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Online Dual Gradient Reversed-Phase/Porous Graphitized Carbon nanoHPLC for Proteomic Applications

机译:在线双梯度反相/多孔石墨化碳纳米HPLC用于蛋白质组学应用

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The analysis of proteolytic peptide mixtures is among the dominant tasks within proteomic workflows. In order to limit undersampling effects during mass spectrometric detection, online-coupled liquid chromatography is the method of choice, with reversed-phase chromatography being the most important separation mode. Since hydrophilic compounds such as short peptides and some glycosylated species as well as oligosaccharides from glycoproteomic workflows are commonly not accessible by this analytical setup, we hereby present a dual gradient system combining reversed-phase and porous graphitic carbon retention modes within a single nanoHPLC setup. Samples in the low femtomole range are analyzed consecutively first by reversed phase, and nonretained molecules are directly separated by porous graphitic carbon. Both gradient elution systems allow for online coupled mass spectrometric detection and are demonstrated to enable analysis of protein, peptide, and oligosaccharide mixtures within the same setup. Thereby, the accessible range for proteomic and glycoproteomic applications may be extended far beyond the limits of conventional reversed-phase nanoHPLC setups.
机译:蛋白水解肽混合物的分析是蛋白质组学工作流程中的主要任务。为了限制质谱检测过程中的欠采样效应,在线偶联液相色谱法是首选方法,其中反相色谱法是最重要的分离方式。由于通常无法通过此分析设置访问亲水性化合物(例如短肽和一些糖基化物质以及糖蛋白组学工作流程中的寡糖),因此我们在此提出了在单个nanoHPLC设置中结合了反相和多孔石墨碳保留模式的双梯度系统。首先通过反相连续分析低飞摩尔范围内的样品,并通过多孔石墨碳直接分离未保留的分子。两种梯度洗脱系统均允许在线耦合质谱检测,并被证明可以在同一设置中分析蛋白质,肽和寡糖混合物。因此,蛋白质组学和糖蛋白组学应用的可访问范围可以扩展到远远超出常规反相纳米HPLC设置的范围。

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