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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >An optimized magnetite microparticle-based phosphopeptide enrichment strategy for identifying multiple phosphorylation sites in an immunoprecipitated protein
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An optimized magnetite microparticle-based phosphopeptide enrichment strategy for identifying multiple phosphorylation sites in an immunoprecipitated protein

机译:一种优化的基于磁铁矿微粒的磷酸肽富集策略,用于鉴定免疫沉淀蛋白中的多个磷酸化位点

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摘要

To further improve the selectivity and throughput of phosphopeptide analysis for the samples from real-time cell lysates, here we demonstrate a highly efficient method for phosphopeptide enrichment via newly synthesized magnetite microparticles and the concurrent mass spectrometric analysis. The magnetite microparticles show excellent magnetic responsivity and redispersibility for a quick enrichment of those phosphopeptides in solution. The selectivity and sensitivity of magnetite microparticles in phosphopeptide enrichment are first evaluated by a known mixture containing both phosphorylated and nonphosphorylated proteins. Compared with the titanium dioxide-coated magnetic beads commercially available, our magnetite microparticles show a better specificity toward phosphopeptides. The selectively-enriched phosphopeptides from tryptic digests of β-casein can be detected down to 0.4fmolμl~(-1), whereas the recovery efficiency is approximately 90% for monophosphopeptides. This magnetite microparticle-based affinity technology with optimized enrichment conditions is then immediately applied to identify all possible phosphorylation sites on a signal protein isolated in real time from a stress-stimulated mammalian cell culture. A large fraction of peptides eluted from the magnetic particle enrichment step were identified and characterized as either single- or multiphosphorylated species by tandem mass spectrometry. With their high efficiency and utility for phosphopeptide enrichment, the magnetite microparticles hold great potential in the phosphoproteomic studies on real-time samples from cell lysates.
机译:为了进一步提高实时细胞裂解液样品的磷酸肽分析的选择性和通量,在这里我们展示了一种通过新合成的磁铁矿微粒和同时进行的质谱分析富集磷酸肽的高效方法。磁铁矿微粒表现出出色的磁响应性和可再分散性,可快速富集溶液中的那些磷酸肽。首先通过包含磷酸化和非磷酸化蛋白质的已知混合物评估磁铁矿微粒在磷酸肽富集中的选择性和敏感性。与市售的二氧化钛涂层磁珠相比,我们的磁铁矿微粒显示出对磷酸肽更好的特异性。从β-酪蛋白的胰蛋白酶消化物中选择性富集的磷酸肽可以检测到低至0.4fmolμl〜(-1),而单磷酸肽的回收率约为90%。然后立即将这种具有优化富集条件的基于磁铁矿微粒的亲和技术应用于鉴定从应激刺激的哺乳动物细胞培养物中实时分离的信号蛋白上的所有可能的磷酸化位点。鉴定了从磁性颗粒富集步骤洗脱的大部分肽,并通过串联质谱将其表征为单磷酸化或多磷酸化的物质。磁铁矿微粒具有高效和富集磷酸肽的功能,因此在细胞裂解液实时样品的磷酸蛋白质组学研究中具有巨大潜力。

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