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Functional Analysis of Kinases and Transcription Factors in Saccharomyces cerevisiae Using an Integrated Overexpression Library

机译:使用整合的过表达文库对酿酒酵母中激酶和转录因子的功能分析

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摘要

Kinases and transcription factors (TFs) are key modulators of important signaling pathways and their activities underlie the proper function of many basic cellular processes such as cell division, differentiation, and development. Changes in kinase and TF dosage are often associated with disease, yet a systematic assessment of the cellular phenotypes caused by the combined perturbation of kinases and TFs has not been undertaken. We used a reverse-genetics approach to study the phenotypic consequences of kinase and TF overexpression (OE) in the budding yeast, Saccharomyces cerevisiae. We constructed a collection of strains expressing stably integrated inducible alleles of kinases and TFs and used a variety of assays to characterize the phenotypes caused by TF and kinase OE. We used the Synthetic Genetic Array (SGA) method to examine dosage-dependent genetic interactions (GIs) between 239 gain-of-function (OE) alleles of TFs and six loss-of-function (LOF) and seven OE kinase alleles, the former identifying Synthetic Dosage Lethal (SDL) interactions and the latter testing a GI we call Double Dosage Lethality (DDL). We identified and confirmed 94 GIs between 65 OE alleles of TFs and 9 kinase alleles. Follow-up experiments validated regulatory relationships between genetically interacting pairs (– and –), suggesting that GI studies involving OE alleles of regulatory proteins will be a rich source of new functional information.
机译:激酶和转录因子(TFs)是重要信号通路的关键调节剂,其活性是许多基本细胞过程(如细胞分裂,分化和发育)的适当功能的基础。激酶和TF剂量的变化通常与疾病有关,但尚未对由激酶和TF的组合扰动引起的细胞表型进行系统评估。我们使用反向遗传学的方法来研究发芽酵母酿酒酵母中激酶和TF过表达(OE)的表型后果。我们构建了一个表达稳定整合的激​​酶和TFs诱导型等位基因的菌株,并使用多种测定方法来表征由TF和激酶OE引起的表型。我们使用合成遗传阵列(SGA)方法检查了TF的239个功能获得(OE)等位基因与6个功能丧失(LOF)和7个OE激酶等位基因之间的剂量依赖性遗传相互作用(GI)。前者识别合成剂量致命(SDL)相互作用,后者测试GI,我们将其称为双重剂量致命性(DDL)。我们鉴定并确认了TF的65个OE等位基因与9个激酶等位基因之间的94个GI。后续实验验证了基因相互作用对(–和–)之间的调控关系,这表明涉及调控蛋白OE等位基因的GI研究将成为新功能信息的丰富来源。

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