Panda A K, Khan R H, Rao K B, Totey S M
National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi, India.
J Biotechnol. 1999 Oct 8;75(2-3):161-72. doi: 10.1016/s0168-1656(99)00157-1.
A process for maximizing the volumetric productivity of recombinant ovine growth hormone (r-oGH) expressed in Escherichia coli during high cell density fermentation process has been devised. Kinetics of r-oGH expression as inclusion bodies and its effect on specific growth rates of E. coli cells were monitored during batch fermentation process. It was observed that during r-oGH expression in E. coli, the specific growth rate of the culture became an intrinsic property of the cells which reduced in a programmed manner upon induction. Nutrient feeding during protein expression phase of the fed-batch process was designed according to the reduction in specific growth rate of the culture. By feeding yeast extract along with glucose during fed-batch operation, high cell growth with very little accumulation of acetic acid was observed. Use of yeast extract helped in maintaining high specific cellular protein yield which resulted in high volumetric productivity of r-oGH. In 16 h of fed-batch fermentation, 3.2 g l-1 of r-oGH were produced at a cell OD of 124. This is the highest concentration of r-oGH reported to date using E. coli expression system. The volumetric productivity of r-oGH was 0.2 g l-1 h-1, which is also the highest value reported for any therapeutic protein using IPTG inducible expression system in a single stage fed-batch process.
已设计出一种在高密度发酵过程中使大肠杆菌中表达的重组绵羊生长激素(r-oGH)的体积生产率最大化的方法。在分批发酵过程中监测了r-oGH作为包涵体表达的动力学及其对大肠杆菌细胞比生长速率的影响。观察到在大肠杆菌中表达r-oGH期间,培养物的比生长速率成为细胞的固有特性,在诱导后以程序化方式降低。补料分批过程中蛋白质表达阶段的营养物补料根据培养物比生长速率的降低进行设计。通过在补料分批操作期间同时补加酵母提取物和葡萄糖,观察到细胞大量生长且乙酸积累极少。使用酵母提取物有助于维持高的比细胞蛋白产量,从而导致r-oGH的高体积生产率。在16小时的补料分批发酵中,细胞OD为124时产生了3.2 g l-1的r-oGH。这是迄今为止使用大肠杆菌表达系统报道的r-oGH的最高浓度。r-oGH的体积生产率为0.2 g l-1 h-1,这也是在单阶段补料分批过程中使用IPTG诱导表达系统对任何治疗性蛋白质报道的最高值。