Tape Christopher J, Worboys Jonathan D, Sinclair John, Gourlay Robert, Vogt Janis, McMahon Kelly M, Trost Matthias, Lauffenburger Douglas A, Lamont Douglas J, Jørgensen Claus
The Institute of Cancer Research , 237 Fulham Road, London SW3 6JB, United Kingdom.
Anal Chem. 2014 Oct 21;86(20):10296-302. doi: 10.1021/ac5025842. Epub 2014 Oct 2.
Reproducible, comprehensive phosphopeptide enrichment is essential for studying phosphorylation-regulated processes. Here, we describe the application of hyper-porous magnetic TiO2 and Ti-IMAC microspheres for uniform automated phosphopeptide enrichment. Combining magnetic microspheres with a magnetic particle-handling robot enables rapid (45 min), reproducible (r2 ≥ 0.80) and high-fidelity (>90% purity) phosphopeptide purification in a 96-well format. Automated phosphopeptide enrichment demonstrates reproducible synthetic phosphopeptide recovery across 2 orders of magnitude, "well-to-well" quantitative reproducibility indistinguishable to internal SILAC standards, and robust "plate-to-plate" reproducibility across 5 days of independent enrichments. As a result, automated phosphopeptide enrichment enables statistical analysis of label-free phosphoproteomic samples in a high-throughput manner. This technique uses commercially available, off-the-shelf components and can be easily adopted by any laboratory interested in phosphoproteomic analysis. We provide a free downloadable automated phosphopeptide enrichment program to facilitate uniform interlaboratory collaboration and exchange of phosphoproteomic data sets.
可重现、全面的磷酸化肽富集对于研究磷酸化调控过程至关重要。在此,我们描述了超多孔磁性二氧化钛和钛离子金属亲和色谱(Ti-IMAC)微球在均匀自动化磷酸化肽富集中的应用。将磁性微球与磁性颗粒处理机器人相结合,能够在96孔板形式下实现快速(45分钟)、可重现(r2≥0.80)且高保真(纯度>90%)的磷酸化肽纯化。自动化磷酸化肽富集在2个数量级范围内展示了可重现的合成磷酸化肽回收率,“孔间”定量重现性与内部稳定同位素标记氨基酸细胞培养(SILAC)标准无显著差异,并且在5天的独立富集过程中具有稳健的“板间”重现性。因此,自动化磷酸化肽富集能够以高通量方式对无标记磷酸化蛋白质组样品进行统计分析。该技术使用市售现成组件,任何对磷酸化蛋白质组分析感兴趣的实验室都可轻松采用。我们提供了一个免费可下载的自动化磷酸化肽富集程序,以促进实验室间的统一协作和磷酸化蛋白质组数据集的交换。