Department of Proteomics and Signal Transduction, Max-Planck-Institute of Biochemistry, Am Klopferspitz 18, 82152 Martinsried, Germany.
Mol Cell Proteomics. 2011 Aug;10(8):M110.003699. doi: 10.1074/mcp.M110.003699. Epub 2011 May 17.
In-depth MS-based proteomics has necessitated fractionation of either proteins or peptides or both, often requiring considerable analysis time. Here we employ long liquid chromatography runs with high resolution coupled to an instrument with fast sequencing speed to investigate how much of the proteome is directly accessible to liquid chromatography-tandem MS characterization without any prefractionation steps. Triplicate single-run analyses identified 2990 yeast proteins, 68% of the total measured in a comprehensive yeast proteome. Among them, we covered the enzymes of the glycolysis and gluconeogenesis pathway targeted in a recent multiple reaction monitoring study. In a mammalian cell line, we identified 5376 proteins in a triplicate run, including representatives of 173 out of 200 KEGG metabolic and signaling pathways. Remarkably, the majority of proteins could be detected in the samples at sub-femtomole amounts and many in the low attomole range, in agreement with absolute abundance estimation done in previous works (Picotti et al. Cell, 138, 795-806, 2009). Our results imply an unexpectedly large dynamic range of the MS signal and sensitivity for liquid chromatography-tandem MS alone. With further development, single-run analysis has the potential to radically simplify many proteomic studies while maintaining a systems-wide view of the proteome.
基于 MS 的深入蛋白质组学需要对蛋白质或肽进行分级,通常需要相当长的分析时间。在这里,我们采用长液相色谱运行和高分辨率与具有快速测序速度的仪器结合,研究在没有任何预分级步骤的情况下,有多少蛋白质组可以直接通过液相色谱-串联质谱法进行特征分析。三次单运行分析鉴定了 2990 种酵母蛋白,占综合酵母蛋白质组中测量的蛋白质的 68%。其中,我们涵盖了最近一项多重反应监测研究中靶向的糖酵解和糖异生途径的酶。在哺乳动物细胞系中,我们在三次运行中鉴定了 5376 种蛋白质,其中包括 200 个 KEGG 代谢和信号通路中的 173 个代表。值得注意的是,大多数蛋白质可以在亚飞摩尔量的样品中检测到,许多蛋白质在低阿托摩尔范围内,与之前工作中的绝对丰度估计一致(Picotti 等人,《细胞》,138,795-806,2009)。我们的结果意味着液相色谱-串联质谱法本身的 MS 信号和灵敏度具有出乎意料的大动态范围。随着进一步的发展,单次运行分析有可能在保持蛋白质组系统范围的同时,极大地简化许多蛋白质组学研究。