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Phosphopeptide Separation Using Radially Aligned Titania Nanotubes on Titanium Wire

机译:在钛丝上使用径向排列的二氧化钛纳米管分离磷酸肽

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Phosphoproteomic analysis offers a unique view of cellular function and regulation in biological systems by providing global measures of a key cellular regulator in the form of protein phosphorylation. Understanding the phosphorylation changes between normal and diseased cells or tissues offers a window into the mechanism of disease and thus potential targets for therapeutic intervention. A key step in these studies is the enrichment of phosphorylated peptides that are typically separated and analyzed by using liquid chromatography mass spectrometry. The mesoporous titania beads/particles (e.g., Titansphere TiO2 beads from GL Sciences Inc., Japan) that are widely used for phosphopeptide enrichment are expensive and offer very limited opportunities for further performance improvement. Titiania nanotube arrays have shown promising characteristics for phosphopeptide separation. Here we report a proof-of-concept study to evaluate the efficacy of nanotubes on Ti-wire for phosphoproteomics research. We used titania nanotubes radially grown on titanium wires as well as the commercial beads to separate phosphopeptides generated from mouse liver complex tissue extracts. Our studies revealed that the nanotubes on metal wire provide comparable efficacy for enrichment of phophopeptides and offer an ease of use advantage versus mesoporous beads, thus having the potential to become a low cost and more practical material/methodology for phosphopeptide enrichment in biological studies.
机译:通过提供蛋白质磷酸化形式的关键细胞调节剂的整体测量,磷酸化蛋白质组学分析提供了生物系统中细胞功能和调节的独特视角。了解正常细胞和患病细胞或组织之间的磷酸化变化为了解疾病机理提供了一个窗口,从而为治疗干预提供了潜在的靶标。这些研究中的关键步骤是富集磷酸化的肽,这些肽通常通过液相色谱质谱法进行分离和分析。广泛用于磷酸肽富集的中孔二氧化钛珠/颗粒(例如,日本GL Sciences Inc.的Titansphere TiO 2珠)价格昂贵,并且为进一步提高性能提供了非常有限的机会。氧化钛纳米管阵列已显示出磷肽分离的有希望的特征。在这里,我们报告了一项概念验证研究,以评估Ti-wire上纳米管对磷酸化蛋白质组学研究的功效。我们使用了径向生长在钛丝上的二氧化钛纳米管以及商业珠子,以分离从小鼠肝脏复杂组织提取物中产生的磷酸肽。我们的研究表明,金属丝上的纳米管在富集磷酸肽方面具有可比的功效,并且与中孔珠相比具有易于使用的优势,因此有可能成为低成本和更实用的生物学研究中磷肽富集的材料/方法。

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