Xie Hongwei, Griffin Timothy J
Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, 55455, USA.
J Proteome Res. 2006 Apr;5(4):1003-9. doi: 10.1021/pr050472i.
Two-dimensional linear ion trap mass spectrometers are rapidly becoming the new workhorse instruments for shotgun proteomic analysis of complex peptide mixtures. The objective of this study was to compare the potential for false positive peptide sequence matches between a two-dimensional ion trap instrument and a traditional, three-dimensional ion trap instrument. Through the comparative analysis of a complex protein sample, we found that in order to minimize false positive sequence matches, sequence match scoring criteria must be more stringent for data from the two-dimensional ion trap compared to the three-dimensional ion trap data. Given this increased potential for false positives, we also investigated two potential filtering strategies to reduce the false positive matches for data derived from the two-dimensional ion trap, including trypsin enzyme cleavage filtering, and the addition of peptide physicochemical information as a constraint, specifically peptide isoelectric point. The results described here provide a cautionary tale to researchers, demonstrating the need for careful analysis of MS/MS data from this new class of ion trap instruments, as well as the effectiveness of trypsin enzyme cleavage filtering and peptide pI information in maximizing high confidence protein identifications from this powerful proteomic instrumentation.
二维线性离子阱质谱仪正迅速成为用于复杂肽混合物鸟枪法蛋白质组分析的新型主力仪器。本研究的目的是比较二维离子阱仪器与传统三维离子阱仪器之间肽序列匹配假阳性的可能性。通过对复杂蛋白质样品的比较分析,我们发现,为了将假阳性序列匹配降至最低,与三维离子阱数据相比,二维离子阱数据的序列匹配评分标准必须更严格。鉴于假阳性的可能性增加,我们还研究了两种潜在的过滤策略,以减少二维离子阱数据的假阳性匹配,包括胰蛋白酶酶切过滤,以及添加肽的物理化学信息作为约束条件,特别是肽的等电点。此处所述结果为研究人员敲响了警钟,表明需要仔细分析来自这类新型离子阱仪器的MS/MS数据,以及胰蛋白酶酶切过滤和肽pI信息在通过这种强大的蛋白质组学仪器实现高可信度蛋白质鉴定最大化方面的有效性。