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Predictive Liquid Chromatography of Peptides Based on Hydrophilic Interactions for Mass Spectrometry-Based Proteomics

机译:基于水分光谱型蛋白质组学的亲水性相互作用的肽预测液相色谱

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High-performance liquid chromatography (HPLC) is widely used for separation of complex peptide mixtures before mass spectrometry-based proteome analysis. In this analysis, reversed phase HPLC (RPHPLC) using non-polar stationary phases such as surface-modified silica containing alkyl groups (e.g., C18) is typically employed. Because of the high heterogeneity of proteomic samples, multidimensional separation approaches gained increasing attention recently to tackle this complexity and extremely high range of concentrations. In two-dimensional liquid chromatography, hydrophilic interaction chromatography (HILIC) is often a method of choice for combination with RP-HPLC because it uses reversed-phase type eluents and allows efficient separation of polar peptides. Due to the high degree of orthogonality in this two-dimensional separation space, it is tempting to develop approaches for predicting peptide retention times for HILIC-based separations similar to the ones for RP-HPLC. Recent successful efforts in this area were focused on developing retention coefficient (RC)-based approaches. Herein, we explored the feasibility of using a statistical thermodynamic model for prediction of peptide retention times in HILIC separations and determined the phenomenological parameters of the model for a bare silica column. The performance of the developed model was tested using HPLC-MS analysis of a set of synthetic peptides, as well as a tryptic peptide mixture.
机译:高效液相色谱(HPLC)广泛用于分离质谱基蛋白质组分析前的复杂肽混合物。在该分析中,通常使用使用非极性固定相的反相HPLC(RPHPLC),例如含有烷基的表面改性二氧化硅(例如,C18)。由于蛋白质组学样品的高异质性,最近,多维分离方法越来越多地关注这种复杂性和极高的浓度。在二维液相色谱中,亲水相互作用色谱(HILIC)通常是与RP-HPLC组合的选择方法,因为它使用反相式洗脱液并允许有效地分离极性肽。由于该二维分离空间中的高度正常性,因此可以诱人地开发用于预测肽保留时间的方法,用于类似于RP-HPLC的肝脏的分离。该领域的最近成功努力集中在发展保留系数(RC)的基础上。在此,我们探讨了使用统计热力学模型的可行性,以预测HILIC分离中的肽保留时间,并确定裸二氧化硅柱模型的现象学参数。使用一组合成肽的HPLC-MS分析以及胰蛋白酶肽混合物来测试开发模型的性能。

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