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一种用于校正气相色谱-大气压化学电离质谱通量实验中叠加质量同位素峰分布的灵活工具。

A Flexible Tool to Correct Superimposed Mass Isotopologue Distributions in GC-APCI-MS Flux Experiments.

作者信息

Langenhan Jennifer, Jaeger Carsten, Baum Katharina, Simon Mareike, Lisec Jan

机构信息

Bundesanstalt für Materialforschung und -Prüfung (BAM), Division 1 Analytical Chemistry, Richard-Willstätter-Straße 11, 12489 Berlin, Germany.

School of Analytical Sciences Adlershof (SALSA), Humboldt-Universität Zu Berlin, Albert-Einstein-Straße 5, 12489 Berlin, Germany.

出版信息

Metabolites. 2022 Apr 29;12(5):408. doi: 10.3390/metabo12050408.

Abstract

The investigation of metabolic fluxes and metabolite distributions within cells by means of tracer molecules is a valuable tool to unravel the complexity of biological systems. Technological advances in mass spectrometry (MS) technology such as atmospheric pressure chemical ionization (APCI) coupled with high resolution (HR), not only allows for highly sensitive analyses but also broadens the usefulness of tracer-based experiments, as interesting signals can be annotated de novo when not yet present in a compound library. However, several effects in the APCI ion source, i.e., fragmentation and rearrangement, lead to superimposed mass isotopologue distributions (MID) within the mass spectra, which need to be corrected during data evaluation as they will impair enrichment calculation otherwise. Here, we present and evaluate a novel software tool to automatically perform such corrections. We discuss the different effects, explain the implemented algorithm, and show its application on several experimental datasets. This adjustable tool is available as an R package from CRAN.

摘要

借助示踪分子对细胞内代谢通量和代谢物分布进行研究,是揭示生物系统复杂性的一项重要工具。质谱(MS)技术的技术进步,如与高分辨率(HR)相结合的大气压化学电离(APCI),不仅能实现高灵敏度分析,还拓宽了基于示踪剂实验的用途,因为当有趣的信号尚未出现在化合物库中时,可以从头进行注释。然而,APCI离子源中的几种效应,即碎片化和重排,会导致质谱图中出现叠加的质量同位素分布(MID),在数据评估过程中需要对其进行校正,否则会影响富集计算。在此,我们展示并评估一种新型软件工具,用于自动执行此类校正。我们讨论了不同的效应,解释了所实施的算法,并展示了其在几个实验数据集上的应用。这个可调整的工具可以从CRAN作为R包获取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a75/9144802/bb3631b859f7/metabolites-12-00408-g001.jpg

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