Community Curation of Microbial Metabolites Enables Biological Insights of Metabolomics Data
Mannochio-Russo, H.; Goncalves Nunes, W. D.; Xing, S.; de Oliveira, F.; Caraballo-Rodriguez, A. M.; Portal Gomes, P. W.; Charron-Lamoureux, V.; Agongo, J.; Avalon, N. E.; Bui, T.; Cancelada, L.; Chevrette, M. G.; Cumsille, A.; de Araujo, M. B.; De Graeve, M.; Deleray, V.; Donia, M. S.; Dzveta, M. B.; El Abiead, Y.; Ellis, R. J.; Franklin, D.; Garg, N.; Gouda, H.; Hamany Djande, C. Y.; Hiskia, A.; Ho, B. N.; Hughes, C. C.; Hwang, S.; Iliakopoulou, S.; Iudicello, J. E.; Jarmusch, A. K.; Kaloudis, T.; Koester, I.; Konkel, R.; Koolen, H. H. F.; Kvitne, K. E.; La Rosa, S. L.; Lam, A.; Lamichhane, S
Show abstract
Microbial metabolites play a critical role in regulating ecosystems, including the human body and its microbiota. However, understanding the physiologically relevant role of these molecules, especially through liquid chromatography tandem mass spectrometry (LC-MS/MS)-based untargeted metabolomics, poses significant challenges and often requires manual parsing of a large amount of literature, databases, and webpages. To address this gap, we established the Collaborative Microbial Metabolite Center knowledgebase (CMMC-KB), a platform that fosters collaborative efforts within the scientific community to curate knowledge about microbial metabolites. The CMMC-KB aims to collect comprehensive information about microbial molecules originating from microbial biosynthesis, drug metabolism, exposure-related molecules, food, host-derived molecules, and, whenever available, their known activities. Molecules from other sources, including host-produced, dietary, and pharmaceutical compounds, are also included. By enabling direct integration of this knowledgebase with downstream analytical tools, including molecular networking, we can deepen insights into microbiota and their metabolites, ultimately advancing our understanding of microbial ecosystems.
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