Terrence Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, Toronto, ON, Canada.
RIKEN Centre for Sustainable Resource Science, Wako, Saitama, Japan.
Mol Syst Biol. 2021 Jun;17(6):e10207. doi: 10.15252/msb.202110207.
The ability to switch a gene from off to on and monitor dynamic changes provides a powerful approach for probing gene function and elucidating causal regulatory relationships. Here, we developed and characterized YETI (Yeast Estradiol strains with Titratable Induction), a collection in which > 5,600 yeast genes are engineered for transcriptional inducibility with single-gene precision at their native loci and without plasmids. Each strain contains SGA screening markers and a unique barcode, enabling high-throughput genetics. We characterized YETI using growth phenotyping and BAR-seq screens, and we used a YETI allele to identify the regulon of Rof1, showing that it acts to repress transcription. We observed that strains with inducible essential genes that have low native expression can often grow without inducer. Analysis of data from eukaryotic and prokaryotic systems shows that native expression is a variable that can bias promoter-perturbing screens, including CRISPRi. We engineered a second expression system, Z EB42, that gives lower expression than Z EV, a feature enabling conditional activation and repression of lowly expressed essential genes that grow without inducer in the YETI library.
基因开关技术能够开启或关闭某个基因,并对其动态变化进行监测,为研究基因功能和阐明因果调控关系提供了有力手段。在此,我们开发并鉴定了 YETI(具有可滴定诱导的酵母雌二醇株),该系统中超过 5600 个酵母基因在其天然基因座上实现了单基因精度的转录诱导,且无需质粒。每个菌株都含有 SGA 筛选标记和独特的条码,可实现高通量遗传学研究。我们利用生长表型和 BAR-seq 筛选对 YETI 进行了表征,并利用 YETI 等位基因鉴定了 Rof1 的调控组,结果表明其具有转录抑制作用。我们观察到,具有低天然表达的诱导型必需基因的菌株通常可以在没有诱导剂的情况下生长。对真核和原核系统数据的分析表明,天然表达是一个会影响启动子扰动筛选(包括 CRISPRi)的变量。我们设计了第二个表达系统 ZEB42,其表达水平低于 ZEV,这一特性使我们能够对在 YETI 文库中无需诱导剂即可生长的低表达必需基因进行条件激活和抑制。