Paterson Institute for Cancer Research, University of Manchester, Wilmslow Road, Manchester, UK.
J Chromatogr A. 2012 Apr 6;1232:276-80. doi: 10.1016/j.chroma.2012.01.015. Epub 2012 Jan 13.
We present the first investigation into the utility of porous graphitic carbon (PGC) as a stationary phase in proteomic workflows involving complex samples. PGC offers chemical and physical robustness and is capable of withstanding extremes of pH and higher temperatures than traditional stationary phases, without the likelihood of catastrophic failure. In addition, unlike separations driven by ion exchange mechanisms, there is no requirement for high levels of non-volatile salts such as potassium chloride in the elution buffers, which must be removed prior to LC-MS analysis. Here we present data which demonstrate that PGC affords excellent peptide separation in a complex whole cell lysate digest sample, with good orthogonality to a typical low pH reversed-phase system. As strong cation exchange (SCX) is currently the most popular first dimension for 2D peptide separations, we chose to compare the performance of a PGC and SCX separation as the first dimension in a comprehensive 2D-LC-MS/MS workflow. A significant increase, in the region of 40%, in peptide identifications is reported with off-line PGC fractionation compared to SCX. Around 14,000 unique peptides were identified at an estimated false discovery rate of 1% (n=3 replicates) from starting material constituting only 100 μg of protein extract.
我们首次研究了多孔石墨碳(PGC)作为复杂样品蛋白质组学工作流程中固定相的用途。PGC 具有化学和物理稳定性,能够承受比传统固定相更高的 pH 值和温度,而不会发生灾难性故障。此外,与基于离子交换机制的分离不同,洗脱缓冲液中不需要高水平的非挥发性盐(如氯化钾),在进行 LC-MS 分析之前必须将其去除。本文提供的数据表明,PGC 可在复杂的全细胞裂解物消化样品中提供出色的肽分离效果,与典型的低 pH 反相系统具有良好的正交性。由于强阳离子交换(SCX)目前是二维肽分离的最流行的第一维,我们选择将 PGC 和 SCX 分离作为全面二维 LC-MS/MS 工作流程的第一维进行比较。与 SCX 相比,离线 PGC 分级在肽鉴定方面的增加幅度高达 40%。从仅 100μg 蛋白质提取物的起始材料中,估计假发现率为 1%(n=3 个重复),鉴定到约 14000 个独特肽。