VTT Technical Research Centre of Finland, Espoo, P.O. Box 1000, FI-02044 VTT, Finland.
Nucleic Acids Res. 2018 Oct 12;46(18):e111. doi: 10.1093/nar/gky558.
Biotechnological production of fuels, chemicals and proteins is dependent on efficient production systems, typically genetically engineered microorganisms. New genome editing methods are making it increasingly easy to introduce new genes and functionalities in a broad range of organisms. However, engineering of all these organisms is hampered by the lack of suitable gene expression tools. Here, we describe a synthetic expression system (SES) that is functional in a broad spectrum of fungal species without the need for host-dependent optimization. The SES consists of two expression cassettes, the first providing a weak, but constitutive level of a synthetic transcription factor (sTF), and the second enabling strong, at will tunable expression of the target gene via an sTF-dependent promoter. We validated the SES functionality in six yeast and two filamentous fungi species in which high (levels beyond organism-specific promoters) as well as adjustable expression levels of heterologous and native genes was demonstrated. The SES is an unprecedentedly broadly functional gene expression regulation method that enables significantly improved engineering of fungi. Importantly, the SES system makes it possible to take in use novel eukaryotic microbes for basic research and various biotechnological applications.
生物技术生产燃料、化学品和蛋白质依赖于高效的生产系统,通常是经过基因工程改造的微生物。新的基因组编辑方法使得在广泛的生物体中引入新基因和功能变得越来越容易。然而,所有这些生物体的工程都受到缺乏合适的基因表达工具的阻碍。在这里,我们描述了一种在广泛的真菌物种中具有功能而无需依赖宿主进行优化的合成表达系统 (SES)。SES 由两个表达盒组成,第一个提供弱但组成型的合成转录因子 (sTF) 的水平,第二个通过 sTF 依赖性启动子实现目标基因的强、可调的表达。我们在六种酵母和两种丝状真菌物种中验证了 SES 的功能,其中展示了高水平(超出特定于生物体的启动子的水平)以及异源和同源基因的可调表达水平。SES 是一种前所未有的广泛功能的基因表达调控方法,可显著提高真菌的工程改造能力。重要的是,SES 系统使得可以利用新型真核微生物进行基础研究和各种生物技术应用。