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Performance Investigation of Proteomic Identification by HCD/CID Fragmentations in Combination with High/Low-Resolution Detectors on a Tribrid High-Field Orbitrap Instrument

机译:HCD / CID片段结合高/低分辨率检测器在三重高场Orbitrap仪器上进行蛋白质组学鉴定的性能研究

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摘要

The recently-introduced Orbitrap Fusion mass spectrometry permits various types of MS2 acquisition methods. To date, these different MS2 strategies and the optimal data interpretation approach for each have not been adequately evaluated. This study comprehensively investigated the four MS2 strategies: HCD-OT (higher-energy-collisional-dissociation with Orbitrap detection), HCD-IT (HCD with ion trap, IT), CID-IT (collision-induced-dissociation with IT) and CID-OT on Orbitrap Fusion. To achieve extensive comparison and identify the optimal data interpretation method for each technique, several search engines (SEQUEST and Mascot) and post-processing methods (score-based, PeptideProphet, and Percolator) were assessed for all techniques for the analysis of a human cell proteome. It was found that divergent conclusions could be made from the same dataset when different data interpretation approaches were used and therefore requiring a relatively fair comparison among techniques. Percolator was chosen for comparison of techniques because it performs the best among all search engines and MS2 strategies. For the analysis of human cell proteome using individual MS2 strategies, the highest number of identifications was achieved by HCD-OT, followed by HCD-IT and CID-IT. Based on these results, we concluded that a relatively fair platform for data interpretation is necessary to avoid divergent conclusions from the same dataset, and HCD-OT and HCD-IT may be preferable for protein/peptide identification using Orbitrap Fusion.
机译:最近引入的Orbitrap Fusion质谱仪允许使用各种类型的MS2采集方法。迄今为止,尚未对这些不同的MS2策略和每种策略的最佳数据解释方法进行充分评估。这项研究全面研究了MS2的四种策略:HCD-OT(具有Orbitrap检测的高能碰撞解离),HCD-IT(具有离子阱,IT的HCD),CID-IT(与IT碰撞诱导的解离)和Orbitrap Fusion上的CID-OT。为了进行广泛的比较并确定每种技术的最佳数据解释方法,对用于人类细胞分析的所有技术评估了几种搜索引擎(SEQUEST和Mascot)和后处理方法(基于得分,PeptideProphet和Percolator)。蛋白质组。人们发现,当使用不同的数据解释方法时,可以从同一数据集得出不同的结论,因此需要在技术之间进行相对公平的比较。选择Percolator进行技术比较是因为它在所有搜索引擎和MS2策略中表现最佳。对于使用单独的MS2策略进行的人类细胞蛋白质组分析,HCD-OT,HCD-IT和CID-IT的识别次数最多。根据这些结果,我们得出结论,为避免来自同一数据集的不同结论,必须使用一个相对公平的数据解释平台,并且对于使用Orbitrap Fusion进行蛋白质/肽鉴定,HCD-OT和HCD-IT可能更可取。

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