Department of Parasitology, Biomolecular Mass Spectrometry Unit, Leiden University Medical Center, Leiden, The Netherlands.
J Am Soc Mass Spectrom. 2010 Sep;21(9):1515-25. doi: 10.1016/j.jasms.2010.05.004. Epub 2010 May 12.
In this study, we have implemented a new quality control (QC) parameter for peptide profiling based on isotopic distributions. This QC parameter is an objective measure and facilitates automatic sorting of large numbers of peptide spectra. Peptides in human serum samples were enriched using reversed-phase C(18)-functionalized magnetic beads using a high-throughput robotic platform. High-resolution MALDI-TOF and ultrahigh resolution MALDI-FTICR mass spectra were obtained and a workflow was developed for automated analysis and evaluation of these profiles. To this end, the isotopic distributions of multiple peptides were quantified from both MALDI-TOF and MALDI-FTICR spectra. Odd peptide isotope distributions in TOF spectra could be rationalized from ultrahigh resolution FTICR spectra that showed overlap of different peptides. The comparison of isotope patterns with estimated polyaveragine distributions was used to calculate a QC value for each single mass spectrum. Sorting these QC values enabled the best MALDI spectrum to be selected from replicate spots. Moreover, using this approach spectra containing high intensities of polymers or other contaminants and lacking peptides of interest can be efficiently removed from a clinical dataset. In general, this method simplifies the exclusion of low quality spectra from further statistical analysis.
在这项研究中,我们基于同位素分布实现了一种新的肽谱分析质量控制(QC)参数。该 QC 参数是一种客观的衡量标准,有助于对大量肽谱进行自动分类。使用高通量机器人平台,通过反相 C(18)功能化的磁性珠从人血清样品中富集肽。获得了高分辨率 MALDI-TOF 和超高分辨率 MALDI-FTICR 质谱,并开发了一种用于自动分析和评估这些图谱的工作流程。为此,从 MALDI-TOF 和 MALDI-FTICR 光谱中定量了多个肽的同位素分布。TOF 光谱中奇数肽同位素分布可以从超高分辨率 FTICR 光谱中得到合理的解释,超高分辨率 FTICR 光谱显示了不同肽的重叠。将同位素模式与估计的多聚精氨酸分布进行比较,以计算每个单质谱的 QC 值。对这些 QC 值进行排序,可以从重复斑点中选择最佳的 MALDI 光谱。此外,使用这种方法,可以有效地从临床数据集去除含有高浓度聚合物或其他污染物且缺乏感兴趣肽的谱图。总的来说,该方法简化了从进一步的统计分析中排除低质量谱图的过程。