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首页> 外文期刊>Metabolic engineering >Overcoming the metabolic burden of protein secretion in Schizosaccharomyces pombe - A quantitative approach using 13C-based metabolic flux analysis
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Overcoming the metabolic burden of protein secretion in Schizosaccharomyces pombe - A quantitative approach using 13C-based metabolic flux analysis

机译:克服粟酒裂殖酵母中蛋白质分泌的代谢负担-一种基于13C的代谢通量分析的定量方法

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摘要

Protein secretion in yeast is generally associated with a burden to cellular metabolism. To investigate this metabolic burden in Schizosaccharomyces pombe, we constructed a set of strains secreting the model protein maltase in different amounts. We quantified the influence of protein secretion on the metabolism applying 13C-based metabolic flux analysis in chemostat cultures. Analysis of the macromolecular biomass composition revealed an increase in cellular lipid content at elevated levels of protein secretion and we observed altered metabolic fluxes in the pentose phosphate pathway, the TCA cycle, and around the pyruvate node including mitochondrial NADPH supply. Supplementing acetate to glucose or glycerol minimal media was found to improve protein secretion, accompanied by an increased cellular lipid content and carbon flux through the TCA cycle as well as increased mitochondrial NADPH production. Thus, systematic metabolic analyses can assist in identifying factors limiting protein secretion and in deriving strategies to overcome these limitations.
机译:酵母中的蛋白质分泌通常与细胞代谢的负担有关。为了研究粟酒裂殖酵母的这种代谢负担,我们构建了一组分泌不同量的模型蛋白质麦芽糖酶的菌株。我们在基于恒化器的文化中应用基于13C的代谢通量分析,量化蛋白质分泌对代谢的影响。对大分子生物质组成的分析显示,在蛋白质分泌水平升高的情况下,细胞脂质含量增加,并且我们观察到戊糖磷酸途径,TCA循环以及包括线粒体NADPH在内的丙酮酸节周围的代谢通量发生了变化。发现在葡萄糖或甘油基本培养基中添加乙酸盐可改善蛋白质分泌,并伴随着通过TCA循环增加的细胞脂质含量和碳通量以及线粒体NADPH的产生。因此,系统的代谢分析可以帮助识别限制蛋白质分泌的因素,并有助于克服这些限制的策略。

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