首页> 外文期刊>Journal of proteome research >Toward Spectral Library-Free Matrix-Assisted Laser Desorption/Ionization Time-of-Flight Mass Spectrometry Bacterial Identification
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Toward Spectral Library-Free Matrix-Assisted Laser Desorption/Ionization Time-of-Flight Mass Spectrometry Bacterial Identification

机译:朝向光谱库 - 无基质辅助激光解吸/电离飞行时间质谱细菌鉴定

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摘要

Bacterial identification is of great importance in clinical diagnosis, environmental monitoring, and food safety control. Among various strategies, matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) has drawn significant interest and has been clinically used. Nevertheless, current bioinformatics solutions use spectral libraries for the identification of bacterial strains. Spectral library generation requires acquisition of MALDI-TOF spectra from monoculture bacterial colonies, which is time-consuming and not possible for many species and strains. We propose a strategy for bacterial typing by MALDI-TOF using protein sequences from public database, that is, UniProt. Ten genes were identified to encode proteins most often observed by MALD-TOF from bacteria through 500 times repeated a 10-fold double cross-validation procedure, using 403 MALDI-TOF spectra corresponding to 14 genera, 81 species, and 403 strains, and the protein sequences of 1276 species in UniProt. The 10 genes were then used to annotate peaks on MALDI-TOF spectra of bacteria for bacterial identification. With the approach, bacteria can be identified at the genus level by searching against a database containing the protein sequences of 42 genera of bacteria from UniProt. Our approach identified 84.1% of the 403 spectra correctly at the genus level. Source code of the algorithm is available at https://github.com/dipcarbon/BacteriaMSLF.
机译:细菌鉴定在临床诊断,环境监测和食品安全控制方面具有重要意义。在各种策略中,基质辅助激光解吸/电离飞行时间质谱仪(MALDI-TOF MS)具有显着的兴趣并已被临床使用。然而,目前的生物信息溶液使用光谱文库来鉴定细菌菌株。光谱库生成需要从单一栽培细菌菌落获取MALDI-TOF光谱,这对于许多物种和菌株来说是不可能的。我们向Maldi-Tof使用公共数据库的蛋白质序列提出了一种细菌类型的策略,即Uniprot。鉴定十个基因以编码最常由来自细菌的MALD-TOF观察到的蛋白质通过500次重复10倍双交叉验证程序,使用对应于14个属,81种和403个菌株的403 maldi-TOF光谱,以及Uniprot 1276种蛋白质序列。然后使用10个基因注释对细菌鉴定的细菌的Maldi-TOF光谱上的峰。通过这种方法,通过搜索包含从Uniprot 42个细菌的蛋白质序列的数据库来鉴定细菌。我们的方法在属级别确定了403个光谱的84.1%。算法的源代码可在https://github.com/dipcarbon/bacteriaslf中获得。

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