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Full Dynamic Range Proteome Analysis of S. cerevisiae by Targeted Proteomics

机译:靶向蛋白质组学对酿酒酵母的全动态范围蛋白质组学分析

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摘要

The rise of systems biology implied a growing demand for highly sensitive techniques for the fast and consistent detection and quantification of target sets of proteins across multiple samples. This is only partly achieved by classical mass spectrometry or affinity-based methods. We applied a targeted proteomics approach based on selected reaction monitoring (SRM) to detect and quantify proteins expressed to a concentration below 50 copies/cell in total S. cerevisiae digests. The detection range can be extended to single-digit copies/cell and to proteins undetected by classical methods. We illustrate the power of the technique by the consistent and fast measurement of a network of proteins spanning the entire abundance range over a growth time course of S. cerevisiae transiting through a series of metabolic phases. We therefore demonstrate the potential of SRM-based proteomics to provide assays for the measurement of any set of proteins of interest in yeast at high-throughput and quantitative accuracy.
机译:系统生物学的兴起意味着对快速,一致地检测和定量多个样品中目标蛋白的高度灵敏技术的需求不断增长。这只能通过经典的质谱法或基于亲和力的方法部分实现。我们基于选择的反应监测(SRM)应用了有针对性的蛋白质组学方法,以检测和定量表达在总酿酒酵母消化物中浓度低于50个拷贝/细胞的蛋白质。检测范围可以扩展到单位拷贝数/细胞,也可以扩展到传统方法无法检测到的蛋白质。我们通过持续和快速测量跨越酿酒酵母通过一系列代谢阶段的整个生长过程跨越整个丰度范围的蛋白质网络来说明技术的力量。因此,我们证明了基于SRM的蛋白质组学技术的潜力,可提供用于以高通量和定量精度测量酵母中感兴趣的任何蛋白质的测定方法。

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