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首页> 外文期刊>Analytical chemistry >Imaging Peptide and Protein Chirality via Amino Acid Analysis by Chiral x Chiral Two-Dimensional Correlation Liquid Chromatography
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Imaging Peptide and Protein Chirality via Amino Acid Analysis by Chiral x Chiral Two-Dimensional Correlation Liquid Chromatography

机译:通过手性X手性二维相关液相色谱法通过氨基酸分析成像肽和蛋白质手性

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摘要

The present contribution illustrates the utilization of a chiral x chiral two-dimensional liquid chromatography (2DLC) setup with tert-butylcarbamoyl quinine chiral stationary phase (CSP) in the first dimension (D-1) and tert-butylcarbamoyl quinidine CSP in the second dimension (D-2) to analyze FMOC-derivatized D and L amino acids from peptide hydrolysates. Hereby, in the D-1 and D-2 chiral separation dimensions factors such as selector and immobilization chemistry of the CSPs, mobile phase, temperature, column hardware dimensions, stationary phase supports, particle type and packing were identical. Orthogonality between D-1 and D-2 CSPs was solely based on their stereochemistry, i.e. their opposite configurations in two chiral centers of the selector molecules, which results in inversion of enantiomer elution orders in the two dimensions. Using Coreshell CSPs for fast chromatography allowed D-2-flow rates which were 60 times faster than the D-1-flow rates to enable online comprehensive two-dimensional chromatography (LC X LC). Due to very similar chemoselectivity, yet opposite elution orders of corresponding enantiomers in D-1 and D-2, characteristic 2D-elution patterns for achiral and chiral components can be generated. Peaks of achiral components and impurities are lined up on the diagonal line in the 2D separation space (contour plot) and thereby removed from the chromatographic space of the target enantiomers avoiding overlaps with potential interferences. Corresponding enantiomers provide cross peaks on the 2D chromatogram. Moreover, enantioselectivity of both single CSPs is combined to result in an enhanced overall 2D enantioselectivity. The concept is illustrated for the therapeutic peptides gramicidin and bacitracin. Since all amino acids give a consistent elution order as FMOC-derivatives, all enantiomers of the same configuration are either above or below the diagonal line allowing straightforward imaging of the configuration of the amino acids in peptides by the 2D chromatogram.
机译:目前的贡献说明了在第二维度中的第一尺寸(D-1)和叔丁基氨基氧酰奎宁CSP中与叔丁基碳酰氨基手性固定相(CSP)利用手性X手性二维液相色谱(2DLC)设定。 (D-2)分析来自肽水解产物的FMOC衍生的D和L氨基酸。因此,在D-1和D-2手性分离尺寸因子,例如选择器和固定化学化学的CSP,流动相,温度,柱硬件尺寸,固定相支撑,颗粒类型和包装是相同的。 D-1和D-2 CSP之间的正交性仅基于它们的立体化学,即它们在选择器分子的两种手性中心的相反配置,这导致映体洗脱序列中的两维的反转。使用CoreShell CSP进行快速色谱法使D-2流速比D-1流速快60倍,以实现在线综合二维色谱(LC X LC)。由于具有非常相似的化学选择性,但D-1和D-2的相应对映体的相反洗脱序列,可以产生用于成立和手性组分的特征2D洗脱图案。在2D分离空间(轮廓图)中的对角线上排列了成分组分和杂质的峰,从而从靶向映体的色谱空间中除去避免与潜在干扰重叠。相应的对映体在2D色谱图上提供交叉峰。此外,两种CSP的对映选择性组合以产生增强的总体2D对映对增强性。该概念被用于治疗肽禾本科蛋白和生物酸酯。由于所有氨基酸都是作为FMOC衍生物的一致洗脱序列,因此相同配置的所有对映体在对角线上方或下方允许通过2D色谱图的肽中氨基酸的构型的直接成像。

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  • 来源
    《Analytical chemistry 》 |2018年第13期| 共9页
  • 作者单位

    Univ Tubingen Inst Pharmaceut Sci Pharmaceut Bio Anal Morgenstelle 8 D-72076 Tubingen Germany;

    Univ Salzburg Dept Biosci Bioanalyt Res Labs Hellbrunnerstr 34 A-5020 Salzburg Austria;

    Agilent Technol Res &

    Dev Hewlett Packard Str 8 D-76337 Waldbronn Germany;

    Lindner Consulting GmbH Ziegelofengasse 37 A-3400 Klosterneuburg Austria;

    Univ Tubingen Inst Pharmaceut Sci Pharmaceut Bio Anal Morgenstelle 8 D-72076 Tubingen Germany;

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  • 正文语种 eng
  • 中图分类 分析化学 ;
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