Maleki Ahmad, Roohvand Farzin, Tajerzadeh Hosnieh, Khanahmad Hossein, Nobari Maryam B, Beiruti Ahmad, Najafabadi Abdolhossein Rouholamini
Faculty of Pharmacy, Tehran University of Medical Science, Tehran, Iran ; Research and Production Plant, Pasteur Institute of Iran, Karaj, Iran.
Avicenna J Med Biotechnol. 2010 Oct;2(4):197-206.
To accomplish the worldwide demand for recombinant human erythropoietin (rHuEpo) as a therapeutic, application of cost-efficient expression system of methylotrophic yeast Pichia pastoris (P. pastoris) rather than mammalian cells is indispensable. Herein, a report on high levels secreted-expression of Pichia-derived rHuEpo by batch fermentation in a pH stabilized format is presented. The full length cDNA of rHuEpo was inserted into pPICZαA vector under control of AOX1 promoter, downstream of the secretion-α-factor and electroporated into P. pastoris strain X33. The highest expression transformant was selected by screening among the colonies surviving high concentration of Zeocin (1.0 mg/ml), followed by comparative small scale expression analysis by ELISA. Stabilization of pH around 6.0 by adding phosphoric acid into the culture media during induction period, improved the yield of expression to 150 mg/l of the media. Single-step Nickel-affinity chromatography was employed for purification of rHuEpo-6xHis to 80% purity. Analyses by SDS-PAGE, Western blot and N-terminal protein sequencing confirmed the authenticity of the 33 kDa expressed rHuEpo with a native N-terminal indicating the proper cleavage of secretion-signal. Results of this study, further confirmed the possibility of employing methylotrophic yeast for scaled up production aims of rHuEpo as a cost-efficient expression system when provided evidence for higher expression yields through application of pH-controlled systems.
为满足全球对重组人促红细胞生成素(rHuEpo)作为一种治疗药物的需求,应用甲基营养型酵母毕赤酵母(P. pastoris)的高效表达系统而非哺乳动物细胞是必不可少的。本文介绍了一份关于在pH稳定条件下通过分批发酵实现毕赤酵母来源的rHuEpo高水平分泌表达的报告。将rHuEpo的全长cDNA插入到受AOX1启动子控制、位于分泌型α因子下游的pPICZαA载体中,并电穿孔导入毕赤酵母菌株X33。通过在高浓度博来霉素(1.0 mg/ml)存活的菌落中筛选,选出最高表达转化体,随后通过ELISA进行小规模表达比较分析。在诱导期向培养基中添加磷酸将pH稳定在6.0左右,使表达产量提高到每升培养基150 mg。采用一步镍亲和层析法将rHuEpo-6xHis纯化至80%纯度。SDS-PAGE、Western印迹和N端蛋白质测序分析证实了表达的33 kDa rHuEpo的真实性,其天然N端表明分泌信号的正确切割。本研究结果进一步证实了利用甲基营养型酵母作为一种高效表达系统进行rHuEpo规模化生产的可能性,前提是通过应用pH控制系统提供更高表达产量的证据。