A consensus S. cerevisiae metabolic model Yeast8 and its ecosystem for comprehensively probing cellular metabolism

Genome-scale metabolic models (GEMs) represent extensive knowledgebases that provide a platform for model simulations and integrative analysis of omics data. This study introduces Yeast8 and an associated ecosystem of models that represent a comprehensive computational resource for performing simula...

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Veröffentlicht in:Nature communications 2019-08, Vol.10 (1), p.3586-13, Article 3586
Hauptverfasser: Lu, Hongzhong, Li, Feiran, Sánchez, Benjamín J., Zhu, Zhengming, Li, Gang, Domenzain, Iván, Marcišauskas, Simonas, Anton, Petre Mihail, Lappa, Dimitra, Lieven, Christian, Beber, Moritz Emanuel, Sonnenschein, Nikolaus, Kerkhoven, Eduard J., Nielsen, Jens
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Sprache:eng
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Zusammenfassung:Genome-scale metabolic models (GEMs) represent extensive knowledgebases that provide a platform for model simulations and integrative analysis of omics data. This study introduces Yeast8 and an associated ecosystem of models that represent a comprehensive computational resource for performing simulations of the metabolism of Saccharomyces cerevisiae ––an important model organism and widely used cell-factory. Yeast8 tracks community development with version control, setting a standard for how GEMs can be continuously updated in a simple and reproducible way. We use Yeast8 to develop the derived models panYeast8 and coreYeast8, which in turn enable the reconstruction of GEMs for 1,011 different yeast strains. Through integration with enzyme constraints (ecYeast8) and protein 3D structures (proYeast8 DB ), Yeast8 further facilitates the exploration of yeast metabolism at a multi-scale level, enabling prediction of how single nucleotide variations translate to phenotypic traits. Genome-scale metabolic models provide a platform to study metabolism through simulations and analysis of omics data. Here the authors introduce Yeast8 with its model ecosystem, a comprehensive computational resource for simulating the metabolism of Saccharomyces cerevisiae .
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-019-11581-3