State Key Laboratory of Molecular Engineering of Polymers and Department of Macromolecular Science, Fudan University, Shanghai 200433, People's Republic of China.
ACS Nano. 2012 Apr 24;6(4):3179-88. doi: 10.1021/nn3009646. Epub 2012 Apr 2.
Selective enrichment of phosphoproteins or phosphopeptides from complex mixtures is essential for MS-based phosphoproteomics, but still remains a challenge. In this article, we described an unprecedented approach to synthesize magnetic mesoporous Fe(3)O(4)@mTiO(2) microspheres with a well-defined core/shell structure, a pure and highly crystalline TiO(2) layer, high specific surface area (167.1 m(2)/g), large pore volume (0.45 cm(3)/g), appropriate and tunable pore size (8.6-16.4 nm), and high magnetic susceptibility. We investigated the applicability of Fe(3)O(4)@mTiO(2) microspheres in a study of the selective enrichment of phosphopeptides. The experiment results demonstrated that the Fe(3)O(4)@mTiO(2) possessed remarkable selectivity for phosphopeptides even at a very low molar ratio of phosphopeptides/non-phosphopeptides (1:1000), large enrichment capacity (as high as 225 mg/g, over 10 times as that of the Fe(3)O(4)@TiO(2) microspheres), extreme sensitivity (the detection limit was at the fmol level), excellent speed (the enrichment can be completed in less than 5 min), and high recovery of phosphopeptides (as high as 93%). In addition, the high magnetic susceptibility allowed convenient separation of the target peptides by magnetic separation. These outstanding features give the Fe(3)O(4)@mTiO(2) composite microspheres high benefit for mass spectrometric analysis of phosphopeptides.
从复杂混合物中选择性富集磷酸化蛋白或磷酸肽是基于 MS 的磷酸化蛋白质组学的关键,但仍然是一个挑战。在本文中,我们描述了一种前所未有的方法,用于合成具有明确定义的核/壳结构、纯且高度结晶的 TiO2 层、高比表面积(167.1 m2/g)、大孔体积(0.45 cm3/g)、适当且可调的孔径(8.6-16.4nm)和高磁导率的磁性介孔 Fe3O4@mTiO2 微球。我们研究了 Fe3O4@mTiO2 微球在选择性富集磷酸肽研究中的适用性。实验结果表明,即使在非常低的磷酸肽/非磷酸肽摩尔比(1:1000)下,Fe3O4@mTiO2 对磷酸肽也具有显著的选择性,其富集容量大(高达 225mg/g,是 Fe3O4@TiO2 微球的 10 倍以上)、灵敏度极高(检测限可达飞摩尔级)、速度极快(富集可在不到 5 分钟内完成)、磷酸肽回收率高(高达 93%)。此外,高磁导率允许通过磁分离方便地分离目标肽。这些卓越的特性使 Fe3O4@mTiO2 复合微球非常有利于磷酸肽的质谱分析。