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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Constitutive expression of Yarrowia lipolytica lipase LIP2 in Pichia pastoris using GAP as promoter
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Constitutive expression of Yarrowia lipolytica lipase LIP2 in Pichia pastoris using GAP as promoter

机译:使用GAP作为启动子的解脂耶氏酵母脂肪酶LIP2在巴斯德毕赤酵母中的组成型表达

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A gene encoding Yarrowia lipolytica lipase LIP2 (YlLIP2) was cloned into a constitutive expression vector pGAPZαA and electrotransformed into the Pichia pastoris X- 33 strain. The high-yield clones obtained by high copy and enzyme activity screening were chosen as the host strains for shaking flask and fermentor culture. The results showed that glucose was the optimum carbon source for YlLIP2 production, and the maximum hydrolytic activity of recombinant YlLIP2 reached 1,315 U/ml under the flask culture at 28°C, pH 7.0, for 48 h. The fed-batch fermentation was carried out in 3- and 10-l bioreactors by continuously feeding glucose into the growing medium for achieving high cell density and YlLIP2 yields. The maximum hydrolytic activity of YlLIP2 and cell density obtained in the 3-l bioreactor were 10,300 U/ml and 116 g dry cell weight (DCW)/l, respectively. The peak hydrolytic activity of YlLIP2 and cell density were further improved in the 10-l fermentor where the values respectively attained were 13,500 U/ml and 120 g DCW/l. The total protein concentration in the supernatant reached 3.3 g/l and the cell viability remained approximately 99% after 80 h of culture. Furthermore, the recombinant YlLIP2 produced in P. pastoris pGAP and pAOX1 systems have similar content of sugar (about 12%) and biochemical characteristics. The above results suggest that the GAP promoter-derived expression system of P. pastoris is effective for the expression of YlLIP2 by high cell density culture and is probably an alternative to the conventional AOX1 promoter expression system in large-scale production of industrial lipases.
机译:将编码解脂耶氏酵母脂肪酶LIP2(Y1LIP2)的基因克隆到组成型表达载体pGAPZαA中,并电转化入巴斯德毕赤酵母X-33菌株中。选择通过高拷贝和酶活性筛选获得的高产克隆作为摇瓶和发酵罐培养的宿主菌株。结果表明,葡萄糖是生产YlLIP2的最佳碳源,在28℃,pH 7.0下培养48 h,重组YlLIP2的最大水解活性达到1315 U / ml。分批补料发酵是在3-l和10l生物反应器中进行的,方法是将葡萄糖连续喂入生长培养基中,以实现高细胞密度和YlLIP2产量。在3-l生物反应器中获得的YlLIP2的最大水解活性和细胞密度分别为10,300 U / ml和116 g干细胞重量(DCW)/ l。在10l发酵罐中,YlLIP2的峰值水解活性和细胞密度得到进一步改善,其中分别获得的值为13,500 U / ml和120 g DCW / l。培养80小时后,上清液中的总蛋白质浓度达到3.3g / l,细胞活力保持约99%。此外,在巴斯德毕赤酵母pGAP和pAOX1系统中产生的重组Y1LIP2具有相似的糖含量(约12%)和生化特性。以上结果表明,巴斯德毕赤酵母的GAP启动子衍生表达系统对于通过高细胞密度培养来表达YlLIP2是有效的,并且在工业化脂肪酶的大规模生产中可能是常规AOX1启动子表达系统的替代。

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