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首页> 外文期刊>Journal of mass spectrometry: JMS >Enrichment specificity of micro and nano-sized titanium and zirconium dioxides particles in phosphopeptide mapping
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Enrichment specificity of micro and nano-sized titanium and zirconium dioxides particles in phosphopeptide mapping

机译:微米和纳米级二氧化钛和二氧化锆颗粒在磷酸肽图中的富集特异性

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摘要

Owning to their anion-exchange properties, titanium and zirconium dioxides are widely used in phosphopeptide enrichment and purification protocols. The physical and chemical characteristics of the particles can significantly influence the loading capacity, the capture efficiency and phosphopeptide specificity and thus the outcome of the analyses. Although there are a number of protocols and commercial kits available for phosphopeptide purification, little data are found in the literature on the choice of the enrichment media. Here, we studied the influence of particle size on the affinity capture of phosphopeptides by TiO_2 and ZrO_2. Bovine milk casein derived phosphopeptides were enriched by micro and nanoparticles using a single-tube in-solution protocol at different peptide-to-beads ratio ranging from 1: 1 to 1: 200. Unsupervised hierarchical cluster analysis based on the whole set of Matrix Assisted Laser Desorption/Ionization time-of-flight mass spectra of the phosphopeptide enriched samples revealed 62 clustered peptide peaks and shows that nanoparticles have considerably higher enrichment capacity than bulk microparticles. Moreover, ZrO_2 particles have higher enrichment capacity than TiO_2. The selectivity and specificity of the enrichment was studied by monitoring the ion abundances of monophosphorylated, multiphosphorylated and non-phosphorylated casein-derived peptide peaks at different peptide-to-beads ratios. Comparison of the resulting plots enabled the determination of the optimal peptide-to-beads ratios for the different beads studied and showed that nano-TiO_2 have higher selectivity for phosphopeptides than nano-ZrO_2 particles.
机译:由于其阴离子交换特性,钛白粉和锆粉被广泛用于磷酸肽的富集和纯化。颗粒的物理和化学特性会显着影响负载量,捕获效率和磷酸肽特异性,进而影响分析结果。尽管有许多可用于纯化磷酸肽的方案和商业试剂盒,但是在文献中很少有关于富集培养基选择的数据。在这里,我们研究了粒径对TiO_2和ZrO_2吸附磷酸肽的影响。牛酪蛋白衍生的磷酸肽通过单管溶液方案以1:1到1:200的不同肽与珠比例富集微米和纳米颗粒。基于整个矩阵辅助系统的无监督分层聚类分析富含磷酸肽的样品的激光解吸/电离飞行时间质谱图显示了62个簇集的肽峰,表明纳米颗粒的富集能力比本体微粒高得多。此外,ZrO_2颗粒的富集能力比TiO_2高。通过监测酪蛋白衍生的单磷酸化,多磷酸化和非磷酸化的酪蛋白肽峰在不同肽对珠子比率下的离子丰度,研究了富集的选择性和特异性。所得图的比较使得能够确定所研究的不同珠子的最佳肽与珠子的比率,并表明纳米TiO_2对磷肽的选择性比纳米ZrO_2颗粒高。

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