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High-Level Expression of Bacillus naganoensis Pullulanase from Recombinant Escherichia coli with Auto-Induction: Effect of lac Operator

机译:自动诱导重组大肠杆菌高表达长芽孢杆菌支链淀粉酶:lac操纵子的作用

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摘要

Pullulanase plays an important role in specific hydrolysis of branch points in amylopectin and is generally employed as an important enzyme in starch-processing industry. So far, however, the production level of pullulanase is still somewhat low from wide-type strains and even heterologous expression systems. Here the gene encoding Bacillus naganoensis pullulanase was amplified and cloned. For expression of the protein, two recombinant systems, Escherichia coli BL21(DE3)/pET-20b(+)-pul and E. coli BL21(DE3)/pET-22b(+)-pul, were constructed, both bearing T7 promoter and signal peptide sequence, but different in the existance of lac operator and lacI gene encoding lac repressor. Recombinant pullulanase was initially expressed with the activity of up to 14 U/mL by E. coli BL21(DE3)/pET-20b(+)-pul with IPTG induction in LB medium, but its expression level reduced continually with the extension of cryopreservation time and basal expression was observed. However, E. coli BL21(DE3)/pET-22b(+)-pul , involving lac operator downstream of T7 promoter to regulate foreign gene transcription, exhibited pullulanase activity consistently without detected basal expression. By investigating the effect of lac operator, basal expression of foreign protein was found to cause expression instability and negative effect on production of target protein. Thus double-repression strategy was proposed that lac operators in both chromosome and plasmid were bound with lac repressor to repress T7 RNA polymerase synthesis and target protein expression before induction. Consequently, the total activity of pullulanase was remarkably increased to 580 U/mL with auto-induction by lac operator-involved E. coli BL21(DE3)/pET-22b(+)-pul. When adding 0.6% glycine in culture, the extracellular production of pullulanase was significantly improved with the extracellular activity of 502 U/mL, which is a relatively higher level achieved to date for extracellular production of pullulanase. The successful expression of pullulanase with lac operator regulation provides an efficient way for enhancement of expression stability and hence high-level production of target protein in recombinant E. coli.
机译:支链淀粉酶在支链淀粉中分支点的特异性水解中起重要作用,并且通常用作淀粉加工工业中的重要酶。然而,到目前为止,从宽型菌株甚至异源表达系统来看,支链淀粉酶的生产水平仍然较低。在这里,编码并编码了长野芽孢杆菌支链淀粉酶的编码基因。为了表达该蛋白质,构建了两个重组系统,即大肠杆菌BL21(DE3)/ pET-20b(+)-pul和大肠杆菌BL21(DE3)/ pET-22b(+)-pul,两者均带有T7启动子。和信号肽序列,但在lac操纵子和编码lac阻遏物的lacI基因的存在上有所不同。重组支链淀粉酶最初在LB培养基中通过IPTG诱导被大肠杆菌BL21(DE3)/ pET-20b(+)-pul表达,其活性高达14 U / mL,但随着冷冻保存时间的延长,其表达水平不断降低。观察时间和基础表达。但是,大肠杆菌BL21(DE3)/ pET-22b(+)-pul,涉及T7启动子下游的lac操纵子来调节外源基因转录,始终显示出支链淀粉酶活性,而未检测到基础表达。通过研究lac操纵子的作用,发现外源蛋白的基础表达会引起表达不稳定,并对靶蛋白的产生产生负面影响。因此提出了双重抑制策略,即在染色体和质粒上的lac操纵子都与lac阻遏物结合,以在诱导前抑制T7 RNA聚合酶的合成和靶蛋白的表达。因此,由 lac 操纵子参与的 E自动诱导,支链淀粉酶的总活性显着增加至580 U / mL。大肠杆菌 BL21(DE3)/ pET-22b(+)- pul 。当在培养物中添加0.6%甘氨酸时,支链淀粉酶的胞外生产显着提高,细胞外活性为502 U / mL,这是迄今为止胞外生产支链淀粉酶的相对较高水平。带有 lac 操纵子调控的支链淀粉酶的成功表达为增强表达稳定性并因此在重组 E中高水平生产目标蛋白提供了有效途径。大肠杆菌

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