Yu Li-Rong, Veenstra Timothy
National Center for Toxicological Research, FDA, Jefferson, AR, USA.
Methods Mol Biol. 2013;1002:93-103. doi: 10.1007/978-1-62703-360-2_8.
Identification of phosphoproteins or phosphopeptides as cancer biomarkers is an emerging field in phosphoproteomics. Owing to the low stoichiometric nature of protein phosphorylation, phosphoproteins or phosphopeptides must be enriched prior to downstream mass spectrometry analysis. Titanium dioxide (TiO2) has been prevalently used to enrich phosphopeptides from complex proteome samples due to its high affinity for phosphopeptides, and the method is straightforward. In this protocol, an offline phosphopeptide enrichment procedure using TiO2 columns is described. Peptides from a proteome lysate are loaded onto a TiO2 column in an acidic environment, followed by column washing with aqueous, organic, and ammonium glutamate (NH4Glu) buffers at acidic conditions. Phosphopeptides are eluted using an ammonia solution at high pH. Use of NH4Glu significantly reduces nonspecific bindings while a high recovery rate (84 %) of phosphopeptides is retained. The method is optimized for large-scale phosphoproteomic analysis and phosphoprotein biomarker discovery starting from sub-milligram or milligrams of proteome samples.
将磷蛋白或磷酸肽鉴定为癌症生物标志物是磷酸化蛋白质组学中一个新兴的领域。由于蛋白质磷酸化的化学计量性质较低,在进行下游质谱分析之前,必须对磷蛋白或磷酸肽进行富集。二氧化钛(TiO2)因其对磷酸肽具有高亲和力,已被广泛用于从复杂蛋白质组样品中富集磷酸肽,且该方法操作简单。在本方案中,描述了一种使用TiO2柱的离线磷酸肽富集程序。蛋白质组裂解物中的肽在酸性环境下加载到TiO2柱上,随后在酸性条件下用含水、有机和谷氨酸铵(NH4Glu)缓冲液冲洗柱子。使用高pH值的氨溶液洗脱磷酸肽。NH4Glu的使用显著降低了非特异性结合,同时保留了较高的磷酸肽回收率(84%)。该方法针对从亚毫克或毫克级蛋白质组样品开始的大规模磷酸化蛋白质组分析和磷蛋白生物标志物发现进行了优化。