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首页> 外文期刊>Analytical chemistry >Comparison of Electrokinetics-Based Multidimensional Separations Coupled with Electrospray Ionization-Tandem Mass Spectrometry for Characterization of Human Salivary Proteins
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Comparison of Electrokinetics-Based Multidimensional Separations Coupled with Electrospray Ionization-Tandem Mass Spectrometry for Characterization of Human Salivary Proteins

机译:基于电动动力学的多维分离与电喷雾电离串联质谱法表征人唾液蛋白的比较

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摘要

The foundation for saliva-based diagnostics is the developmentof a complete catalog of secreted proteins detectable in saliva. Besides protein complexity, the greatest bioanalytical challenge facing comprehensive analysis of saliva samples is related to the large variation of protein relative abundances including the presence of high-abundance proteins such as amylases, mucins, proline-rich proteins (PRPs), and secretory IgA complex. Among a number of electrokinetic separation techniques, transient capillary isotachophoresis/capillary zone electrophoresis (CITP/CZE) specifically targets trace amounts of proteins and thus reduces the range of relative protein abundances for providing unparallel advantages toward the identification of low-abundance proteins. By employing a CITP/CZE-based multidimensional separation platform coupled with electrospray ionization-tandem mass spectrometry (ESI-tandem MS), a total of 6112 fully tryptic peptides are sequenced at a 1percent false discovery rate (FDR), leading to the identification of 1479 distinct human SwissProt protein entries. By comparing with capillary isoelectric focusing (CIEF) as another electro-kinetics-based stacking approach, CITP/CZE not only offers a broad field of application but also is less prone to protein/peptide precipitation during the analysis. The ultrahigh resolving power of CITP/CZE is evidenced by the large number of distinct peptide identifications measured from each CITP fraction together with the low peptide fraction overlapping among identified peptides. Furthermore, when evaluating the protein sequence coverage by the number of distinct peptides mapping to each protein identification, the CITP-based proteome technology similarly achieves the superior performance with 674 proteins (46percent) having three or more distinct peptides, 288 (19percent) having two distinct peptides, and 517 (35percent) having a single distinct peptide.
机译:基于唾液的诊断的基础是开发可在唾液中检测到的分泌蛋白的完整目录。除蛋白质复杂性外,对唾液样品进行全面分析所面临的最大生物分析挑战还与蛋白质相对丰度的巨大差异有关,包括存在高丰度蛋白质(如淀粉酶,粘蛋白,脯氨酸丰富的蛋白质(PRP)和分泌型IgA复合物) 。在许多电动分离技术中,瞬时毛细管等速电泳/毛细管区带电泳(CITP / CZE)专门针对痕量蛋白质,因此减少了相对蛋白质丰度的范围,从而为鉴定低丰度蛋白质提供了无与伦比的优势。通过使用基于CITP / CZE的多维分离平台和电喷雾电离串联质谱(ESI-串联MS),总共以1%的错误发现率(FDR)对6112个完全胰蛋白酶肽进行了测序,从而鉴定了1479个不同的人类SwissProt蛋白质条目。通过与毛细管等电聚焦(CIEF)作为另一种基于电动的堆叠方法进行比较,CITP / CZE不仅提供了广泛的应用领域,而且在分析过程中不易产生蛋白质/多肽沉淀。 CITP / CZE具有超高的分辨能力,这是由从每个CITP组分测得的大量不同的肽鉴定以及鉴定出的肽之间重叠的低肽组分所证明的。此外,当通过映射到每种蛋白质鉴定的不同肽段的数量来评估蛋白质序列的覆盖率时,基于CITP的蛋白质组技术同样可以实现优异的性能,其中674种蛋白(占46%)具有三种或更多种不同的肽,288种蛋白(占19%)具有两种和517(35%)具有单个不同的肽。

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