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Multiplexed Proteome-Wide Protein Expression Profiling: Yeast Deubiquitylating Enzyme Knockout Strains

机译:蛋白质组蛋白多重表达分析:酵母去泛素化酶基因敲除菌株

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摘要

Characterizing a protein’s function often requires a description of the cellular state in its absence. Multiplexing in mass spectrometry-based proteomics has now achieved the ability to globally measure protein expression levels in yeast from 10 cell states simultaneously. We applied this approach to quantify expression differences in wild type and nine deubiquitylating enzyme (DUB) knockout strains with the goal of creating “information networks” that might provide deeper, mechanistic insights into a protein’s biological role. In total, more than 3700 proteins were quantified with high reproducibility across three biological replicates (30 samples in all). DUB mutants demonstrated different proteomics profiles, consistent with distinct roles for each family member. These included differences in total ubiquitin levels and specific chain linkages. Moreover, specific expression changes suggested novel functions for several DUB family members. For instance, the ubp3Δ mutant showed large expression changes for members of the cytochrome C oxidase complex, consistent with a role for Ubp3 in mitochondrial regulation. Several DUBs also showed broad expression changes for phosphate transporters as well as other components of the inorganic phosphate signaling pathway, suggesting a role for these DUBs in regulating phosphate metabolism. These data highlight the potential of multiplexed proteome-wide analyses for biological investigation and provide a framework for further study of the DUB family. Our methods are readily applicable to the entire collection of yeast deletion mutants and may help facilitate systematic analysis of yeast and other organisms.
机译:表征蛋白质的功能通常需要描述其不存在时的细胞状态。基于质谱的蛋白质组学的多重化现已实现了同时测量来自10个细胞状态的酵母中蛋白质表达水平的能力。我们采用这种方法来量化野生型和九种去泛素化酶(DUB)敲除菌株中的表达差异,目的是创建“信息网络”,以提供对蛋白质生物学作用的更深层次的机械洞察力。总共定量了3700种蛋白质,在三个生物学重复样品中具有很高的重现性(总共30个样品)。 DUB突变体表现出不同的蛋白质组学特征,与每个家庭成员的不同角色一致。这些包括总遍在蛋白水平和特定链连接的差异。此外,特定表达的改变暗示了几个DUB家族成员的新颖功能。例如,ubp3Δ突变体对细胞色素C氧化酶复合物的成员表现出较大的表达变化,这与Ubp3在线粒体调控中的作用一致。几个DUB还显示了磷酸盐转运蛋白以及无机磷酸盐信号传导途径的其他成分的广泛表达变化,表明这些DUB在调节磷酸盐代谢中的作用。这些数据突出了在整个蛋白质组学分析中进行生物学研究的潜力,并为DUB家族的进一步研究提供了框架。我们的方法很容易应用于酵母缺失突变体的整个收集,并可能有助于促进酵母和其他生物的系统分析。

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