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首页> 外文期刊>Journal of mass spectrometry: JMS >Testing an alternative search algorithm for compound identification with the 'Wiley Registry of Tandem Mass Spectral Data, MSforID'
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Testing an alternative search algorithm for compound identification with the 'Wiley Registry of Tandem Mass Spectral Data, MSforID'

机译:使用“串联质谱的Wiley注册中心MSforID”测试用于化合物鉴定的替代搜索算法

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A tandem mass spectral database system consists of a library of reference spectra and a search program. State-of-the-art search programs show a high tolerance for variability in compound-specific fragmentation patterns produced by collision-induced decomposition and enable sensitive and specific 'identity search'. In this communication, performance characteristics of two search algorithms combined with the 'Wiley Registry of Tandem Mass Spectral Data, MSforID' (Wiley Registry MSMS, John Wiley and Sons, Hoboken, NJ, USA) were evaluated. The search algorithms tested were the MSMS search algorithm implemented in the NIST MS Search program 2.0g (NIST, Gaithersburg, MD, USA) and the MSforID algorithm (John Wiley and Sons, Hoboken, NJ, USA). Sample spectra were acquired on different instruments and, thus, covered a broad range of possible experimental conditions or were generated in silico. For each algorithm, more than 30 000 matches were performed. Statistical evaluation of the library search results revealed that principally both search algorithms can be combined with the Wiley Registry MSMS to create a reliable identification tool. It appears, however, that a higher degree of spectral similarity is necessary to obtain a correct match with the NIST MS Search program. This characteristic of the NIST MS Search program has a positive effect on specificity as it helps to avoid false positive matches (type I errors), but reduces sensitivity. Thus, particularly with sample spectra acquired on instruments differing in their setup from tandem-in-space type fragmentation, a comparably higher number of false negative matches (type II errors) were observed by searching the Wiley Registry MSMS.
机译:串联质谱数据库系统由参考光谱库和搜索程序组成。最新的搜索程序对由碰撞诱导的分解产生的化合物特定的碎片模式的变异性具有高度的耐受性,并且可以进行敏感且特定的“身份搜索”。在此通讯中,评估了两种搜索算法与“串联质谱的Wiley注册中心MSforID”(Wiley注册MSMS,John Wiley and Sons,Hoboken,NJ,美国)相结合的性能特征。测试的搜索算法是在NIST MS搜索程序2.0g(NIST,盖特斯堡,马里兰州,美国)中实现的MSMS搜索算法和MSforID算法(John Wiley and Sons,Hoboken,NJ,美国)中实现的MSMS搜索算法。样品光谱是在不同的仪器上获得的,因此涵盖了可能的实验条件的广泛范围,或者是通过计算机生成的。对于每种算法,执行了30 000多个匹配。对图书馆搜索结果的统计评估表明,原则上,两种搜索算法都可以与Wiley Registry MSMS结合使用,以创建可靠的识别工具。但是,为了获得与NIST MS Search程序的正确匹配,需要更高程度的光谱相似性。 NIST MS搜索程序的这一特征对特异性有积极影响,因为它有助于避免错误的肯定匹配(I型错误),但会降低灵敏度。因此,特别是在仪器上获得的样品光谱与空间串联类型的碎片不同的情况下,通过搜索Wiley Registry MSMS观察到了相当多的假阴性匹配(II型错误)。

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