stable in a broad pH range (7.0-11.0), exhibiting superior alkali tolerance. Molecular dynamics simulation indicated that XYLO showed a notable overall structural stability and an enlargement of substrate binding pocket under alkaline condition, resulting in the formation of a new hydrogen bond between substrate and Arg286 of XYLO, and the tight binding played a key role in improving the XYLO activity with the increasing pH. Moreover, rXYLO with an endo-xylanase resulted in high xylose yields by hydrolyzing alkali-extracted xylan from agricultural wastes. This work would provide an alkali-tolerant β-xylosidase, enhance the understanding for the relationship of structure and activity adapted to the high-alkaline environment, and promote its application in xylose production.
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