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通过调控碳同化作用来影响pac基因的表达,以提高大肠杆菌中青霉素酰化酶的产量。

Manipulation of carbon assimilation with respect to expression of the pac gene for improving production of penicillin acylase in Escherichia coli.

作者信息

Chou C P, Tseng J H, Lin M I, Lin H K, Yu C C

机构信息

Department of Chemical Engineering, Feng Chia University, Taichung, Taiwan, ROC.

出版信息

J Biotechnol. 1999 Mar 26;69(1):27-38. doi: 10.1016/s0168-1656(98)00202-8.

Abstract

A strategy of genetically manipulating carbon assimilation with respect to expression of the pac gene was employed for overproduction of recombinant penicillin acylase (PAC). Two expression plasmids of pCLL2902 and pCLL3201, which contain the pac coding region but differ in the pac regulatory region, were constructed for the production experiments. Expression of the pac gene was subjected to phenyl acetic acid (PAA-) induction and glucose catabolite repression for pCLL3201, whereas it was subjected to neither of the two transcriptional regulations for pCLL2902. The specific PAC activity for strains harboring pCLL2902 was significantly higher than that for strains harboring pCLL3201 due to an improved transcription efficiency. In addition, no inclusion bodies were observed upon production of PAC using the current expression systems. The results suggest that using the native pac promoter instead of a strong promoter such as tac for regulation is a feasible approach for production of PAC. The impact of the current expression systems is also significant from a process viewpoint since, using strains harboring pCLL2902, not only could glucose replace PAA as a carbon source of Escherichia coli cultures for production of PAC but also the volumetric PAC activity was highly improved.

摘要

为了过量生产重组青霉素酰化酶(PAC),采用了一种通过对pac基因表达进行基因操作来调控碳同化的策略。构建了两个含有pac编码区但pac调控区不同的表达质粒pCLL2902和pCLL3201用于生产实验。对于pCLL3201,pac基因的表达受苯乙酸(PAA -)诱导和葡萄糖分解代谢物阻遏,而对于pCLL2902,pac基因的表达不受这两种转录调控的影响。由于转录效率提高,携带pCLL2902的菌株的比PAC活性显著高于携带pCLL3201的菌株。此外,使用当前的表达系统生产PAC时未观察到包涵体。结果表明,使用天然pac启动子而非诸如tac等强启动子进行调控是生产PAC的一种可行方法。从工艺角度来看,当前的表达系统也具有重要意义,因为使用携带pCLL2902的菌株,不仅葡萄糖可以替代PAA作为大肠杆菌培养生产PAC的碳源,而且PAC的体积活性也得到了显著提高。

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