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在葡萄糖-甲醇混合液中生长的重组蛋白分泌毕赤酵母的代谢通量谱分析。

Metabolic flux profiling of recombinant protein secreting Pichia pastoris growing on glucose:methanol mixtures.

机构信息

Departament d'Enginyeria Química, Escola d'Enginyeria|, Universitat Autònoma de Barcelona, Bellaterra (Cerdanyola del Vallès), Spain.

出版信息

Microb Cell Fact. 2012 May 8;11:57. doi: 10.1186/1475-2859-11-57.

Abstract

BACKGROUND

The methylotrophic yeast Pichia pastoris has emerged as one of the most promising yeast hosts for the production of heterologous proteins. Mixed feeds of methanol and a multicarbon source instead of methanol as sole carbon source have been shown to improve product productivities and alleviate metabolic burden derived from protein production. Nevertheless, systematic quantitative studies on the relationships between the central metabolism and recombinant protein production in P. pastoris are still rather limited, particularly when growing this yeast on mixed carbon sources, thus hampering future metabolic network engineering strategies for improved protein production.

RESULTS

The metabolic flux distribution in the central metabolism of P. pastoris growing on a mixed feed of glucose and methanol was analyzed by Metabolic Flux Analysis (MFA) using 13C-NMR-derived constraints. For this purpose, we defined new flux ratios for methanol assimilation pathways in P. pastoris cells growing on glucose:methanol mixtures. By using this experimental approach, the metabolic burden caused by the overexpression and secretion of a Rhizopus oryzae lipase (Rol) in P. pastoris was further analyzed. This protein has been previously shown to trigger the unfolded protein response in P. pastoris. A series of 13C-tracer experiments were performed on aerobic chemostat cultivations with a control and two different Rol producing strains growing at a dilution rate of 0.09 h(-1) using a glucose:methanol 80:20 (w/w) mix as carbon source.The MFA performed in this study reveals a significant redistribution of carbon fluxes in the central carbon metabolism when comparing the two recombinant strains vs the control strain, reflected in increased glycolytic, TCA cycle and NADH regeneration fluxes, as well as higher methanol dissimilation rates.

CONCLUSIONS

Overall, a further 13C-based MFA development to characterise the central metabolism of methylotrophic yeasts when growing on mixed methanol:multicarbon sources has been implemented, thus providing a new tool for the investigation of the relationships between central metabolism and protein production. Specifically, the study points at a limited but significant impact of the conformational stress associated to secretion of recombinant proteins on the central metabolism, occurring even at modest production levels.

摘要

背景

甲醇营养型酵母毕赤酵母已成为生产异源蛋白最有前途的酵母宿主之一。与甲醇作为唯一碳源相比,甲醇和多碳源的混合饲料已被证明可以提高产物得率并减轻由蛋白质生产引起的代谢负担。然而,关于毕赤酵母中中心代谢与重组蛋白生产之间关系的系统定量研究仍然相当有限,特别是当在混合碳源上培养这种酵母时,从而阻碍了未来用于提高蛋白质生产的代谢网络工程策略。

结果

通过使用 13C-NMR 衍生的约束条件进行代谢通量分析(MFA),分析了在葡萄糖和甲醇混合饲料上生长的毕赤酵母中心代谢中的代谢通量分布。为此,我们为在葡萄糖:甲醇混合物上生长的毕赤酵母细胞中的甲醇同化途径定义了新的通量比。通过使用这种实验方法,进一步分析了在毕赤酵母中过度表达和分泌米根霉脂肪酶(Rol)引起的代谢负担。先前已经表明,该蛋白会引发毕赤酵母中的未折叠蛋白反应。在使用葡萄糖:甲醇 80:20(w/w)混合物作为碳源的有氧恒化器培养中,进行了一系列 13C 示踪实验,比较了对照和两种不同产生 Rol 的菌株在稀释率为 0.09 h(-1)时的生长情况。在这项研究中进行的 MFA 揭示了在比较两种重组菌株与对照菌株时,中心碳代谢中的碳通量有明显的重新分布,反映在增加的糖酵解、TCA 循环和 NADH 再生通量以及更高的甲醇异化率。

结论

总体而言,已经实施了进一步的基于 13C 的 MFA 开发,以表征在混合甲醇:多碳源上生长的甲醇营养型酵母的中心代谢,从而为研究中心代谢与蛋白质生产之间的关系提供了新的工具。具体而言,该研究表明,与分泌重组蛋白相关的构象应激对中央代谢的影响虽然有限,但却是显著的,即使在适度的生产水平下也是如此。

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