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Fungal Gene Expression on Demand: an Inducible, Tunable, and Metabolism-Independent Expression System for Aspergillus niger

机译:按需真菌基因表达:黑曲霉的诱导,可调和代谢独立的表达系统。

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Filamentous fungi are the cause of serious human and plant diseases but are also exploited in biotechnology as production platforms. Comparative genomics has documented their genetic diversity, and functional genomics and systems biology approaches are under way to understand the functions and interaction of fungal genes and proteins. In these approaches, gene functions are usually inferred from deletion or overexpression mutants. However, studies at these extreme points give only limited information. Moreover, many overexpression studies use metabolism-dependent promoters, often causing pleiotropic effects and thus limitations in their significance. We therefore established and systematically evaluated a tunable expression system for Aspergillus niger that is independent of carbon and nitrogen metabolism and silent under noninduced conditions. The system consists of two expression modules jointly targeted to a defined genomic locus. One module ensures constitutive expression of the tetracycline-dependent transactivator rtTA2~(S)-M2, and one module harbors the rtTA2~(S)-M2-dependent promoter that controls expression of the gene of interest (the Tet-on system). We show here that the system is tight, responds within minutes after inducer addition, and allows fine-tuning based on the inducer concentration or gene copy number up to expression levels higher than the expression levels of the gpdA promoter. We also validate the Tet-on system for the generation of conditional overexpression mutants and demonstrate its power when combined with a gene deletion approach. Finally, we show that the system is especially suitable when the functions of essential genes must be examined.
机译:丝状真菌是导致严重人类和植物疾病的原因,但在生物技术中也被用作生产平台。比较基因组学已证明了它们的遗传多样性,目前正在研究功能基因组学和系统生物学方法以了解真菌基因和蛋白质的功能和相互作用。在这些方法中,通常从缺失或过表达突变体推断基因功能。但是,在这些极端点进行的研究仅提供了有限的信息。此外,许多过表达研究使用依赖于代谢的启动子,经常引起多效性效应,因此其重要性受到限制。因此,我们建立并系统地评估了黑曲霉的可调表达系统,该系统独立于碳和氮代谢并且在非诱导条件下沉默。该系统由两个针对特定基因组基因座的表达模块组成。一个模块确保四环素依赖性反式激活子rtTA2〜(S)-M2的组成型表达,一个模块包含rtTA2〜(S)-M2依赖性启动子,该启动子控制感兴趣基因的表达(Tet-on系统)。我们在这里显示系统是紧密的,在添加诱导剂后数分钟内作出反应,并允许基于诱导剂浓度或基因拷贝数进行微调,直至表达水平高于gpdA启动子的表达水平。我们还验证了Tet-on系统生成条件性过表达突变体的能力,并证明了其与基因删除方法结合时的功能。最后,我们表明当必须检查必需基因的功能时,该系统特别适合。

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