Li Yan, Lin Huaqing, Deng Chunhui, Yang Pengyuan, Zhang Xiangmin
Department of Chemistry, Institute of Biomedical Sciences, Fudan University, Shanghai, China.
Proteomics. 2008 Jan;8(2):238-49. doi: 10.1002/pmic.200700454.
In this work, we present, to our knowledge, the first demonstration of the utility of iron oxide magnetic microspheres coated with gallium oxide for the highly selective enrichment of phosphopeptide prior to mass spectrometric analysis. These microspheres that we prepared not only have a shell of gallium oxide, giving them a high-trapping capacity for the phosphopeptides, but also their magnetic property enables easy isolation by positioning an external magnetic field. Tryptic digest products of phosphoproteins including beta-casein, ovalbumin, casein, as well as five protein mixtures were used as the samples to exemplify the feasibility of this approach. In very short time (only 0.5 min), phosphopeptides sufficient for characterization by MALDI-TOF-MS were selectively enriched by the Ga(2)O(3)-coated Fe(3)O(4) microspheres. The performance of the Ga(2)O(3)-coated Fe(3)O(4) microspheres were further compared with Fe(3+)-immobilized magnetic silica microspheres, commercial Fe(3+)-IMAC resin, and TiO2 beads for enrichment of peptides originating from tryptic digestion of beta-casein and BSA with a molar ratio of 1:50, and the results proved a stronger selective ability of Ga(2)O(3)-coated Fe(3)O(4) microspheres over the other materials. Finally, the Ga(2)O(3)-coated Fe(3)O(4) microspheres were successfully utilized for enrichment of phosphopeptides from digestion products of rat liver extract. All results show that Ga(2)O(3)-coated Fe(3)O(4) microsphere is an effective material for selective isolation and concentration of phosphopeptides.
据我们所知,在本研究中,首次展示了用氧化镓包覆的氧化铁磁性微球在质谱分析前对磷酸肽进行高选择性富集的效用。我们制备的这些微球不仅有一层氧化镓外壳,使其对磷酸肽具有高捕获能力,而且其磁性使得通过施加外部磁场就能轻松分离。包括β-酪蛋白、卵清蛋白、酪蛋白在内的磷蛋白的胰蛋白酶消化产物以及五种蛋白质混合物被用作样本,以例证该方法的可行性。在极短的时间内(仅0.5分钟),用Ga₂O₃包覆的Fe₃O₄微球就选择性地富集了足以通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF-MS)进行表征的磷酸肽。将Ga₂O₃包覆的Fe₃O₄微球与固定Fe³⁺的磁性二氧化硅微球、商用Fe³⁺-IMAC树脂以及TiO₂磁珠用于富集β-酪蛋白和牛血清白蛋白(BSA)胰蛋白酶消化产生的摩尔比为1:50的肽段的性能进行了进一步比较,结果证明Ga₂O₃包覆的Fe₃O₄微球比其他材料具有更强的选择能力。最后,Ga₂O₃包覆的Fe₃O₄微球成功用于从大鼠肝脏提取物消化产物中富集磷酸肽。所有结果表明,Ga₂O₃包覆的Fe₃O₄微球是一种用于选择性分离和浓缩磷酸肽的有效材料。