首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Effect of anionic ion-pairing reagent hydrophobicity on selectivity of peptide separations by reversed-phase liquid chromatography
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Effect of anionic ion-pairing reagent hydrophobicity on selectivity of peptide separations by reversed-phase liquid chromatography

机译:阴离子对试剂疏水性对反相液相色谱分离肽选择性的影响

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摘要

Despite the continuing dominance of trifluoroacetic acid (TFA) as the anionic ion-pairing reagent of choice for peptide separations by reversed-phase high-performance liquid chromatography (RP-HPLC), we believe that a step-by-step approach to re-examining the relative efficacy of TFA compared to other ion-pairing reagents is worthwhile, particularly for the design of separation protocols for complex peptide mixtures, e.g., in proteomics applications. Thus, we applied RP-HPLC in the presence of different concentrations of anionic ion-pairing reagents - phosphoric acid, TFA, pentafluoropropionic acid (PFPA) and heptafluorobutyric acid (HFBA) - to a mixture of three groups of four 10-residue peptides, these groups containing peptides of +1, +3 or +5 net charge. Overall separation of the 12-peptide mixture improved with increasing reagent hydrophobicity (phosphate(-) < TFA(-) < PFPA(-) < HFBA(-)) and/or concentration of the anion, with reagent hydrophobicity having a considerably more pronounced effect than reagent concentration. HFBA, in particular, achieved an excellent separation at a concentration of just 10 mM, whereby the peptides were separated by charged groups (+1 < +3 < +5) and hydrophobicity within these groups. There was an essentially equal effect of reagent hydrophobicity and concentration on each positive charge of the peptides, a useful observation for prediction of the effect of varying counterion concentration hydrophobicity and/or concentration during optimization of peptide purification protocols. Peak widths were greater for the more highly charged peptides, although these could be decreased significantly by raising the acid concentration; concomitantly, peptide resolution increased with increasing concentration of ion-pairing reagent. (c) 2005 Elsevier B.V. All rights reserved.
机译:尽管三氟乙酸(TFA)作为选择通过反相高效液相色谱(RP-HPLC)分离肽的阴离子配对试剂的优势仍然存在,但我们认为逐步分离的方法与其他离子对试剂相比,检查TFA的相对功效是值得的,特别是对于复杂肽混合物的分离方案设计,例如在蛋白质组学应用中。因此,我们在不同浓度的阴离子配对试剂(磷酸,TFA,五氟丙酸(PFPA)和七氟丁酸(HFBA))存在下,将RP-HPLC用于三组四个10个残基肽的混合物,这些基团包含+ 1,+ 3或+5净电荷的肽。通过增加试剂的疏水性(磷酸盐(-)

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