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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Sensitive untargeted identification of short hydrophilic peptides by high performance liquid chromatography on porous graphitic carbon coupled to high resolution mass spectrometry
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Sensitive untargeted identification of short hydrophilic peptides by high performance liquid chromatography on porous graphitic carbon coupled to high resolution mass spectrometry

机译:高效液相色谱对多孔石墨碳耦合到高分辨率质谱法的敏感性未甲醛鉴定

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摘要

The combination of an efficient chromatographic separation with post-column addition of a supercharging agent was evaluated for the determination of small peptides. The procedure takes advantage of porous graphitic carbon (PGC) ability in retaining very polar and ionic molecules to overstep the poor retention of small peptides on conventional reversed phase (RP) columns. The method was developed specifically for the most hydrophilic di-, tri- and tetrapeptides, which are not identified in ordinary peptidomics experiments. In addition to retention mechanisms acting on conventional RP, the method exploited the charge induced interactions generated by the charges on the peptides with the polarizable surface of PGC. This results in efficient retention of very short and highly polar peptides using classical RP mobile phases. The effects of varying mobile phase composition (organic solvent and ion-pairing additives) as well as column temperature have been thoroughly investigated using short peptide standards. Under optimized conditions (water and acetonitrile/tetrahydrofuran 99:1 (v/v), both with 0.15% trifluoroacetic acid, as phase A and B, respectively, 0.5 mL min(-1) flowrate at 50 degrees C) the effect of post-column addition of 3-nitrobenzylic alcohol was also investigated allowing effective coupling of the chromatographic system with high resolution mass spectrometry. Finally, an untargeted approach for peptide identification was pursued, based on precursor identification in database with all possible combinations of the 20 natural amino acids and fragmentation spectra matching to in silico generated spectra. The method was then applied to investigation of the short endogenous peptides in human serum from healthy individuals resulting in the identification of 30 short peptides. (C) 2019 Elsevier B.V. All rights reserved.
机译:评价与塔柱加入增压剂的有效色谱分离的组合,用于测定小肽。该程序利用多孔石墨碳(PGC)在保持非常极性和离子分子中的能力,以超越常规反相(RP)柱对小肽的滞留差。该方法是专门用于最亲水的二肽,三肽,其在普通肽族实验中未鉴定。除了在常规RP上作用的保留机制之外,该方法利用肽对肽的电荷产生的电荷诱导的相互作用与PGC的极化表面产生。这导致使用经典RP移动阶段有效地保留非常短且高极性肽。使用短肽标准,已经彻底研究了不同流动相组合物(有机溶剂和离子配对添加剂)以及柱温度的影响。在优化条件下(水和乙腈/四氢呋喃99:1(v / v),分别为0.15%三氟乙酸,分别为0.5mL min(-1)次以50℃的流量,柱的效果还研究了3-硝基苄基醇的COLMUMM汇,允许色谱系统具有高分辨率质谱法的有效耦合。最后,基于数据库中的前体鉴定,追求未明确的肽鉴定方法,其具有20种天然氨基酸的所有可能组合和在硅产生的光谱中匹配的碎片谱。然后将该方法应用于来自健康个体的人血清中的短内源性肽的研究,导致鉴定30短肽。 (c)2019 Elsevier B.v.保留所有权利。

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