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Promoters inducible by aromatic amino acids and gamma-aminobutyrate (GABA) for metabolic engineering applications in Saccharomyces cerevisiae

机译:可被芳香族氨基酸和γ-氨基丁酸(GABA)诱导的启动子,用于酿酒酵母的代谢工程应用

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摘要

A wide range of promoters with different strengths and regulatory mechanisms are valuable tools in metabolic engineering and synthetic biology. While there are many constitutive promoters available, the number of inducible promoters is still limited for pathway engineering in Saccharomyces cerevisiae. Here, we constructed aromatic amino-acid-inducible promoters based on the binding sites of Aro80 transcription factor, which is involved in the catabolism of aromatic amino acids through transcriptional activation of ARO9 and ARO10 genes in response to aromatic amino acids. A dynamic range of tryptophan-inducible promoter strengths can be obtained by modulating the number of Aro80 binding sites, plasmid copy numbers, and tryptophan concentrations. Using low and high copy number plasmid vectors and different tryptophan concentrations, a 29-fold range of fluorescence intensities of enhanced green fluorescent protein (EGFP) reporter could be achieved from a synthetic U4C (ARO9) promoter, which is composed of four repeats of Aro80 binding half site (CCG) and ARO9 core promoter element. The U4C (ARO9) promoter was applied to express alsS and alsD genes from Bacillus subtilis for acetoin production in S. cerevisiae, resulting in a gradual increase in acetoin titers depending on tryptophan concentrations. Furthermore, we demonstrated that gamma-aminobutyrate (GABA)-inducible UGA4 promoter, regulated by Uga3, can also be used in metabolic engineering as a dose-dependent inducible promoter. The wide range of controllable expression levels provided by these tryptophan- and GABA-inducible promoters might contribute to fine-tuning gene expression levels and timing for the optimization of pathways in metabolic engineering.
机译:具有不同强度和调控机制的多种启动子是代谢工程和合成生物学中的重要工具。尽管有许多组成型启动子可用,但是对于酿酒酵母中的途径工程而言,诱导型启动子的数量仍然受到限制。在这里,我们基于Aro80转录因子的结合位点构建了芳香族氨基酸诱导型启动子,该启动子通过响应ARO9和ARO10基因对芳香族氨基酸的转录激活而参与芳香族氨基酸的分解代谢。色氨酸诱导的启动子强度的动态范围可以通过调节Aro80结合位点的数量,质粒拷贝数和色氨酸浓度来获得。使用低拷贝数和高拷贝数的质粒载体以及不同的色氨酸浓度,可以从合成的U4C(ARO9)启动子获得增强的绿色荧光蛋白(EGFP)报告基因29倍范围的荧光强度,该启动子由Aro80的四个重复序列组成结合半位点(CCG)和ARO9核心启动子元件。 U4C(ARO9)启动子被用于表达枯草芽孢杆菌的alsS和alsD基因,以在酿酒酵母中产生乙酰化酶,导致乙酰化酶滴度根据色氨酸浓度而逐渐增加。此外,我们证明了受Uga3调节的γ-氨基丁酸酯(GABA)诱导型UGA4启动子也可以作为剂量依赖性诱导型启动子用于代谢工程。这些色氨酸和GABA诱导型启动子提供的广泛可控表达水平可能有助于微调基因表达水平和优化代谢工程途径的时机。

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