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Controlling heterologous gene expression in yeast cell factories on different carbon substrates and across the diauxic shift: a comparison of yeast promoter activities

机译:控制酵母细胞工厂中不同碳底物和整个双极性转变中异源基因的表达:酵母启动子活性的比较

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摘要

BackgroundPredictable control of gene expression is necessary for the rational design and optimization of cell factories. In the yeast Saccharomyces cerevisiae, the promoter is one of the most important tools available for controlling gene expression. However, the complex expression patterns of yeast promoters have not been fully characterised and compared on different carbon sources (glucose, sucrose, galactose and ethanol) and across the diauxic shift in glucose batch cultivation. These conditions are of importance to yeast cell factory design because they are commonly used and encountered in industrial processes. Here, the activities of a series of “constitutive” and inducible promoters were characterised in single cells throughout the fermentation using green fluorescent protein (GFP) as a reporter.
机译:背景基因表达的可预测控制对于细胞工厂的合理设计和优化是必要的。在酿酒酵母中,启动子是可用于控制基因表达的最重要工具之一。但是,酵母启动子的复杂表达模式尚未得到充分表征,并在不同碳源(葡萄糖,蔗糖,半乳糖和乙醇)上以及在葡萄糖分批培养中的双峰转换中进行了比较。这些条件对于酵母细胞工厂设计很重要,因为它们是工业过程中常用和遇到的条件。在此,使用绿色荧光蛋白(GFP)作为报告子,在整个发酵过程中的单个细胞中表征了一系列“组成型”和诱导型启动子的活性。

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