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将ZIC-HILIC-RP作为一种替代的多维蛋白质鉴定技术(MudPIT)策略进行评估和优化。

Evaluation and optimization of ZIC-HILIC-RP as an alternative MudPIT strategy.

作者信息

Boersema Paul J, Divecha Nullin, Heck Albert J R, Mohammed Shabaz

机构信息

Department of Biomolecular Mass Spectrometry, Utrecht Institute for Pharmaceutical Sciences and Bijvoet Center for Biomolecular Research, Utrecht University, Sorbonnelaan 16, 3584 CA Utrecht, The Netherlands.

出版信息

J Proteome Res. 2007 Mar;6(3):937-46. doi: 10.1021/pr060589m. Epub 2007 Jan 27.

Abstract

In proteomics, a digested cell lysate is often too complex for direct comprehensive mass spectrometric analysis. To reduce complexity, several peptide separation techniques have been introduced including very successful two-dimensional liquid chromatography (2D-LC) approaches. Here, we assess the potential of zwitterionic Hydrophilic Interaction Liquid Chromatography (ZIC-HILIC) as a first dimension for the analysis of complex peptide mixtures. We show that ZIC-HILIC separation is dramatically dependent on buffer pH in the range from 3 to 8, due to deprotonation of acidic amino acids. ZIC-HILIC exhibits a mixed-mode effect consisting of electrostatic and polar interactions. We developed a 2D-LC system that hyphenates ZIC-HILIC off-line with reversed-phase (RP). The two dimensions are fairly orthogonal, and the system performs very well in the analysis of minute amounts of complex peptide mixtures. Applying this method to the analysis of 10 mug of a cellular nuclear lysate, we were able to confidently identify over 1000 proteins. Compared to strong cation exchange chromatography (SCX), ZIC-HILIC shows better chromatographic resolution and absence of clustering of prevalent +2 and +3 charged peptides. At pH 3, ZIC-HILIC separation allows best orthogonality with RP and resembles conventional SCX separation. A significant enrichment of N-acetylated peptides in the first fractions is observed at these conditions. ZIC-HILIC separation at high pH (6.8 and 8), however, enables better chromatography, resulting in more comprehensive data acquisition. With this extended flexibility, we conclude that ZIC-HILIC is a very good alternative for the more conventional SCX in multidimensional peptide separation strategies.

摘要

在蛋白质组学中,消化后的细胞裂解液通常过于复杂,无法直接进行全面的质谱分析。为了降低复杂性,人们引入了几种肽分离技术,包括非常成功的二维液相色谱(2D-LC)方法。在此,我们评估两性离子亲水相互作用液相色谱(ZIC-HILIC)作为分析复杂肽混合物第一维的潜力。我们发现,由于酸性氨基酸的去质子化,ZIC-HILIC分离在pH值3至8的范围内显著依赖于缓冲液pH值。ZIC-HILIC表现出由静电和极性相互作用组成的混合模式效应。我们开发了一种二维液相色谱系统,该系统将ZIC-HILIC与反相(RP)进行离线联用。这两个维度相当正交,并且该系统在分析微量复杂肽混合物方面表现出色。将该方法应用于分析10微克细胞核裂解液时,我们能够可靠地鉴定出1000多种蛋白质。与强阳离子交换色谱(SCX)相比,ZIC-HILIC显示出更好的色谱分辨率,并且不存在常见的+2和+3带电肽的聚集现象。在pH值为3时,ZIC-HILIC分离与RP具有最佳的正交性,类似于传统的SCX分离。在这些条件下,观察到第一批馏分中N-乙酰化肽有显著富集。然而,在高pH值(6.8和8)下进行ZIC-HILIC分离能够实现更好的色谱分离,从而获得更全面的数据。凭借这种更大的灵活性,我们得出结论,在多维肽分离策略中,ZIC-HILIC是比传统SCX更好的选择。

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