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Discriminating precursors of common fragments for large-scale metabolite profiling by triple quadrupole mass spectrometry

机译:用三重四极杆质谱法区分用于大规模代谢物分析的常见片段的前体

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摘要

>Motivation: The goal of large-scale metabolite profiling is to compare the relative concentrations of as many metabolites extracted from biological samples as possible. This is typically accomplished by measuring the abundances of thousands of ions with high-resolution and high mass accuracy mass spectrometers. Although the data from these instruments provide a comprehensive fingerprint of each sample, identifying the structures of the thousands of detected ions is still challenging and time intensive. An alternative, less-comprehensive approach is to use triple quadrupole (QqQ) mass spectrometry to analyze predetermined sets of metabolites (typically fewer than several hundred). This is done using authentic standards to develop QqQ experiments that specifically detect only the targeted metabolites, with the advantage that the need for ion identification after profiling is eliminated.>Results: Here, we propose a framework to extend the application of QqQ mass spectrometers to large-scale metabolite profiling. We aim to provide a foundation for designing QqQ multiple reaction monitoring (MRM) experiments for each of the 82 696 metabolites in the METLIN metabolite database. First, we identify common fragmentation products from the experimental fragmentation data in METLIN. Then, we model the likelihoods of each precursor structure in METLIN producing each common fragmentation product. With these likelihood estimates, we select ensembles of common fragmentation products that minimize our uncertainty about metabolite identities. We demonstrate encouraging performance and, based on our results, we suggest how our method can be integrated with future work to develop large-scale MRM experiments.>Availability and implementation: Our predictions, Supplementary results, and the code for estimating likelihoods and selecting ensembles of fragmentation reactions are made available on the lab website at .>Contact: >Supplementary information: are available at Bioinformatics online.
机译:>动机:大规模代谢物分析的目的是比较从生物样品中提取的尽可能多的代谢物的相对浓度。通常,这是通过使用高分辨率和高质量精度的质谱仪测量数千个离子的丰度来实现的。尽管来自这些仪器的数据为每个样品提供了全面的指纹,但鉴定数千种检测到的离子的结构仍具有挑战性且耗时。另一种不那么全面的方法是使用三重四极杆(QqQ)质谱分析预定的代谢物组(通常少于几百种)。这是使用可靠的标准开发的QqQ实验,仅检测目标代谢物,其优点是消除了分析后对离子鉴定的需求。>结果:在这里,我们提出了一个扩展检测范围的框架。 QqQ质谱仪在大规模代谢物分析中的应用我们旨在为METLIN代谢物数据库中的82 database696代谢物的每一个设计QqQ多反应监测(MRM)实验提供基础。首先,我们从METLIN中的实验碎裂数据中识别出常见的碎裂产物。然后,我们对METLIN中产生每种常见裂解产物的每种前体结构的可能性进行建模。通过这些可能性估计,我们选择了通用片段化产物的集合,以最大程度地减少我们对代谢物身份的不确定性。我们展示出令人鼓舞的性能,并基于我们的结果,建议如何将我们的方法与将来的工作进行集成以开发大规模MRM实验。>可用性和实现:我们的预测,补充结果和代码实验室网站上提供了用于估计可能性和选择片段化反应的集合的信息。>联系方式: >补充信息:在线生物信息学可获取。

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