Department of Chemical, Biological and Environmental Engineering, Universitat Autònoma de Barcelona, 08193, Bellaterra (Cerdanyola del Vallès), Spain.
Solutions for Natural Resources and Environment, VTT Technical Research Centre of Finland Ltd, Tietotie 2, Espoo, Finland.
Microb Cell Fact. 2021 Mar 23;20(1):74. doi: 10.1186/s12934-021-01564-9.
Pichia pastoris is a powerful and broadly used host for recombinant protein production (RPP), where past bioprocess performance has often been directed with the methanol regulated AOX1 promoter (P), and the constitutive GAP promoter (P). Since promoters play a crucial role in an expression system and the bioprocess efficiency, innovative alternatives are constantly developed and implemented. Here, a thorough comparative kinetic characterization of two expression systems based on the commercial PDF and UPP promoters (P, P) was first conducted in chemostat cultures. Most promising conditions were subsequently tested in fed-batch cultivations. These new alternatives were compared with the classical strong promoter P, using the Candida antarctica lipase B (CalB) as model protein for expression system performance.
Both the P and P-based expression systems outperformed similar P-based expression in chemostat cultivations, reaching ninefold higher specific production rates (q). CALB transcription levels were drastically higher when employing the novel expression systems. This higher expression was also correlated with a marked upregulation of unfolded protein response (UPR) related genes, likely from an increased protein burden in the endoplasmic reticulum (ER). Based on the chemostat results obtained, best culture strategies for both P and P expression systems were also successfully implemented in 15 L fed-batch cultivations where q and product to biomass yield (Y*) values were similar than those obtained in chemostat cultivations.
As an outcome of the macrokinetic characterization presented, the novel P and P were observed to offer much higher efficiency for CalB production than the widely used P-based methanol-free alternative. Thus, both systems arise as highly productive alternatives for P. pastoris-based RPP bioprocesses. Furthermore, the different expression regulation patterns observed indicate the level of gene expression can be adjusted, or tuned, which is interesting when using Pichia pastoris as a cell factory for different products of interest.
毕赤酵母是一种强大且广泛用于重组蛋白生产(RPP)的宿主,过去的生物工艺性能通常是通过甲醇调控的 AOX1 启动子(P)和组成型 GAP 启动子(P)来指导的。由于启动子在表达系统和生物工艺效率中起着至关重要的作用,因此不断开发和实施创新的替代方案。在这里,首次在恒化器培养物中对基于商业 PDF 和 UPP 启动子(P、P)的两种表达系统进行了全面的动力学比较。随后,在分批补料培养中测试了最有前途的条件。这些新的替代方案与经典强启动子 P 进行了比较,使用南极假丝酵母脂肪酶 B(CalB)作为表达系统性能的模型蛋白。
基于 P 和 P 的表达系统在恒化器培养中均优于类似的基于 P 的表达系统,达到了九倍的更高比生产速率(q)。当使用新型表达系统时,CalB 的转录水平急剧升高。这种更高的表达也与未折叠蛋白反应(UPR)相关基因的明显上调相关,这可能是由于内质网(ER)中的蛋白质负担增加。基于在恒化器中获得的结果,还成功地在 15 L 分批补料培养中实施了适用于 P 和 P 表达系统的最佳培养策略,其中 q 和产物与生物质产率(Y*)的值与在恒化器培养中获得的值相似。
作为呈现的宏观动力学特征的结果,与广泛使用的无甲醇基于 P 的替代方案相比,新型 P 和 P 被观察到为 CalB 生产提供了更高的效率。因此,这两种系统都为基于 P. pastoris 的 RPP 生物工艺提供了高效的替代方案。此外,观察到的不同表达调控模式表明基因表达水平可以进行调整或微调,这在使用毕赤酵母作为不同感兴趣产品的细胞工厂时很有趣。