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首页> 外文期刊>Analytical chemistry >Online Comprehensive High pH Reversed Phase x Low pH Reversed Phase Approach for Two-Dimensional Separations of Intact Proteins in Top-Down Proteomics
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Online Comprehensive High pH Reversed Phase x Low pH Reversed Phase Approach for Two-Dimensional Separations of Intact Proteins in Top-Down Proteomics

机译:在线综合高pH反相阶X低pH逆相位接种在自上而下蛋白质组学中的完整蛋白的二维分离

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摘要

A proof-of-concept study is presented on the use of comprehensive two-dimensional liquid chromatography mass spectrometry (LC x LC-MS) for the separation of intact protein mixtures using a different mobile phase pH in each dimension. This system utilizes mass spectrometry (MS) friendly pH modifiers for the online coupling of high pH reversed phase liquid chromatography (HPH-RPLC) in the first dimension (D-1) followed by low pH reversed phase liquid chromatography (LPH-RPLC) in the second dimension (D-2). Owing to the ionic nature of proteins, the use of a different mobile phase pH was successful to provide altered selectivity between the two dimensions, even for closely related protein variants, such as bovine cytochrome c and equine cytochrome c, which differ by only three amino acids. Subminute gradient separation of proteins in the second dimension was successful to minimize analysis time, while maintaining high peak capacity. Unlike peptides, the elution order of studied proteins did not follow their isoelectric points, where acidic proteins would be expected to be more retained at low pH (and basic proteins at high pH). The steep elution isotherms (on-off retention mechanism) of proteins and the very steep gradients utilized in the second-dimension column succeeded in overcoming pH and organic solvent content mismatch. The utility of the system was demonstrated with a mixture of protein standards and an Escherichia coli protein mixture.
机译:综述证据研究是在使用综合二维液相色谱质谱法(LC X LC-MS)以在每个尺寸中使用不同的流动相pH分离完整的蛋白质混合物。该系统利用质谱(MS)友好型pH调节剂在第一尺寸(D-1)中的高pH反相液相色谱(HPH-RPLC)的在线偶联,然后是低pH反相液相色谱(LPH-RPLC)第二维(D-2)。由于蛋白质的离子性质,使用不同的流动相pH值得成功地提供两个维度之间的改变的选择性,即使是密切相关的蛋白质变异,例如牛细胞色素C和马细胞色素C,其只有三个氨基酸。第二尺寸中蛋白质的梯度分离是成功的,以尽量减少分析时间,同时保持高峰能力。与肽不同,所研究的蛋白质的洗脱顺序没有遵循它们的等电点,其中预期酸性蛋白质将在低pH(和高pH的碱性蛋白质)中更高。蛋白质的陡粒洗脱等温(On-Off保留机制)和在第二尺寸柱中使用的非常陡梯度成功地克服了pH和有机溶剂含量不匹配。用蛋白质标准和大肠杆菌蛋白质混合物的混合物证明了该系统的效用。

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