Lin Y-H, Hsiao H-C, Chou C P
Department of Chemical Engineering, Feng Chia University, Taichung, Taiwan, ROC.
Biotechnol Prog. 2002 Nov-Dec;18(6):1458-61. doi: 10.1021/bp020093j.
Using fed-batch operation for high-cell-density cultivation, efforts are frequently made for optimization of culture parameters, particularly feeding strategy. The current study also emphasized the importance of selecting strains for the production of recombinant proteins in high-cell-density cultures. With Escherichia coli penicillin acylase (PAC) as a target protein, the host/vector system of MDdeltaP7 harboring pTrcKnPAC2902 and pKS12 was designed for optimization of fed-batch cultivation for recombinant protein production. The host, MDdeltaP7, potentially had a high translational and periplasmic processing efficiency for pac expression. On the other hand, the vector, pTrcKnPAC2902, was genetically constructed for pac overexpression. Coexistence of the other vector, pKS12, significantly enhanced PAC production by improving cell physiology and reducing the amount of inclusion body formation upon pac overexpression. An extremely high volumetric PAC activity at 37,500 U/L was obtained with the use of the developed host/vector system under optimum fed-batch culture conditions.
采用补料分批培养进行高细胞密度培养时,人们常常致力于优化培养参数,尤其是补料策略。当前的研究还强调了在高细胞密度培养中选择用于生产重组蛋白的菌株的重要性。以大肠杆菌青霉素酰化酶(PAC)作为目标蛋白,设计了携带pTrcKnPAC2902和pKS12的MDdeltaP7宿主/载体系统,以优化用于重组蛋白生产的补料分批培养。宿主MDdeltaP7可能对pac表达具有较高的翻译和周质加工效率。另一方面,载体pTrcKnPAC2902经基因构建用于pac的过表达。另一个载体pKS12的共存通过改善细胞生理状态并减少pac过表达时包涵体形成的量,显著提高了PAC的产量。在最佳补料分批培养条件下,使用所开发的宿主/载体系统获得了37,500 U/L的极高体积PAC活性。