Jiang Wei, Wang Shengbao, Ahlheit Daniel, Fumagalli Tommaso, Yang Zhijie, Ramanathan Shreemaya, Jiang Xinglin, Weber Tilmann, Dahlin Jonathan, Borodina Irina
The Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark, Kgs. Lyngby DK-2800, Denmark.
Department of Sustainable Biotechnology, Aalborg University, Aalborg East DK-9220, Denmark.
Proc Natl Acad Sci U S A. 2025 Jun 10;122(23):e2426686122. doi: 10.1073/pnas.2426686122. Epub 2025 Jun 3.
The challenge of accurately predicting which genetic alternations lead to the desired phenotype necessitates high-throughput metabolic engineering approaches where numerous hypotheses can be tested simultaneously. We describe the CRISPR-Cas9-based method TUNE that enables high-throughput tuning of gene expression in the common industrial yeast . The method is based on replacing the promoters of the target genes with native promoters of varying strengths or removing the promoters entirely. To demonstrate the method's capabilities, we created a plasmid library that targets 56 transcription factors (TFs) and changes the expression of each TF to seven different levels. We transformed this library into reference and betanin-producing strains of and screened the resulting clones for changes in morphology, thermotolerance, or improved betanin production. The genetic markup of the yeast clones with the desired phenotypic changes was determined by sequencing the inserted plasmids. We identified multiple TFs whose regulatory changes increased thermotolerance, two TFs that eliminated pseudohyphal growth, and several TFs that increased betanin production. Analogous libraries can be designed to target any chosen group of genes and even all the genes. The libraries can be shared and reused, accelerating applied strain development projects and fundamental functional genomics research (TUNE-TF kit and TUNE-TF library are available via AddGene under catalog numbers #1000000255 and #217744).
准确预测哪些基因改变会导致所需表型这一挑战,需要高通量代谢工程方法,以便能同时测试众多假设。我们描述了基于CRISPR-Cas9的方法TUNE,该方法能够对常见工业酵母中的基因表达进行高通量调控。该方法基于用不同强度的天然启动子替换目标基因的启动子或完全去除启动子。为了证明该方法的能力,我们创建了一个靶向56个转录因子(TFs)的质粒文库,并将每个TF的表达改变为七个不同水平。我们将这个文库转化到参考菌株和生产甜菜红素的菌株中,并筛选所得克隆的形态、耐热性变化或甜菜红素产量的提高情况。通过对插入质粒进行测序来确定具有所需表型变化的酵母克隆的遗传标记。我们鉴定出多个调控变化增加耐热性的TFs、两个消除假菌丝生长的TFs以及几个增加甜菜红素产量的TFs。类似的文库可以设计用于靶向任何选定的基因组甚至所有基因。这些文库可以共享和重复使用,加速应用菌株开发项目和基础功能基因组学研究(TUNE-TF试剂盒和TUNE-TF文库可通过AddGene获得,目录编号分别为#1000000255和#217744)。