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Engineering the architecture of erythritol-inducible promoters for regulated and enhanced gene expression in Yarrowia lipolytica

机译:在Yarrowia Lipolytica中调节和增强基因表达的赤藓糖型诱导型启动子的结构

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The non-conventional model yeast Yarrowia lipolytica is of increasing interest as a cell factory for producing recombinant proteins or biomolecules with biotechnological or pharmaceutical applications. To further develop the yeast's efficiency and construct inducible promoters, it is crucial to better understand and engineer promoter architecture. Four conserved cis-regulatory modules (CRMs) were identified via phylogenetic footprinting within the promoter regions of EYD1 and EYK1, two genes that have recently been shown to be involved in erythritol catabolism. Using CRM mutagenesis and hybrid promoter construction, we identified four upstream activation sequences (UASs) that are involved in promoter induction by erythritol. Using RedStarII fluorescence as a reporter, the strength of the promoters and the degree of erythritol-based inducibility were determined in two genetic backgrounds: the EYK1 wild type and the eyk1 mutant. We successfully developed inducible promoters with variable strengths, which ranged from 0.1 SFU/h to 457.5 SFU/h. Erythritol-based induction increased 2.2 to 32.3 fold in the EYK1+wild type and 2.9 to 896.1 fold in the eyk1 mutant. This set of erythritol-inducible hybrid promoters could allow the modulation and fine-tuning of gene expression levels. These promoters have direct applications in protein production, metabolic engineering and synthetic biology.
机译:非常规模型酵母Yarrowia Lipolytica对用于生产重组蛋白质或生物分子或药物应用的重组蛋白或生物分子来增加兴趣。为了进一步发展酵母的效率和构建诱导型启动子,对更好地了解和工程师推动者建筑至关重要。通过EYD1和EYK1的启动子区域内通过系统发育脚印来鉴定四个保守的顺式调节模块(CRM),最近被证明参与赤藓糖醇分解代谢的两个基因。使用CRM诱变和杂化启动子结构,我们确定了赤藓糖醇诱导促进的四个上游活化序列(uass)。使用Redstarii荧光作为记者,在两个遗传背景下测定启动子的强度和基于季节性基于赤藓糖醇的诱导性:Eyk1野生型和Eyk1突变体。我们成功开发了具有可变优点的诱导型启动子,其范围为0.1 SFU / H至457.5 SFU / h。 Eyk1 +野生型赤藓糖醇的诱导增加2.2至32.3倍,Eyk1突变体中的2.9至896.1倍。该组红细胞诱导型杂交启动子可以允许基因表达水平的调节和微调。这些促进剂在蛋白质生产,代谢工程和合成生物学中具有直接应用。

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