Liu Ru-Shi, He Zhi-Qiang, Li Shao-Wei, Yang Kun-Yu, Xian Yang-Ling, Pang Shu-Qiang, Zhang Jun, Li Yi-Min, Xia Ning-Shao
The Key Laboratory of the Ministry of Education for Cell Biology and Tumor Cell Engineering, Xiamen 361005, China.
Sheng Wu Gong Cheng Xue Bao. 2004 May;20(3):450-5.
Production of Hepatitis E Virus capsid protein by high cell density culture in recombinant E. coli has been studied in 10L and 30L fermentors. The effects of different factors on growth and producing recombinant protein of E. coli have been studied by batch culture, such as different media, the ratio of phosphate and Magnesium sulfate. Comparison of fermentation performance for recombinant E. coli in different fed-methods culture has been investigated by fed-batch culture. The effects of inducing at different stages of growth and time of inducing on growth and producing recombinant protein, also obtained by fed-batch culture. At last, the solubility of inclusion body in different urea concentrations also has been obtained by fed-batch culture. The results show that the concentration of phosphate and Magnesium sulfate in the optimal media is 80mmol/L and 20mmol/L in batch culture respectively, that induction with 1.0mmol/L IPTG at mid log phase (about 45 OD at 600nm) is suitable for growth and recombinant protein expression, the cells were approaching stationary growth phase and the maximum cell OD at 600nm of 80 was achieved in 5h of fed-batch culture, and the expression level is 29.74%. The results also indicate that the solubility of inclusion body in 4mol/L urea solution induced at 37 degrees C reaches 14mg/mL, over 80% inclusion body was resolved. The culture process achieved in 10L fermentor could be successfully scaled up to 30L fenmentor with good reproducibility.
已在10升和30升发酵罐中研究了通过重组大肠杆菌中的高细胞密度培养生产戊型肝炎病毒衣壳蛋白。通过分批培养研究了不同因素对大肠杆菌生长和重组蛋白生产的影响,例如不同的培养基、磷酸盐和硫酸镁的比例。通过补料分批培养研究了重组大肠杆菌在不同补料方法培养中的发酵性能比较。通过补料分批培养还获得了在生长的不同阶段诱导以及诱导时间对生长和重组蛋白生产的影响。最后,通过补料分批培养还获得了包涵体在不同尿素浓度下的溶解度。结果表明,在分批培养中,最佳培养基中磷酸盐和硫酸镁的浓度分别为80mmol/L和20mmol/L,在对数中期(600nm处约45OD)用1.0mmol/L IPTG诱导适合生长和重组蛋白表达,在补料分批培养5小时后细胞接近稳定生长期,600nm处的最大细胞OD达到80,表达水平为29.74%。结果还表明,在37℃用4mol/L尿素溶液诱导时包涵体的溶解度达到14mg/mL,超过80%的包涵体被溶解。在10升发酵罐中实现的培养过程可以成功放大到30升发酵罐,具有良好的重现性。