Banting and Best Department of Medical Research, University of Toronto, Toronto, Ontario, Canada.
Mol Cell Proteomics. 2010 Nov;9(11):2460-73. doi: 10.1074/mcp.M900456-MCP200. Epub 2010 May 13.
Effective methods to detect and quantify functionally linked regulatory proteins in complex biological samples are essential for investigating mammalian signaling pathways. Traditional immunoassays depend on proprietary reagents that are difficult to generate and multiplex, whereas global proteomic profiling can be tedious and can miss low abundance proteins. Here, we report a target-driven liquid chromatography-tandem mass spectrometry (LC-MS/MS) strategy for selectively examining the levels of multiple low abundance components of signaling pathways which are refractory to standard shotgun screening procedures and hence appear limited in current MS/MS repositories. Our stepwise approach consists of: (i) synthesizing microscale peptide arrays, including heavy isotope-labeled internal standards, for use as high quality references to (ii) build empirically validated high density LC-MS/MS detection assays with a retention time scheduling system that can be used to (iii) identify and quantify endogenous low abundance protein targets in complex biological mixtures with high accuracy by correlation to a spectral database using new software tools. The method offers a flexible, rapid, and cost-effective means for routine proteomic exploration of biological systems including "label-free" quantification, while minimizing spurious interferences. As proof-of-concept, we have examined the abundance of transcription factors and protein kinases mediating pluripotency and self-renewal in embryonic stem cell populations.
在研究哺乳动物信号通路时,能够有效检测和定量分析复杂生物样本中功能相关的调控蛋白的方法至关重要。传统的免疫检测法依赖于难以制备和多重检测的专利试剂,而全蛋白质组分析则可能繁琐且会遗漏低丰度蛋白。在这里,我们报告了一种靶向驱动的液相色谱-串联质谱(LC-MS/MS)策略,用于选择性地检测信号通路中多个低丰度成分的水平,这些成分难以通过标准的鸟枪法筛选程序检测到,因此在当前的 MS/MS 数据库中似乎受到限制。我们的逐步方法包括:(i)合成微尺度肽阵列,包括重同位素标记的内标,作为高质量的参考物,用于(ii)构建经过经验验证的高密度 LC-MS/MS 检测分析,采用保留时间调度系统,可用于(iii)通过使用新的软件工具与光谱数据库进行相关联,以高精度鉴定和定量复杂生物混合物中的内源性低丰度蛋白靶标。该方法为生物系统的常规蛋白质组学探索提供了一种灵活、快速且具有成本效益的手段,包括“无标记”定量,同时最小化了虚假干扰。作为概念验证,我们已经检查了在胚胎干细胞群体中参与多能性和自我更新的转录因子和蛋白激酶的丰度。