Ruprecht Benjamin, Wang Dongxue, Chiozzi Riccardo Zenezini, Li Li-Hua, Hahne Hannes, Kuster Bernhard
Chair of Proteomics and Bioanalytics, Technische Universität München, Freising, Germany.
Center for Integrated Protein Science Munich (CIPSM), Freising, Germany.
Methods Mol Biol. 2017;1550:69-82. doi: 10.1007/978-1-4939-6747-6_7.
The bottom-up proteomic analysis of cell line and tissue samples to a depth > 10,000 proteins still represents a considerable challenge because of the sheer number of peptides generated by proteolytic digestions and the high dynamic range of protein expression. As a result, comprehensive protein coverage requires multidimensional peptide separation. Recently, off-line hydrophilic strong cation exchange (hSAX) chromatography has proven its merits for high resolution separation of peptides due to its high degree of orthogonality to reversed-phase liquid chromatography. Here we describe the use of hSAX for the deep analysis of tissue proteomes. The protocol includes optimized sample preparation steps (lysis with the aid of mechanical disruption, one-step disulfide bridge reduction and alkylation), setup and operation of hSAX columns and gradients, desalting of hSAX fractions prior to LC-MS/MS analysis, and suggestions for the choice of data acquisition parameters and data analysis using MaxQuant. Application of the protocol to the fractionation of 300 μg human brain tissue digest led to the identification of more than 100,000 unique peptide sequences representing over 10,195 proteins and 9,500 genes in 3 days of measurement time on a Q Exactive Plus mass spectrometer.
对细胞系和组织样本进行深度大于10,000种蛋白质的自下而上蛋白质组学分析,由于蛋白水解消化产生的肽段数量庞大以及蛋白质表达的高动态范围,仍然是一项相当大的挑战。因此,全面的蛋白质覆盖需要多维肽段分离。最近,离线亲水强阳离子交换(hSAX)色谱已证明其在肽段高分辨率分离方面的优势,因为它与反相液相色谱具有高度正交性。在此,我们描述了hSAX在组织蛋白质组深度分析中的应用。该方案包括优化的样品制备步骤(借助机械破碎进行裂解、一步法还原和烷基化二硫键)、hSAX柱和梯度的设置与操作、LC-MS/MS分析前hSAX馏分的脱盐,以及关于数据采集参数选择和使用MaxQuant进行数据分析的建议。将该方案应用于300μg人脑组织消化物的分级分离,在Q Exactive Plus质谱仪上测量3天,可鉴定出超过100,000个独特的肽段序列,代表超过10,195种蛋白质和9,500个基因。