Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), Department of Chemistry, Wuhan University, Wuhan, China.
J Chromatogr A. 2011 May 6;1218(18):2528-39. doi: 10.1016/j.chroma.2011.02.071. Epub 2011 Mar 4.
Due to the low abundance of phosphoproteins and substoichiometry of phosphorylation, the elucidation of protein phosphorylation requires highly specific materials for isolation of phosphopeptides from biological samples prior to mass spectrometric analysis. In this study, chlorophosphonazo type derivatives of chromotropic acid including p-hydroxychlorophosphonazo (HCPA) and chlorophosphonazo I (CPA I), traditionally used in the photometric determination of transition metal ions, have been employed as chelating ligands in the preparation of novel affinity materials for phosphopeptide enrichment. The chromogenic reagents of HCPA and CPA I were chemically modified on the surface of silica nanoparticles, and the functionalized materials were charged with zirconium ions through the strong complexation between chelating ligands and Zr(4+). The obtained zirconium-chlorophosphonazo chelate-modified silica nanoparticles (Zr-HCPA-SNPs and Zr-CPA I-SNPs) were applied to the selective enrichment of phosphopeptides, followed by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) analysis. The purification procedures were optimized using α-casein digest at first, and then the performance of these two affinity materials for efficient and specific enrichment of phosphopeptides was evaluated with the tryptic digests of standard proteins (α-casein, β-casein, ovalbumin and bovine serum albumin). It is found that Zr-HCPA-SNPs are superior to Zr-CPA I-SNPs in phosphopeptide enrichment. Using Zr-HCPA-SNPs to trap phosphopeptides in α-casein digest, the detection limit was close to 50fmol based on MALDI-TOF MS analysis. Finally, Zr-HCPA-SNPs were used to directly isolate phosphopeptides from diluted human serum of healthy, diabetes and hypertension persons, respectively. Our results show that the constitution and level of phosphopeptides are remarkably different among the three groups, which indicate the powerful potentials of Zr-HCPA-SNPs in disease diagnosis and biomarker screening.
由于磷酸化蛋白质的丰度低且磷酸化的亚化学计量,因此在进行质谱分析之前,需要高度特异性的材料从生物样品中分离磷酸肽,以阐明蛋白质磷酸化。在这项研究中,传统上用于光度法测定过渡金属离子的变色酸的氯膦酸酯衍生物,包括对羟基氯膦酸(HCPA)和氯膦酸 I(CPA I),已被用作螯合配体用于制备新型亲和材料用于磷酸肽富集。HCPA 和 CPA I 的显色试剂在硅胶纳米粒子的表面上进行了化学修饰,并且通过螯合配体与 Zr(4+)之间的强络合作用将功能化材料荷负电到锆离子上。所得的锆-氯膦酸酯螯合修饰的硅胶纳米粒子(Zr-HCPA-SNPs 和 Zr-CPA I-SNPs)被用于选择性富集磷酸肽,然后进行基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)分析。首先使用α-酪蛋白消化物优化了纯化程序,然后使用标准蛋白质(α-酪蛋白、β-酪蛋白、卵清蛋白和牛血清白蛋白)的胰蛋白酶消化物评估了这两种亲和材料对磷酸肽的高效和特异性富集的性能。结果发现,Zr-HCPA-SNPs 在磷酸肽富集方面优于 Zr-CPA I-SNPs。使用 Zr-HCPA-SNPs 从α-酪蛋白消化物中捕获磷酸肽,基于 MALDI-TOF MS 分析,检测限接近 50fmol。最后,Zr-HCPA-SNPs 分别直接从健康、糖尿病和高血压患者的稀释人血清中分离磷酸肽。我们的结果表明,三组之间磷酸肽的组成和水平有明显差异,这表明 Zr-HCPA-SNPs 在疾病诊断和生物标志物筛选方面具有强大的潜力。