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Optimization of Reversed-Phase Peptide Liquid Chromatography Ultraviolet Mass Spectrometry Analyses Using an Automated Blending Methodology

机译:使用自动混合方法优化反相肽液相色谱紫外质谱法的分析

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摘要

The balance between chromatographic performance and mass spectrometric response has been evaluated using an automated series of experiments where separations are produced by the real-time automated blending of water with organic and acidic modifiers. In this work, the concentration effects of two acidic modifiers (formic acid and trifluoroacetic acid) were studied on the separation selectivity, ultraviolet, and mass spectrometry detector response, using a complex peptide mixture. Peptide retention selectivity differences were apparent between the two modifiers, and under the conditions studied, trifluoroacetic acid produced slightly narrower (more concentrated) peaks, but significantly higher electrospray mass spectrometry suppression. Trifluoroacetic acid suppression of electrospray signal and influence on peptide retention and selectivity was dominant when mixtures of the two modifiers were analyzed. Our experimental results indicate that in analyses where the analyzed components are roughly equimolar (e.g., a peptide map of a recombinant protein), the selectivity of peptide separations can be optimized by choice and concentration of acidic modifier, without compromising the ability to obtain effective sequence coverage of a protein. In some cases, these selectivity differences were explored further, and a rational basis for differentiating acidic modifier effects from the underlying peptide sequences is described.
机译:色谱性能和质谱响应之间的平衡已通过一系列自动实验进行了评估,其中分离是通过将水与有机和酸性改性剂实时自动混合而产生的。在这项工作中,使用复杂的肽混合物,研究了两种酸性改性剂(甲酸和三氟乙酸)的浓度效应对分离选择性,紫外和质谱检测器响应的影响。两种修饰剂之间的肽保留选择性差异很明显,在所研究的条件下,三氟乙酸产生的峰稍窄(更集中),但电喷雾质谱抑制却明显更高。分析两种改性剂的混合物时,三氟乙酸对电喷雾信号的抑制以及对肽保留和选择性的影响占主导地位。我们的实验结果表明,在分析的成分大致等摩尔的分析中(例如,重组蛋白的肽图),可以通过选择和浓缩酸性修饰剂来优化肽分离的选择性,而不会影响获得有效序列的能力蛋白质的覆盖率。在某些情况下,将进一步探讨这些选择性差异,并描述区分酸性修饰剂作用与潜在肽序列的合理基础。

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