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Decrease of UPR- and ERAD-related proteins in Pichia pastoris during methanol-induced secretory insulin precursor production in controlled fed-batch cultures

机译:受控补料分批培养中甲醇诱导的分泌型胰岛素前体生产过程中巴斯德毕赤酵母中UPR和ERAD相关蛋白的减少

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摘要

Background: Pichia pastoris is a popular yeast preferably employed for secretory protein production. Secretion is not always efficient and endoplasmic retention of proteins with aberrant folding properties, or when produced at exaggerated rates, can occur. In these cases production usually leads to an unfolded protein response (UPR) and the induction of the endoplasmic reticulum associated degradation (ERAD). P. pastoris is nowadays also an established host for secretory insulin precursor (IP) production, though little is known about the impact of IP production on the host cell physiology, in particular under industrially relevant production conditions. Here, we evaluate the cellular response to aox1 promoter-controlled, secretory IP production in controlled fed-batch processes using a proteome profiling approach.Results: Cells were first grown in a batch procedure using a defined medium with a high glycerol concentration. After glycerol depletion IP production was initiated by methanol addition which was kept constant through continuous methanol feeding. The most prominent changes of the intracellular proteome after the onset of methanol feeding were related to the enzymes of central carbon metabolism. In particular, the enzymes of the methanol dissimilatory pathway - virtually absent in the glycerol batch phase - dominated the proteome during the methanol fed-batch phase. Unexpectedly, a strong decrease of UPR and ERAD related proteins was also observed during methanol-induced IP production. Compared to non-producing control strains grown under identical conditions the UPR down-regulation was less pronounced indicating that IP production elicits a detectable but non prominent UPR response which is repressed by the general culture condition-dependent UPR down-regulation after the shift from glycerol to methanol.Conclusions: The passage of IP through the secretory pathway using an optimized IP vector and growing the strain at fed-batch conditions with a high initial glycerol concentration does not impose a significant burden on the secretory machinery even under conditions leading to an extracellular accumulation of ~ 3 g L-1 IP. The glycerol batch pre-induction culture conditions are associated with a high constitutive - recombinant protein production independent - induction of the UPR and ERAD pathways probably preconditioning the cells for effective IP secretion in the methanol fed-batch phase.
机译:背景:巴斯德毕赤酵母是一种流行的酵母,优选用于分泌蛋白的生产。分泌并不总是有效的,具有异常折叠特性的蛋白质或以夸大的速率产生时,会发生内质保留。在这些情况下,生产通常会导致未折叠的蛋白反应(UPR)和内质网相关降解(ERAD)的诱导。如今,P。pastoris还是分泌型胰岛素前体(IP)生产的公认宿主,尽管对IP生产对宿主细胞生理的影响知之甚少,尤其是在工业相关生产条件下。在这里,我们使用蛋白质组图谱分析方法评估了补料分批进料过程中aox1启动子控制的分泌IP生产对细胞的反应。甘油耗竭后,通过添加甲醇开始IP生产,通过连续进料甲醇使IP保持恒定。甲醇进食开始后细胞内蛋白质组最显着的变化与中央碳代谢的酶有关。特别是,在甲醇分批补料阶段,甘油歧化阶段实际上不存在的甲醇异化途径的酶占主导地位。出乎意料的是,在甲醇诱导的IP生产过程中,还观察到UPR和ERAD相关蛋白的大量减少。与在相同条件下生长的非生产对照菌株相比,UPR下调不太明显,这表明IP生产引发了可检测但不显着的UPR反应,该反应在从甘油转移后受到一般培养条件依赖性UPR下调的抑制结论:使用优化的IP载体使IP通过分泌途径,并在补料分批条件下以较高的初始甘油浓度使菌株生长,即使在导致细胞外的条件下,也不会对分泌机制造成重大负担积累〜3 g L-1 IP。甘油分批诱导前培养条件与UPR和ERAD途径的高组成型-独立于重组蛋白生产-的诱导有关,可能预适应了细胞在甲醇补料分批阶段的有效IP分泌。

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