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A 'Proteomic Ruler' for Protein Copy Number and Concentration Estimation without Spike-in Standards.

机译:用于蛋白质拷贝数和浓度估计的“蛋白质组标尺”,不含加标标准品。

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摘要

Absolute protein quantification using mass spectrometry (MS)-based proteomics delivers protein concentrations or copy numbers per cell. Existing methodologies typically require a combination of isotope-labeled spike-in references, cell counting, and protein concentration measurements. Here we present a novel method that delivers similar quantitative results directly from deep eukaryotic proteome datasets without any additional experimental steps. We show that the MS signal of histones can be used as a "proteomic ruler" because it is proportional to the amount of DNA in the sample, which in turn depends on the number of cells. As a result, our proteomic ruler approach adds an absolute scale to the MS readout and allows estimation of the copy numbers of individual proteins per cell. We compare our protein quantifications with values derived via the use of stable isotope labeling by amino acids in cell culture and protein epitope signature tags in a method that combines spike-in protein fragment standards with precise isotope label quantification. The proteomic ruler approach yields quantitative readouts that are in remarkably good agreement with results from the precision method. We attribute this surprising result to the fact that the proteomic ruler approach omits error-prone steps such as cell counting or protein concentration measurements. The proteomic ruler approach is readily applicable to any deep eukaryotic proteome dataset-even in retrospective analysis-and we demonstrate its usefulness with a series of mouse organ proteomes. 2014 by The American Society for Biochemistry and Molecular Biology, Inc.
机译:使用基于质谱(MS)的蛋白质组学对蛋白质进行绝对定量分析可得出每个细胞的蛋白质浓度或拷贝数。现有方法通常需要结合同位素标记的刺入参考,细胞计数和蛋白质浓度测量。在这里,我们提出了一种新颖的方法,无需进一步的实验步骤即可直接从深层真核蛋白质组数据集中提供相似的定量结果。我们表明,组蛋白的MS信号可以用作“蛋白质组尺”,因为它与样品中DNA的数量成正比,而DNA的数量又取决于细胞的数量。结果,我们的蛋白质组标尺方法为MS读数增加了绝对标度,并允许估计每个细胞中单个蛋白质的拷贝数。我们将蛋白质定量与通过在细胞培养中使用氨基酸进行稳定同位素标记和蛋白质表位特征标签所获得的值进行比较,该方法结合了尖峰蛋白质片段标准品和精确同位素标记定量方法。蛋白质组标尺方法产生的定量读数与精密方法的结果非常吻合。我们将这一令人惊讶的结果归因于蛋白质组标尺方法省略了容易出错的步骤(例如细胞计数或蛋白质浓度测量)的事实。蛋白质组尺统治者的方法很容易适用于任何深层真核蛋白质组数据集,即使在追溯分析中也是如此,我们证明了它在一系列小鼠器官蛋白质组学中的有用性。美国生物化学与分子生物学学会,2014年。

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