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Ultrahigh-Performance Nano LC-MS/MS Analysis of Complex Proteomic Samples

机译:复杂蛋白质组样品的超高性能纳米LC-MS / MS分析

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摘要

Determination of the proteome and identification of biomarkers are required to monitor dynamic changes in living organisms and predict the onset of an illness. One popular method to tackle contemporary proteomic samples is called shotgun proteomics, in which proteins are digested, the resulting peptides are separated by high-performance liquid chromatography (HPLC), and identification is performed with tandem mass spectrometry. Digestion of proteins typically leads to a very large number of peptides. For example, digestion of a cell lysate easily generates 500,000 peptides. The separation of these highly complex peptide samples is one of the major challenges in analytical chemistry. The main strategy to improve the efficiency of packed columns is either to increase column length or to decrease the size of the stationary phase particles. However, to operate these columns effectively, the LC conditions need to be adjusted accordingly. Naturally, the on-line coupling to MS systems has to be taken into account in the optimization process. Here, the authors report on the performance of nano LC columns operating at ultrahigh pressure. The effects of column parameters (particle size and column length) and LC conditions (gradient time, flow rate, column temperature) were investigated with reversed-phase (RP) gradient nano LC. High-resolution LC-MS separations of complex proteomic peptide samples are demonstrated by combining long columns with 2 μm particles and long gradients. The effects of LC parameters on performance and the influence on peptide identification are discussed.
机译:需要确定蛋白质组并鉴定生物标记物,以监测活生物体的动态变化并预测疾病的发作。解决现代蛋白质组学样品的一种流行方法称为shot弹枪蛋白质组学,其中的蛋白质被消化,所得的肽通过高效液相色谱(HPLC)分离,并通过串联质谱进行鉴定。蛋白质的消化通常导致非常大量的肽。例如,细胞裂解物的消化容易产生500,000肽。这些高度复杂的肽样品的分离是分析化学中的主要挑战之一。提高填充柱效率的主要策略是增加柱长或减小固定相颗粒的尺寸。但是,为了有效地操作这些色谱柱,需要相应地调整液相色谱条件。自然,在优化过程中必须考虑与MS系统的在线耦合。在这里,作者报告了在超高压下运行的纳米LC色谱柱的性能。使用反相(RP)梯度纳米LC研究了色谱柱参数(粒径和色谱柱长度)和液相色谱条件(梯度时间,流速,柱温)的影响。复杂的蛋白质组蛋白肽样品的高分辨率LC-MS分离通过将长柱与2μm颗粒和长梯度相结合而得到证明。讨论了液相色谱参数对性能的影响以及对肽鉴定的影响。

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