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不同氧气条件下重组毕赤酵母的多层次研究。

A multi-level study of recombinant Pichia pastoris in different oxygen conditions.

作者信息

Baumann Kristin, Carnicer Marc, Dragosits Martin, Graf Alexandra B, Stadlmann Johannes, Jouhten Paula, Maaheimo Hannu, Gasser Brigitte, Albiol Joan, Mattanovich Diethard, Ferrer Pau

机构信息

Department of Chemical Engineering, Autonomous University of Barcelona, Spain.

出版信息

BMC Syst Biol. 2010 Oct 22;4:141. doi: 10.1186/1752-0509-4-141.

Abstract

BACKGROUND

Yeasts are attractive expression platforms for many recombinant proteins, and there is evidence for an important interrelation between the protein secretion machinery and environmental stresses. While adaptive responses to such stresses are extensively studied in Saccharomyces cerevisiae, little is known about their impact on the physiology of Pichia pastoris. We have recently reported a beneficial effect of hypoxia on recombinant Fab secretion in P. pastoris chemostat cultivations. As a consequence, a systems biology approach was used to comprehensively identify cellular adaptations to low oxygen availability and the additional burden of protein production. Gene expression profiling was combined with proteomic analyses and the 13C isotope labelling based experimental determination of metabolic fluxes in the central carbon metabolism.

RESULTS

The physiological adaptation of P. pastoris to hypoxia showed distinct traits in relation to the model yeast S. cerevisiae. There was a positive correlation between the transcriptomic, proteomic and metabolic fluxes adaptation of P. pastoris core metabolism to hypoxia, yielding clear evidence of a strong transcriptional regulation component of key pathways such as glycolysis, pentose phosphate pathway and TCA cycle. In addition, the adaptation to reduced oxygen revealed important changes in lipid metabolism, stress responses, as well as protein folding and trafficking.

CONCLUSIONS

This systems level study helped to understand the physiological adaptations of cellular mechanisms to low oxygen availability in a recombinant P. pastoris strain. Remarkably, the integration of data from three different levels allowed for the identification of differences in the regulation of the core metabolism between P. pastoris and S. cerevisiae. Detailed comparative analysis of the transcriptomic data also led to new insights into the gene expression profiles of several cellular processes that are not only susceptible to low oxygen concentrations, but might also contribute to enhanced protein secretion.

摘要

背景

酵母是许多重组蛋白颇具吸引力的表达平台,并且有证据表明蛋白质分泌机制与环境压力之间存在重要的相互关系。虽然在酿酒酵母中对这种压力的适应性反应已得到广泛研究,但关于其对毕赤酵母生理学的影响却知之甚少。我们最近报道了在毕赤酵母恒化培养中缺氧对重组Fab分泌的有益作用。因此,采用了系统生物学方法来全面鉴定细胞对低氧可用性以及蛋白质生产额外负担的适应性。基因表达谱分析与蛋白质组学分析以及基于13C同位素标记的中心碳代谢中代谢通量的实验测定相结合。

结果

毕赤酵母对缺氧的生理适应性与模式酵母酿酒酵母相比表现出明显的特征。毕赤酵母核心代谢对缺氧的转录组、蛋白质组和代谢通量适应性之间存在正相关,这为糖酵解、磷酸戊糖途径和三羧酸循环等关键途径的强大转录调控成分提供了明确证据。此外,对氧气减少的适应性揭示了脂质代谢、应激反应以及蛋白质折叠和运输方面的重要变化。

结论

这项系统水平的研究有助于了解重组毕赤酵母菌株中细胞机制对低氧可用性的生理适应性。值得注意的是,整合来自三个不同层面的数据能够识别毕赤酵母和酿酒酵母在核心代谢调控方面的差异。对转录组数据的详细比较分析还为几个细胞过程的基因表达谱带来了新的见解,这些过程不仅对低氧浓度敏感,而且可能有助于增强蛋白质分泌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1ff/2987880/c3368235cb4a/1752-0509-4-141-1.jpg

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