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烟曲霉壳聚糖酶在大肠杆菌中的胞外表达改善及高细胞密度补料分批发酵

Improved extracellular expression and high-cell-density fed-batch fermentation of chitosanase from Aspergillus Fumigatus in Escherichia coli.

作者信息

Huang Liang, Wang Qinhong, Jiang Sijing, Zhou Yuling, Zhang Guimin, Ma Yanhe

机构信息

Hubei Collaborative Innovation Center for Green Transformation of Bio-Resources, The College of Life Science, Hubei University, Wuhan, 430062, People's Republic of China.

Tianjin Institutes of Industrial Biotechnology, Chinese Academy of Science, Tianjin, 300308, People's Republic of China.

出版信息

Bioprocess Biosyst Eng. 2016 Nov;39(11):1679-87. doi: 10.1007/s00449-016-1643-4. Epub 2016 Jul 1.

Abstract

Chitosanase (CSN) from Aspergillus fumigatus has good thermal stability, wide pH range duration, and effective hydrolysis for chitosan. Inhere, CSN was successfully expressed in Escherichia coli followed by extracellular secretion under the guidance of an N-terminal signal peptide PelB, which effectively prompted its secretion out of E. coli cells. To facilitate its later purification, N-terminal or C-terminal 6xHis epitope tag was added to the PelB-CSN protein complex. Our results indicated that PelB-CSN without 6xHis-tag (PelB-CSN) or with N-terminal 6xHis-tag (PelB-CSN-N) can both be effectively secreted into the medium, while CSN with 6xHis-tag anchored at C-terminus was expressed as inclusion bodies. Process optimization strategies were further developed to improve the secretion efficiency of recombinant PelB-CSN-N in E. coli. Under the induction of 10 g/L lactose in shake-flask culture, the extracellular activity of CSN reached 6015 U/mL at 25 °C in TB medium containing 1 % glycine. Moreover, a fed-batch fermentation strategy for high-cell-density cultivation was applied in a 5-L fermenter, increasing the extracellular CSN activity to 14,000 U/mL in 2-day fermentation with the optimal addition of lactose and glycine.

摘要

烟曲霉的壳聚糖酶(CSN)具有良好的热稳定性、较宽的pH作用范围以及对壳聚糖的有效水解能力。在此,CSN在N端信号肽PelB的引导下在大肠杆菌中成功表达并分泌到细胞外,这有效地促使其分泌出大肠杆菌细胞。为便于后续纯化,在PelB-CSN蛋白复合物上添加了N端或C端的6xHis表位标签。我们的结果表明,不含6xHis标签的PelB-CSN(PelB-CSN)或带有N端6xHis标签的PelB-CSN(PelB-CSN-N)均可有效分泌到培养基中,而C端锚定有6xHis标签的CSN则以包涵体形式表达。进一步制定了工艺优化策略以提高重组PelB-CSN-N在大肠杆菌中的分泌效率。在摇瓶培养中10 g/L乳糖的诱导下,在含有1%甘氨酸的TB培养基中,25℃时CSN的胞外活性达到6015 U/mL。此外,在5-L发酵罐中采用分批补料发酵策略进行高细胞密度培养,通过最佳添加乳糖和甘氨酸,在2天发酵过程中将胞外CSN活性提高到14,000 U/mL。

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