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Workflow for Large Scale Detection and Validation of Peptide Modifications by RPLC-LTQ-Orbitrap: Application to the Arabidopsis thaliana Leaf Proteome and an Online Modified Peptide Library

机译:通过RPLC-LTQ-Orbitrap大规模检测和验证肽修饰的工作流程:在拟南芥叶蛋白质组学和在线修饰肽库中的应用

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摘要

Post-translational modifications (PTMs) of proteins add to the complexity of proteomes, thereby complicating the task of proteome characterization. An efficient strategy to identify this peptide heterogeneity is important for determination of protein function, as well as for mass spectrometry-based protein quantification. Furthermore, studies of allelic variation or single nucleotide polymorphisms (SNPs) at the proteome level, as well as mRNA editing, are increasingly relevant, but validation and determination of false positive rates are challenging. Here we describe an effective workflow for large scale PTM and amino acid substitution identification based on high resolution and high mass accuracy RPLC-MS data sets. A systematic validation strategy of PTMs using RPLC retention time shifts was implemented, and a decision tree for validation is presented. This workflow was applied to Arabidopsis proteome preparations; 1.5 million MS/MS spectra were processed resulting in 20percent sequence assignments, with 5percent from modified sequences and matching to 2904 proteins; this high assignment rate is in part due to the high quality spectral data. A searchable modified peptide library for Arabidopsis is available online at http://ppdb.tc.cornell.edu/. We discuss confidence in peptide and PTM assignment based on the acquired data set, as well as implications for quantitative analysis of physiologically induced and preparation-related modifications.
机译:蛋白质的翻译后修饰(PTM)增加了蛋白质组的复杂性,从而使蛋白质组表征的任务复杂化。鉴定这种肽异质性的有效策略对于蛋白质功能的确定以及基于质谱的蛋白质定量非常重要。此外,在蛋白质组水平上等位基因变异或单核苷酸多态性(SNP)的研究以及mRNA的编辑越来越重要,但是验证和确定假阳性率具有挑战性。在这里,我们描述了基于高分辨率和高质量准确度RPLC-MS数据集的大规模PTM和氨基酸取代鉴定的有效工作流程。实施了使用RPLC保留时间偏移的PTM的系统验证策略,并提出了用于验证的决策树。该工作流程应用于拟南芥蛋白质组制备。处理了150万个MS / MS谱图,得到20%的序列分配,其中5%来自修饰序列并与2904种蛋白质匹配;如此高的分配率部分归因于高质量的光谱数据。可从http://ppdb.tc.cornell.edu/在线获得可搜索的拟南芥修饰肽库。我们讨论了基于所获得的数据集对肽和PTM分配的信心,以及对生理诱导和制备相关修饰的定量分析的意义。

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