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首页> 外文期刊>Analytical chemistry >Selective Isolation at the Femtomole Level of Phosphopeptides from Proteolytic Digests Using 2D-NanoLC-ESI-MS/MS and Titanium Oxide Precolumns
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Selective Isolation at the Femtomole Level of Phosphopeptides from Proteolytic Digests Using 2D-NanoLC-ESI-MS/MS and Titanium Oxide Precolumns

机译:使用2D-NanoLC-ESI-MS / MS和二氧化钛预柱从蛋白水解消化物中的磷肽的前富勒水平上进行选择性分离

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摘要

Selective detection of phosphopeptides from proteolytic digests is a challenging and highly relevant task in many proteomics applications. Often phosphopeptides are present in small amounts and need selective isolation or enrichment before identification. Here we report a novel automated method for the enrichment of phosphopeptides from complex mixtures. The method employs a two-dimensional column setup, with titanium oxide-based solid-phase material (Titansphere) as the first dimension and reversed-phase material as the second dimension. Phosphopeptides are separated from nonphosphorylated peptides by trapping them under acidic conditions on a TiO_(2) precolumn. Nonphosphorylated peptides break through and are trapped on a reversed-phase precolumn after which they are analyzed by nanoflow LC-ESI-MS/MS. Subsequently, phosphopeptides are desorbed from the TiO_(2) column under alkaline conditions, reconcentrated onto the reversed-phase precolumn, and analyzed by nanoflow LC-ESI-MS/MS. The selectivity and practicality of using TiO_(2) precolumns for trapping phosphopeptides are demonstrated via the analysis of a model peptide RKISASEF, in a 1:1 mixture of a non- and a monophosphorylated form. A sample of 125 fmol of the phosphorylated peptide could easily be isolated from the nonphosphorylated peptide with a recovery above 90%. In addition, proteolytic digests of three different autophosphorylation forms of the 153-kDa homodimeric cGMP-dependent protein kinase are analyzed. From proteolytic digests of the fully autophosphorylated protein at least eight phosphorylation sites are identified, including two previously uncharacterized sites, namely, Ser-26 and Ser-44. Ser-26 is characterized as a minor phosphorylation site in purified PKG samples, while Ser-44 is identified as a novel in vitro autophosphorylation target. These results clearly show that TiO_(2) has strong affinity for phosphorylated peptides, and thus, we conclude that this material has a high potential in the field of phosphoproteomics.
机译:在许多蛋白质组学应用中,从蛋白水解消化物中选择性检测磷酸肽是一项具有挑战性且高度相关的任务。磷酸肽通常以少量存在,需要在鉴定前进行选择性分离或富集。在这里,我们报告了一种从复杂混合物中富集磷酸肽的新型自动化方法。该方法采用二维色谱柱设置,其中氧化钛基固相材料(Titansphere)为第一维,反相材料为第二维。通过将酸性肽在酸性条件下捕获在TiO_(2)预柱上,将其与非磷酸化的肽分离。非磷酸化的肽会突破并被捕获在反相预柱上,然后通过纳流LC-ESI-MS / MS对其进行分析。随后,磷酸肽在碱性条件下从TiO_(2)柱上解吸,再浓缩到反相预柱上,并通过纳流LC-ESI-MS / MS进行分析。通过对模型肽RKISASEF的分析,以非磷酸化形式和单磷酸化形式的1:1混合物,证明了使用TiO_(2)预柱捕获磷酸肽的选择性和实用性。可以容易地从非磷酸化肽中分离出125 fmol磷酸化肽的样品,回收率超过90%。此外,分析了153-kDa同源二聚体cGMP依赖性蛋白激酶的三种不同自磷酸化形式的蛋白水解消化物。从完全自磷酸化的蛋白质的蛋白水解消化物中,鉴定出至少八个磷酸化位点,包括两个先前未表征的位点,即Ser-26和Ser-44。 Ser-26被表征为纯化的PKG样品中的次要磷酸化位点,而Ser-44被鉴定为新型的体外自磷酸化靶标。这些结果清楚地表明,TiO_(2)对磷酸化的肽具有很强的亲和力,因此,我们得出结论,这种材料在磷酸化蛋白质组学领域具有很高的潜力。

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