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Efficient discovery of abundant post-translational modifications and spectral pairs using peptide mass and retention time differences

机译:高效地发现丰富的翻译后修饰和使用肽质量和保留时间差异的光谱对

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Background: Peptide identification via tandem mass spectrometry is the basic task of current proteomics research. Due to the complexity of mass spectra, the majority of mass spectra cannot be interpreted at present. The existence of unexpected or unknown protein posttranslational modifications is a major reason.Results: This paper describes an efficient and sequence database-independent approach to detecting abundant post-translational modifications in high-accuracy peptide mass spectra. The approach is based on the observation that the spectra of a modified peptide and its unmodified counterpart are correlated with each other in their peptide masses and retention time. Frequently occurring peptide mass differences in a data set imply possible modifications,while small and consistent retention time differences provide orthogonal supporting evidence.We propose to use a bivariate Gaussian mixture model to discriminate modification-related spectral pairs from random ones. Due to the use of two-dimensional information, accurate modification masses and confident spectral pairs can be determined as well as the quantitative influences of modifications on peptide retention time.Conclusions: Experiments on two glycoprotein data sets demonstrate that our method can effectively detect abundant modifications and spectral pairs. By including the discovered modifications into database search or by propagating peptide assignments between paired spectra, an average of 10% more spectra are interpreted.
机译:背景:肽鉴定通过串联质谱是当前蛋白质组学研究的基本任务。由于质谱的复杂性,目前大多数质谱不能解释。意外或未知的蛋白质后期改性是一个主要原因。结果:本文介绍了检测高精度肽质谱中高精度肽质谱中大量翻译后修饰的有效和序列数据库的途径。该方法基于观察结果:改性肽及其未改性的对应物的光谱在其肽质量和保留时间中彼此相关。数据集中经常发生的肽质量差异意味着可能的修改,而小且一致的保留时间差异提供正交的支持证据。我们建议使用双抗体高斯混合模型来区分从随机的改进相关的光谱对。由于使用二维信息,可以确定准确的修改质量和自信的谱对,以及对肽保留时间的修饰的定量影响。结论:两种糖蛋白数据集的实验表明,我们的方法可以有效地检测丰富的修改和光谱对。通过将发现的修改包括进入数据库搜索或通过在成对的光谱之间传播肽分配,将解释平均10%的频谱。

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