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Expert System for Computer-assisted Annotation of MS/MS Spectra

机译:MS / MS光谱计算机辅助注释专家系统

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摘要

An important step in mass spectrometry (MS)-based proteomics is the identification of peptides by their fragment spectra. Regardless of the identification score achieved, almost all tandem-MS (MS/MS) spectra contain remaining peaks that are not assigned by the search engine. These peaks may be explainable by human experts but the scale of modern proteomics experiments makes this impractical. In computer science, Expert Systems are a mature technology to implement a list of rules generated by interviews with practitioners. We here develop such an Expert System, making use of literature knowledge as well as a large body of high mass accuracy and pure fragmentation spectra. Interestingly, we find that even with high mass accuracy data, rule sets can quickly become too complex, leading to over-annotation. Therefore we establish a rigorous false discovery rate, calculated by random insertion of peaks from a large collection of other MS/MS spectra, and use it to develop an optimized knowledge base. This rule set correctly annotates almost all peaks of medium or high abundance. For high resolution HCD data, median intensity coverage of fragment peaks in MS/MS spectra increases from 58% by search engine annotation alone to 86%. The resulting annotation performance surpasses a human expert, especially on complex spectra such as those of larger phosphorylated peptides. Our system is also applicable to high resolution collision-induced dissociation data. It is available both as a part of MaxQuant and via a webserver that only requires an MS/MS spectrum and the corresponding peptides sequence, and which outputs publication quality, annotated MS/MS spectra (). It provides expert knowledge to beginners in the field of MS-based proteomics and helps advanced users to focus on unusual and possibly novel types of fragment ions.
机译:基于质谱(MS)的蛋白质组学的重要一步是通过其片段谱图鉴定肽。不管获得的识别分数如何,几乎所有的串联MS(MS / MS)质谱图都包含搜索引擎未分配的剩余峰。这些峰可能是人类专家可以解释的,但是现代蛋白质组学实验的规模使其不切实际。在计算机科学中,专家系统是一种成熟的技术,可用于实施与从业人员面试所产生的规则列表。我们在这里开发这种专家系统,利用文献知识以及大量高质量的准确度和纯碎裂谱图。有趣的是,我们发现即使具有高质量精确度数据,规则集也可能很快变得过于复杂,从而导致注释过多。因此,我们建立了严格的错误发现率,该错误率是通过从大量其他MS / MS光谱中随机插入峰计算得出的,并使用它来开发优化的知识库。该规则集正确注释了几乎所有中度或高度丰度的峰。对于高分辨率HCD数据,MS / MS质谱图中碎片峰的中值强度覆盖率从仅通过搜索引擎注释的58%增加到86%。最终的注释性能超过了人类专家,尤其是在复杂光谱(例如较大的磷酸化肽的光谱)上。我们的系统也适用于高分辨率碰撞诱发的解离数据。它既可以作为MaxQuant的一部分,也可以通过仅需要MS / MS谱图和相应肽段序列的Web服务器来使用,并且可以输出带注释的MS / MS谱图的出版质量()。它为基于MS的蛋白质组学领域的初学者提供专业知识,并帮助高级用户专注于异常和可能新颖的碎片离子类型。

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