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Glycerol positive promoters for tailored metabolic engineering of the yeast Saccharomyces cerevisiae

机译:甘油阳性促进剂,用于酵母酿酒酵母酿酒酵母的量身定制代谢工程

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摘要

Glycerol offers several advantages as a substrate for biotechnological applications. An important step toward using the popular production host Saccharomyces cerevisiae for glycerol-based bioprocesses has been the fact that in recent studies commonly used S. cerevisiae strains were engineered to grow in synthetic medium containing glycerol as the sole carbon source. For metabolic engineering projects of S. cerevisiae growing on glycerol, characterized promoters are missing. In the current study, we used transcriptome analysis and a yECitrine-based fluorescence reporter assay to select and characterize 25 useful promoters. The promoters of the genes ALD4 and ADH2 showed 4.2-fold and 3-fold higher activities compared to the well-known strong TEF1 promoter. Moreover, the collection contains promoters with graded activities in synthetic glycerol medium and different degrees of glucose repression. To demonstrate the general applicability of the promoter collection, we successfully used a subset of the characterized promoters with graded activities in order to optimize growth on glycerol in an engineered derivative of CEN.PK , in which glycerol catabolism exclusively occurs via a non-native DHA pathway.
机译:甘油提供了作为生物技术应用的基材的几个优点。利用流行的生产主体酿酒酵母的基于甘油的生物处理酿酒酵母的一个重要步骤是,在最近的研究中,常用的S.酿酒酵母菌株被设计成含有甘油作为唯一碳源的合成培养基生长。对于在甘油中生长的S.酿酒酵母的代谢工程项目,缺少特征启动子。在目前的研究中,我们使用转录组分析和基于亚二硝酸的荧光报告分析来选择和表征25种有用的启动子。与众所周知的强TEF1启动子相比,基因ALD4和ADH2的启动子显示出4.2倍和3倍的活性。此外,该收集含有合成甘油培养基中具有分级活性的启动子和不同程度的葡萄糖抑制。为了证明启动子收集的一般适用性,我们成功地使用了具有评分活动的特征启动子的子集,以优化CEN.PK的工程衍生物中甘油的生长,其中甘油分解代谢专门通过非原生DHA发生途径。

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