Human Proteomics Program, School of Medicine and Public Health, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
Anal Chem. 2010 Sep 1;82(17):7193-201. doi: 10.1021/ac100877a.
Mass spectrometry (MS)-based phosphoproteomics remains challenging due to the low abundance of phosphoproteins and substoichiometric phosphorylation. This demands better methods to effectively enrich phosphoproteins/peptides prior to MS analysis. We have previously communicated the first use of mesoporous zirconium dioxide (ZrO(2)) nanomaterials for effective phosphopeptide enrichment. Here, we present the full report including the synthesis, characterization, and application of mesoporous titanium dioxide (TiO(2)), ZrO(2), and hafnium dioxide (HfO(2)) in phosphopeptide enrichment and MS analysis. Mesoporous ZrO(2) and HfO(2) are demonstrated to be superior to TiO(2) for phosphopeptide enrichment from a complex mixture with high specificity (>99%), which could almost be considered as a "purification", mainly because of the extremely large active surface area of mesoporous nanomaterials. A single enrichment and Fourier transform MS analysis of phosphopeptides digested from a complex mixture containing 7% of alpha-casein identified 21 out of 22 phosphorylation sites for alpha-casein. Moreover, the mesoporous ZrO(2) and HfO(2) can be reused after a simple solution regeneration procedure with comparable enrichment performance to that of fresh materials. Mesoporous ZrO(2) and HfO(2) nanomaterials hold great promise for applications in MS-based phosphoproteomics.
基于质谱(MS)的磷酸化蛋白质组学仍然具有挑战性,因为磷酸化蛋白质和亚化学计量的磷酸化含量较低。这需要更好的方法在 MS 分析之前有效富集磷酸肽/肽。我们之前已经交流了首次使用介孔二氧化锆(ZrO(2))纳米材料进行有效磷酸肽富集的方法。在这里,我们提供了完整的报告,包括介孔二氧化钛(TiO(2))、ZrO(2)和二氧化铪(HfO(2))的合成、表征和在磷酸肽富集和 MS 分析中的应用。介孔 ZrO(2)和 HfO(2)在从复杂混合物中进行磷酸肽富集方面表现优于 TiO(2),具有高特异性(>99%),几乎可以被视为“纯化”,主要是因为介孔纳米材料具有极大的活性表面积。从含有 7%α-酪蛋白的复杂混合物中消化的磷酸肽的单一富集和傅里叶变换 MS 分析鉴定出了 22 个α-酪蛋白磷酸化位点中的 21 个。此外,介孔 ZrO(2)和 HfO(2)在经过简单的溶液再生程序后可以重复使用,其富集性能与新鲜材料相当。介孔 ZrO(2)和 HfO(2)纳米材料在基于 MS 的磷酸化蛋白质组学中具有广阔的应用前景。