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Engineering of Promoter Replacement Cassettes for Fine-Tuning of Gene Expression in Saccharomyces cerevisiae

机译:酿酒酵母基因表达的微调启动子替换盒的工程设计。

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The strong overexpression or complete deletion of a gene gives only limited information about its control over a certain phenotype or pathway. Gene function studies based on these methods are therefore incomplete. To effect facile manipulation of gene expression across a full continuum of possible expression levels, we recently created a library of mutant promoters. Here, we provide the detailed characterization of our yeast promoter collection comprising 11 mutants of the strong constitutive Saccharomyces cerevisiae TEF1 promoter. The activities of the mutant promoters range between about 8% and 120% of the activity of the unmutated TEF1 promoter. The differences in reporter gene expression in the 11 mutants were independent of the carbon source used, and real-time PCR confirmed that these differences were due to varying levels of transcription (i.e., caused by varying promoter strengths). In addition to a CEN/ARS plasmid-based promoter collection, we also created promoter replacement cassettes. They enable genomic integration of our mutant promoter collection upstream of any given yeast gene, allowing detailed genotype-phenotype characterizations. To illustrate the utility of the method, the GPD1 promoter of S. cerevisiae was replaced by five TEF1 promoter mutants of different strengths, which allowed analysis of the impact of glycerol 3-phosphate dehydrogenase activity on the glycerol yield.
机译:基因的强烈过表达或完全缺失仅给出有关其对某种表型或途径的控制的有限信息。因此,基于这些方法的基因功能研究是不完整的。为了在可能的表达水平的整个连续范围内实现对基因表达的简便操作,我们最近创建了一个突变启动子库。在这里,我们提供了我们的酵母启动子集合的详细特征,该集合包含强组成型酿酒酵母TEF1启动子的11个突变体。突变启动子的活性为未突变TEF1启动子的活性的约8%至120%。 11个突变体中报道基因表达的差异与所使用的碳源无关,实时PCR证实这些差异是由于转录水平的变化(即由不同的启动子强度引起的)引起的。除了基于CEN / ARS质粒的启动子外,我们还创建了启动子替换盒。它们使我们的突变启动子集合在任何给定酵母基因上游的基因组整合成为可能,从而实现了详细的基因型-表型表征。为了说明该方法的实用性,用五个强度不同的TEF1启动子突变体代替了酿酒酵母的GPD1启动子,从而可以分析3-磷酸甘油三酯脱氢酶活性对甘油收率的影响。

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