Abstract

Untargeted metabolomics analysis captures chemical reactions among small molecules. Common mass spectrometry-based metabolomics workflows first identify the small molecules significantly associated with the outcome of interest, then begin exploring their biochemical relationships to understand biological fate or impact. We suggest an alternative by which general chemical relationships including abiotic reactions can be directly retrieved through untargeted high-resolution paired mass distance (PMD) analysis without a priori knowledge of the identities of participating compounds. PMDs calculated from the mass spectrometry data are linked to chemical reactions obtained via data mining of small molecule and reaction databases, i.e. ‘PMD-based reactomics’. We demonstrate applications of PMD-based reactomics including PMD network analysis, source appointment of unknown compounds, and biomarker reaction discovery as complements to compound discovery analyses used in traditional untargeted workflows. An R implementation of reactomics analysis and the reaction/PMD databases is available as the pmd package.

Highlights

  • Untargeted metabolomics analysis captures chemical reactions among small molecules

  • Though the applications demonstrated here focused on biological processes, databases or reactions, abiotic reactions such as photochemical or pyrolysis reactions could be studied using paired mass distance (PMD)-based reactomics as long as the compounds can be measured by high resolution mass spectrometry (HRMS)

  • Definition of concepts in PMD-based reactomics, qualitative, and relative quantitative PMD analysis are provided in the “Methods” section

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Summary

Introduction

Untargeted metabolomics analysis captures chemical reactions among small molecules. Common mass spectrometry-based metabolomics workflows first identify the small molecules significantly associated with the outcome of interest, begin exploring their biochemical relationships to understand biological fate or impact. We discuss potential applications such as PMD network analysis, biomarker reaction discovery, and source appointment of unknown compounds.

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