Chemical Proportionality within Molecular Networks.
Daniel PetrasAndrés Mauricio Caraballo-RodríguezAlan K JarmuschCarlos Molina-SantiagoJulia M GauglitzEmily C GentryPedro Belda-FerreDiego RomeroShirley M TsunodaPieter C DorresteinMingxun WangPublished in: Analytical chemistry (2021)
Molecular networking of non-targeted tandem mass spectrometry data connects structurally related molecules based on similar fragmentation spectra. Here, we report the Chemical Proportionality (ChemProp) contextualization of molecular networks. ChemProp scores the changes of abundance between two connected nodes over sequential data series (e.g., temporal or spatial relationships), which can be displayed as a direction within the network to prioritize potential biological and chemical transformations or proportional changes of (biosynthetically) related compounds. We tested the ChemProp workflow on a ground truth data set of a defined mixture and highlighted the utility of the tool to prioritize specific molecules within biological samples, including bacterial transformations of bile acids, human drug metabolism, and bacterial natural products biosynthesis. The ChemProp workflow is freely available through the Global Natural Products Social Molecular Networking (GNPS) environment.
Keyphrases
- electronic health record
- tandem mass spectrometry
- big data
- endothelial cells
- healthcare
- single molecule
- emergency department
- high performance liquid chromatography
- mental health
- ultra high performance liquid chromatography
- simultaneous determination
- squamous cell carcinoma
- drug delivery
- mass spectrometry
- density functional theory
- sentinel lymph node
- climate change