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pH梯度反相液相色谱法作为一种用于分离肽段的分级分离工具。

pH gradient reversed-phase liquid chromatography as a fractionation tool for the separation of peptides.

作者信息

Baczek Tomasz, Walijewski Łukasz, Kaliszan Roman

机构信息

Medical University of Gdańsk, Department of Biopharmaceutics and Pharmacodynamics, Hallera 107, 80-416 Gdańsk, Poland.

出版信息

Talanta. 2008 Mar 15;75(1):76-82. doi: 10.1016/j.talanta.2007.10.031. Epub 2007 Oct 24.

Abstract

Recent reports from our laboratory presented a comprehensive theory and demonstrated feasibility of reversed-phase liquid chromatography (RP-LC) employing the programmed gradient of pH of the mobile phase. The aim of that work was to explore the usefulness of the pH gradient-based approach in fractionation of peptides. The experiments were performed on a series of peptides separated at various LC conditions. Retention parameters of peptides in the pH gradient and in the simultaneous pH/organic modifier gradient RP-LC were compared. The best results were obtained with eluents comprising low but constant concentrations of organic modifier while gradient of pH in the mobile phase was developed several times during each chromatographic run. The elaborated LC conditions allowed controlling the elution of peptides not only according to their hydrophobic properties, but also taking into account their electronic properties, represented by isoelectric point (pI) values. The combination of isocratic (regarding organic modifier) LC mode with recurring eluent pH gradient is proposed as an effective fractionation method of peptide mixtures. Moreover, information on hydrophobicity and pI of the peptides, obtained by that approach, might be an additional peptides database matching constraint. Hence, a new tool for analytical and bioinformatics studies of peptides fractionation is proposed.

摘要

我们实验室最近的报告提出了一种全面的理论,并证明了采用流动相pH值程序梯度的反相液相色谱法(RP-LC)的可行性。该工作的目的是探索基于pH梯度的方法在肽分离中的实用性。实验是在一系列在不同液相色谱条件下分离的肽上进行的。比较了肽在pH梯度和同时存在pH/有机改性剂梯度的反相液相色谱中的保留参数。当流动相中的pH梯度在每次色谱运行中多次形成时,使用含有低浓度但恒定浓度有机改性剂的洗脱液可获得最佳结果。精心设计的液相色谱条件不仅可以根据肽的疏水性质控制其洗脱,还可以考虑由等电点(pI)值表示的电子性质。提出了等度(关于有机改性剂)液相色谱模式与循环洗脱液pH梯度相结合的方法,作为肽混合物的有效分离方法。此外,通过该方法获得的肽的疏水性和pI信息可能是肽数据库匹配的额外约束条件。因此,提出了一种用于肽分离分析和生物信息学研究的新工具。

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