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Effects of Column and Gradient Lengths on Peak Capacity and Peptide Identification in nanoflow LC-MS/MS of Complex Proteomic Samples

机译:柱和梯度长度对复合蛋白质组样品纳米LC-MS / MS峰值容量和肽鉴定的影响

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摘要

Reversed-phase liquid chromatography is the most commonly used separation method for shotgun proteomics. Nanoflow chromatography has emerged as the preferred chromatography method for its increased sensitivity and separation. Despite its common use, there are a wide range of parameters and conditions used across research groups. These parameters have an effect on the quality of the chromatographic separation, which is critical to maximizing the number of peptide identifications and minimizing ion suppression. Here we examined the relationship between column lengths, gradient lengths, peptide identifications and peptide peak capacity. We found that while longer column and gradients lengths generally increase peptide identifications, the degree of improvement is dependent on both parameters and is diminished at longer column and gradients. Peak capacity, in comparison, showed a more linear increase with column and gradient lengths. We discuss the discrepancy between these two results and some of the considerations that should be taken into account when deciding on the chromatographic conditions for a proteomics experiment.
机译:反相液相色谱法是shot弹枪蛋白质组学最常用的分离方法。纳流色谱法已经出现,因为它具有更高的灵敏度和分离度,成为优选的色谱方法。尽管其用途很广泛,但整个研究小组仍使用多种参数和条件。这些参数对色谱分离的质量有影响,这对最大化肽段鉴定数量和最小化离子抑制至关重要。在这里,我们检查了色谱柱长度,梯度长度,肽鉴定和肽峰容量之间的关系。我们发现,虽然较长的色谱柱和梯度色谱柱长度通常会增加肽段的鉴定,但改进程度取决于这两个参数,并且在较长的色谱柱和梯度色谱柱中减小。相比之下,峰容量显示出随着色谱柱和梯度长度的增加而线性增加。我们讨论了这两个结果之间的差异,以及在确定蛋白质组学实验的色谱条件时应考虑的一些考虑因素。

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