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Construction Verification and Experimental Use of Two Epitope-Tagged Collections of Budding Yeast Strains

机译:两个表位标记的构建验证和实验用途 酵母菌株的集合

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摘要

A major challenge in the post-genomic era is the development of experimental approaches to monitor the properties of proteins on a proteome-wide level. It would be particularly useful to systematically assay protein subcellular localization, post-translational modifications and protein–protein interactions, both at steady state and in response to environmental stimuli. Development of new reagents and methods will enhance our ability to do so efficiently and systematically. Here we describe the construction of two collections of budding yeast strains that facilitate proteome-wide measurements of protein properties. These collections consist of strains with an epitope tag integrated at the C-terminus of essentially every open reading frame (ORF), one with the tandem affinity purification (TAP) tag, and one with the green fluorescent protein (GFP) tag. We show that in both of these collections we have accurately tagged a high proportion of all ORFs (approximately 75% of the proteome) by confirming expression of the fusion proteins. Furthermore, we demonstrate the use of the TAP collection in performing high-throughput immunoprecipitation experiments. Building on these collections and the methods described in this paper, we hope that the yeast community will expand both the quantity and type of proteome level data available.
机译:后基因组时代的主要挑战是开发实验方法以在整个蛋白质组学水平上监测蛋白质的特性。在稳态和对环境刺激的反应中,系统地测定蛋白质亚细胞定位,翻译后修饰和蛋白质-蛋白质相互作用将特别有用。新试剂和新方法的开发将增强我们有效而系统地进行此操作的能力。在这里,我们描述了两个催芽酵母菌株集合的构建,这些菌株有助于蛋白质组范围内蛋白质特性的测量。这些集合由基本上在每个开放阅读框(ORF)的C末端整合有抗原决定簇标签的菌株,一个具有串联亲和纯化(TAP)标签的菌株和一个具有绿色荧光蛋白(GFP)标签的菌株组成。我们显示,在这两个集合中,我们已通过确认融合蛋白的表达准确标记了所有ORF的高比例(约占蛋白质组的75%)。此外,我们证明了在执行高通量免疫沉淀实验中TAP收集的使用。基于这些收集和本文中描述的方法,我们希望酵母菌群落将扩大可用的蛋白质组水平数据的数量和类型。

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