首页> 外文会议>Annual International Conference on Research in Computational Molecular Biology(RECOMB 2005); 20050514-18; Cambridge,MA(US) >EigenMS: De Novo Analysis of Peptide Tandem Mass Spectra by Spectral Graph Partitioning
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EigenMS: De Novo Analysis of Peptide Tandem Mass Spectra by Spectral Graph Partitioning

机译:EigenMS:通过光谱图划分对肽串联质谱进行从头分析

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We report on a new de novo peptide sequencing algorithm that uses spectral graph partitioning. In this approach, relationships between m/z peaks are represented by attractive and repulsive springs, and the vibrational modes of the spring system are used to infer information about the peaks (such as "likely b-ion" or "likely y-ion"). We demonstrate the effectiveness of this approach by comparison with other de novo sequencers on test sets of ion-trap and QTOF spectra, including spectra of mixtures of peptides. On all data sets we outperform the other sequencers. Along with spectral graph theory techniques, EigenMS incorporates another improvement of independent interest: robust statistical methods for recalibration of time-of-flight mass measurements. Robust recalibration greatly outperforms simple least-squares recalibration, achieving about three times the accuracy for one QTOF data set.
机译:我们报告了使用光谱图分区的新的从头肽测序算法。在这种方法中,m / z峰之间的关系由吸引和排斥弹簧表示,并且弹簧系统的振动模式用于推断有关峰的信息(例如“可能的b离子”或“可能的y离子” )。我们通过与其他从头测序仪在离子阱和QTOF谱(包括肽混合物谱)的测试集上进行比较来证明这种方法的有效性。在所有数据集上,我们的表现都优于其他定序器。与频谱图理论技术一起,EigenMS结合了另一项独立关注的改进:用于重新校准飞行时间质量测量的可靠统计方法。稳健的重新校准大大优于简单的最小二乘重新校准,其精度约为一个QTOF数据集的三倍。

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