枯草芽孢杆菌
分泌物
地衣芽孢杆菌
操纵子
信号肽
发起人
麦芽糖
化学
甘露聚糖
刺槐豆胶
酶
生物化学
发酵
拉伤
基因
生物
基因表达
重组DNA
细菌
突变体
多糖
黄原胶
流变学
材料科学
复合材料
解剖
遗传学
作者
Yafeng Song,Gang Fu,Huina Dong,Jianjun Li,Yuguang Du,Dawei Zhang
标识
DOI:10.1021/acs.jafc.6b05528
摘要
The manno endo-1,4-mannosidase (β-mannanase, EC. 3.2.1.78) catalyzes the random hydrolysis of internal (1 → 4)-β-mannosidic linkages in the mannan polymers. A codon optimized β-mannanase gene from Bacillus licheniformis DSM13 was expressed in Bacillus subtilis. When four Sec-dependent and two Tat-dependent signal peptide sequences cloned from B. subtilis were placed upstream of the target gene, the highest activity of β-mannanase was observed using SPlipA as a signal peptide. Then a 1.25-fold activity of β-mannanase was obtained when another copy of groESL operon was inserted into the genome of host strain. Finally, five different promoters were separately used to enhance the synthesis of the target protein. The results showed that promoter Pmglv, a modified maltose-inducible promoter, significantly elevated the production of β-mannanase. After 72 h of flask fermentation, the enzyme activity of β-mannanase in the supernatant when using locust bean gum as substrate reached 2207 U/mL. This work provided a promising β-mannanase production strain in industrial application.
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