Department of Biotechnology and Food Microbiology, Poznan University of Life Sciences, ul. Wojska Polskiego 48, 60-637 Poznań, Poland.
Université Paris-Saclay, INRAE, AgroParisTech, Micalis Institute, 78350 Jouy-en-Josas, France.
FEMS Yeast Res. 2024 Jan 9;24. doi: 10.1093/femsyr/foae027.
Controllable regulatory elements, like inducible, titratable promoters, are highly desired in synthetic biology toolboxes. A set of previously developed erythritol-inducible promoters along with an engineered Yarrowia lipolytica host strain were shown to be a very potent expression platform. In this study, we push the previously encountered limits of the synthetic promoters' titratability (by the number of upstream motifs) by using a compatible transcription factor, Euf1, as the promoter titrator. Overexpression of spliced EUF1 turned out to be very efficient in promoting expression from the compatible promoter, however, the erythritol-inducible character of the promoter was then lost. Analysis of the EUF1's splicing pattern suggests that the intron removal is promoted in the presence of erythritol, but is not dependent on it. The 3D structures of spliced versus unspliced Euf1 were modeled, and ligand-binding strength was calculated and compared. Furthermore, the EUF1-dependent expression profile under different chemical stimulants was investigated. Depletion of carbon source was identified as the significant factor upregulating the expression from the Euf1-dependent promoter (2-10-fold). Considering these findings and transcriptomics data, a new mechanism of the Euf1-regulated promoter action is proposed, involving a 'catabolite repression' transcription factor-Adr1, both acting on the same ERY-inducible promoter.
在合成生物学工具包中,可控调节元件(如诱导型、可滴定启动子)是非常需要的。一组先前开发的赤藓糖醇诱导启动子以及经过工程改造的解脂耶氏酵母宿主菌株被证明是一种非常有效的表达平台。在这项研究中,我们通过使用相容的转录因子 Euf1 作为启动子滴定剂,将先前遇到的合成启动子可滴定性(通过上游基序的数量)限制推向极限。 spliced EUF1 的过表达被证明非常有效地促进了相容启动子的表达,然而,启动子的赤藓糖醇诱导特性随后丢失。EUF1 的剪接模式分析表明,在赤藓糖醇存在的情况下,内含子去除被促进,但不依赖于它。对剪接和非剪接 Euf1 的 3D 结构进行了建模,并计算和比较了配体结合强度。此外,还研究了不同化学刺激物下 EUF1 依赖性表达谱。发现碳源耗尽是上调 Euf1 依赖性启动子表达的重要因素(2-10 倍)。考虑到这些发现和转录组学数据,提出了一个新的 Euf1 调节启动子作用机制,涉及到“分解代谢物阻遏”转录因子 ADR1,两者都作用于同一个 ERY 诱导启动子。