Hellwig S, Emde F, Raven N P, Henke M, van Der Logt P, Fischer R
Institut für Biologie I (Botanik/Molekulargenetik), RWTH Aachen, 52074 Aachen, Germany.
Biotechnol Bioeng. 2001 Aug 20;74(4):344-52.
In the last few years the Pichia pastoris expression system has been gaining more and more interest for the expression of recombinant proteins. Many groups have employed fermentation technology in their investigations because the system is fairly easy to scale up and suitable for the production in the milligram to gram range. A large number of heterologous proteins from different sources has been expressed, but the fermentation process technology has been investigated to a lesser extent. A large number of fermentations are carried out in standard bioreactors that may be insufficiently equipped to meet the demands of high-cell-density fermentations of methylotrophic yeasts. In particular, the lack of on-line methanol analysis leads to fermentation protocols that may impair the optimal expression of the desired products. We have used a commercially available methanol sensor to investigate in detail the effects of supplementary glycerol feeding while maintaining a constant methanol concentration during the induction of a Mut(+) strain of Pichia pastoris. Specific glycerol feed rates in the range of 38-4.2 mg. g(-1). h(-1) (mg glycerol per gram fresh weight per hour) were investigated. Expression of the recombinant scFv antibody fragment was only observed at specific feed rates below 6 mg. g(-1). h(-1). At low specific feed rates, growth was even lower than with methanol as the sole carbon source and the harvest expression level of the scFv was only half of that found in the control fermentation. These results show that glycerol inhibits expression driven by the AOX1 promoter even at extremely limited availability and demonstrate the benefits of on-line methanol control in Pichia fermentation research.
在过去几年中,毕赤酵母表达系统在重组蛋白表达方面越来越受到关注。许多研究小组在其研究中采用了发酵技术,因为该系统相当易于扩大规模,适合毫克到克级别的生产。已经表达了大量来自不同来源的异源蛋白,但对发酵工艺技术的研究程度较低。大量发酵是在标准生物反应器中进行的,这些反应器可能配备不足,无法满足甲基营养型酵母高细胞密度发酵的需求。特别是,缺乏在线甲醇分析导致发酵方案可能会损害所需产物的最佳表达。我们使用了一种市售的甲醇传感器,详细研究了在诱导毕赤酵母Mut(+)菌株过程中补充甘油进料同时保持甲醇浓度恒定的影响。研究了38 - 4.2毫克·克⁻¹·小时⁻¹(每克鲜重每小时的甘油毫克数)范围内的特定甘油进料速率。仅在低于6毫克·克⁻¹·小时⁻¹的特定进料速率下观察到重组单链抗体片段(scFv)的表达。在低特定进料速率下,生长甚至低于以甲醇作为唯一碳源时的生长,并且scFv的收获表达水平仅为对照发酵中发现水平的一半。这些结果表明,即使在可用性极其有限的情况下,甘油也会抑制由AOX1启动子驱动的表达,并证明了在线甲醇控制在毕赤酵母发酵研究中的益处。