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用于蛋白质组分析的高效离线二维肽分段的三模态混合模式色谱法。

Trimodal Mixed Mode Chromatography That Enables Efficient Offline Two-Dimensional Peptide Fractionation for Proteome Analysis.

机构信息

Technical University of Munich , D-85354 Freising, Germany.

German Cancer Consortium (DKTK) , 80336 Munich, Germany.

出版信息

Anal Chem. 2017 Sep 5;89(17):8884-8891. doi: 10.1021/acs.analchem.7b01356. Epub 2017 Aug 18.

Abstract

Offline two-dimensional chromatography is a common means to achieve deep proteome coverage. To reduce sample complexity and dynamic range and to utilize mass spectrometer (MS) time efficiently, high chromatographic resolution of and good orthogonality between the two dimensions are needed. Ion exchange and high pH reversed phase chromatography are often used for this purpose. However, the former requires desalting to be MS-compatible, and the latter requires fraction pooling to create orthogonality. Here, we report an alternative first-dimension separation technique using a commercial trimodal phase incorporating polar embedded reversed phase, weak anion exchange, and strong cation exchange material. The column is capable of retaining polar and nonpolar peptides alike without noticeable breakthrough. It allows separating ordinary and TMT-labeled peptides under mild acidic conditions using an acetonitrile gradient. The direct MS compatibility of solvents and good orthogonality to online coupled C18 columns enable a straightforward workflow without fraction pooling and desalting while showing comparable performance to the other techniques. The method scales from low to high microgram sample quantity and is amenable to full automation. To demonstrate practical utility, we analyzed the proteomes of 10 human pancreatic cancer cell lines to a depth of >8,700 quantified proteins.

摘要

离线二维色谱是实现深度蛋白质组覆盖的常用手段。为了降低样品复杂性和动态范围,并有效地利用质谱仪 (MS) 时间,需要具有高色谱分辨率和两个维度之间的良好正交性。离子交换和高 pH 反相色谱通常用于此目的。然而,前者需要脱盐才能与 MS 兼容,而后者需要进行馏分合并才能产生正交性。在这里,我们报告了一种替代的第一维分离技术,使用商业的三模态相,其中包含极性嵌入反相、弱阴离子交换和强阳离子交换材料。该柱能够保留极性和非极性肽,而不会出现明显的突破。它允许在温和的酸性条件下使用乙腈梯度分离普通肽和 TMT 标记肽。溶剂的直接 MS 兼容性和与在线耦合 C18 柱的良好正交性使得在不进行馏分合并和脱盐的情况下实现了简单的工作流程,同时表现出与其他技术相当的性能。该方法可从小量到大量样品量扩展,并且易于实现全自动化。为了证明实际应用,我们分析了 10 个人胰腺癌细胞系的蛋白质组,达到了 >8700 个定量蛋白质的深度。

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