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一种热插拔式基因开关:构建针对必需基因MEDIATOR 21的可诱导且可追踪的功能检测方法。

A Hot-Swappable Genetic Switch: Building an inducible and trackable functional assay for the essential gene MEDIATOR 21.

作者信息

Watson Isabella J, Maranas Cassandra, Nemhauser Jennifer L, Leydon Alexander R

机构信息

Department of Biology, University of Washington, Seattle, WA 98195-1800 USA.

出版信息

bioRxiv. 2024 Dec 18:2024.12.16.628800. doi: 10.1101/2024.12.16.628800.

Abstract

Essential genes, estimated at approximately 20% of the genome, are broadly expressed and required for reproductive success. They are difficult to study, as interfering with their function leads to premature death. Transcription is one of the essential functions of life, and the multi-protein Mediator complex coordinates the regulation of gene expression at nearly every eukaryotic promoter. In this study, we focused on a core Mediator component called MEDIATOR21 (MED21), which is required for activation of transcription. Our previous work has also shown a role for MED21 in repression of gene expression through its interaction with a corepressor protein. Here, we sought to differentiate the role MED21 plays in activation versus repression using the model plant . As mutations in MED21 lead to embryo lethal phenotypes, we constructed a set of synthetic switches using PhiC31 serine integrases to create an "on-to-off" inducible loss of function MED21 in a non-essential tissue. Our technology, which we call Integrase Erasers, made it possible for mutant plants to survive into adulthood by ablating protein expression selectively in lateral root primordia, allowing quantification and characterization of mutant phenotypes in a post-embryonic context. In addition, we engineered chemical induction of the Integrase Eraser to ablate MED21 expression in whole seedlings at a user-specified timepoint. Finally, we extended this technology to build a hot swappable Integrase Isoform Switch where expression of the integrase toggled cells from expressing wildtype MED21 to expressing MED21 sequence variants. Our analysis of the entire set of new integrase-based tools demonstrates that this is a highly efficient and robust approach to the study of essential genes.

摘要

必需基因约占基因组的20%,广泛表达且对生殖成功至关重要。它们难以研究,因为干扰其功能会导致过早死亡。转录是生命的基本功能之一,多蛋白中介体复合物在几乎每个真核启动子处协调基因表达的调控。在本研究中,我们聚焦于一种名为中介体21(MED21)的核心中介体成分,它是转录激活所必需的。我们之前的工作还表明,MED21通过与一种共抑制蛋白相互作用在基因表达抑制中发挥作用。在这里,我们试图利用模式植物区分MED21在激活与抑制中所起的作用。由于MED21的突变会导致胚胎致死表型,我们使用PhiC31丝氨酸整合酶构建了一组合成开关,以在非必需组织中创建一个“开-关”诱导型MED21功能丧失。我们称之为整合酶消除器的技术使突变植物能够存活至成年,方法是在侧根原基中选择性地消除蛋白质表达,从而能够在胚胎后环境中对突变表型进行定量和表征。此外,我们对整合酶消除器进行了化学诱导工程改造,以便在用户指定的时间点消除全株幼苗中的MED21表达。最后,我们扩展了这项技术,构建了一个可热插拔的整合酶异构体开关,其中整合酶的表达使细胞从表达野生型MED21转变为表达MED21序列变体。我们对整套基于新整合酶的工具的分析表明,这是一种研究必需基因的高效且强大的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3340/11702731/7f028de0efc8/nihpp-2024.12.16.628800v1-f0002.jpg

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