Adelantado Núria, Tarazona Pablo, Grillitsch Karlheinz, García-Ortega Xavier, Monforte Sergi, Valero Francisco, Feussner Ivo, Daum Günther, Ferrer Pau
Department of Chemical, Biological and Environmental Engineering, Escola d'Enginyeria, Universitat Autònoma de Barcelona, Bellaterra, 08193, Barcelona, Catalonia, Spain.
Evonik Nutrition & Care GmbH, Hanau, Germany.
Microb Cell Fact. 2017 May 19;16(1):86. doi: 10.1186/s12934-017-0699-4.
Cultivation of recombinant Pichia pastoris (Komagataella sp.) under hypoxic conditions has a strong positive effect on specific productivity when the glycolytic GAP promoter is used for recombinant protein expression, mainly due to upregulation of glycolytic conditions. In addition, transcriptomic analyses of hypoxic P. pastoris pointed out important regulation of lipid metabolism and unfolded protein response (UPR). Notably, UPR that plays a role in the regulation of lipid metabolism, amino acid metabolism and protein secretion, was found to be upregulated under hypoxia.
To improve our understanding of the interplay between lipid metabolism, UPR and protein secretion, the lipidome of a P. pastoris strain producing an antibody fragment was studied under hypoxic conditions. Furthermore, lipid composition analyses were combined with previously available transcriptomic datasets to further understand the impact of hypoxia on lipid metabolism. Chemostat cultures operated under glucose-limiting conditions under normoxic and hypoxic conditions were analyzed in terms of intra/extracellular product distribution and lipid composition. Integrated analysis of lipidome and transcriptome datasets allowed us to demonstrate an important remodeling of the lipid metabolism under limited oxygen availability. Additionally, cells with reduced amounts of ergosterol through fluconazole treatment were also included in the study to observe the impact on protein secretion and its lipid composition.
Our results show that cells adjust their membrane composition in response to oxygen limitation mainly by changing their sterol and sphingolipid composition. Although fluconazole treatment results a different lipidome profile than hypoxia, both conditions result in higher recombinant protein secretion levels.
当使用糖酵解途径的甘油醛-3-磷酸脱氢酶(GAP)启动子进行重组蛋白表达时,在低氧条件下培养重组巴斯德毕赤酵母(Komagataella属)对特定生产力具有强烈的积极影响,这主要归因于糖酵解条件的上调。此外,对低氧状态下的巴斯德毕赤酵母进行的转录组分析指出了脂质代谢和未折叠蛋白反应(UPR)的重要调控。值得注意的是,在脂质代谢、氨基酸代谢和蛋白质分泌调节中起作用的UPR在低氧条件下被发现上调。
为了更好地理解脂质代谢、UPR和蛋白质分泌之间的相互作用,对一株产生抗体片段的巴斯德毕赤酵母菌株在低氧条件下的脂质组进行了研究。此外,脂质组成分析与先前可用的转录组数据集相结合,以进一步了解低氧对脂质代谢的影响。对在常氧和低氧条件下葡萄糖限制条件下运行的恒化器培养物进行了细胞内/外产物分布和脂质组成分析。脂质组和转录组数据集的综合分析使我们能够证明在有限氧气供应下脂质代谢的重要重塑。此外,通过氟康唑处理使麦角固醇含量降低的细胞也被纳入研究,以观察其对蛋白质分泌及其脂质组成的影响。
我们的结果表明,细胞主要通过改变其固醇和鞘脂组成来响应氧限制,从而调整其膜组成。尽管氟康唑处理导致的脂质组谱与低氧不同,但两种条件都导致更高的重组蛋白分泌水平。