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Telling metabolic stories to explore metabolomics data: a case study on the yeast response to cadmium exposure

Motivation: The increasing availability of metabolomics data enables to better understand the metabolic processes involved in the immediate response of an organism to environmental changes and stress. The data usually come in the form of a list of metabolites whose concentrations significantly chang...

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Autores principales: Milreu, Paulo Vieira, Klein, Cecilia Coimbra, Cottret, Ludovic, Acuña, Vicente, Birmelé, Etienne, Borassi, Michele, Junot, Christophe, Marchetti-Spaccamela, Alberto, Marino, Andrea, Stougie, Leen, Jourdan, Fabien, Crescenzi, Pierluigi, Lacroix, Vincent, Sagot, Marie-France
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3866556/
https://www.ncbi.nlm.nih.gov/pubmed/24167155
http://dx.doi.org/10.1093/bioinformatics/btt597
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author Milreu, Paulo Vieira
Klein, Cecilia Coimbra
Cottret, Ludovic
Acuña, Vicente
Birmelé, Etienne
Borassi, Michele
Junot, Christophe
Marchetti-Spaccamela, Alberto
Marino, Andrea
Stougie, Leen
Jourdan, Fabien
Crescenzi, Pierluigi
Lacroix, Vincent
Sagot, Marie-France
author_facet Milreu, Paulo Vieira
Klein, Cecilia Coimbra
Cottret, Ludovic
Acuña, Vicente
Birmelé, Etienne
Borassi, Michele
Junot, Christophe
Marchetti-Spaccamela, Alberto
Marino, Andrea
Stougie, Leen
Jourdan, Fabien
Crescenzi, Pierluigi
Lacroix, Vincent
Sagot, Marie-France
author_sort Milreu, Paulo Vieira
collection PubMed
description Motivation: The increasing availability of metabolomics data enables to better understand the metabolic processes involved in the immediate response of an organism to environmental changes and stress. The data usually come in the form of a list of metabolites whose concentrations significantly changed under some conditions, and are thus not easy to interpret without being able to precisely visualize how such metabolites are interconnected. Results: We present a method that enables to organize the data from any metabolomics experiment into metabolic stories. Each story corresponds to a possible scenario explaining the flow of matter between the metabolites of interest. These scenarios may then be ranked in different ways depending on which interpretation one wishes to emphasize for the causal link between two affected metabolites: enzyme activation, enzyme inhibition or domino effect on the concentration changes of substrates and products. Equally probable stories under any selected ranking scheme can be further grouped into a single anthology that summarizes, in a unique subnetwork, all equivalently plausible alternative stories. An anthology is simply a union of such stories. We detail an application of the method to the response of yeast to cadmium exposure. We use this system as a proof of concept for our method, and we show that we are able to find a story that reproduces very well the current knowledge about the yeast response to cadmium. We further show that this response is mostly based on enzyme activation. We also provide a framework for exploring the alternative pathways or side effects this local response is expected to have in the rest of the network. We discuss several interpretations for the changes we see, and we suggest hypotheses that could in principle be experimentally tested. Noticeably, our method requires simple input data and could be used in a wide variety of applications. Availability and implementation: The code for the method presented in this article is available at http://gobbolino.gforge.inria.fr. Contact: pvmilreu@gmail.com; vincent.lacroix@univ-lyon1.fr; marie-france.sagot@inria.fr Supplementary information: Supplementary data are available at Bioinformatics online.
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spelling pubmed-38665562013-12-18 Telling metabolic stories to explore metabolomics data: a case study on the yeast response to cadmium exposure Milreu, Paulo Vieira Klein, Cecilia Coimbra Cottret, Ludovic Acuña, Vicente Birmelé, Etienne Borassi, Michele Junot, Christophe Marchetti-Spaccamela, Alberto Marino, Andrea Stougie, Leen Jourdan, Fabien Crescenzi, Pierluigi Lacroix, Vincent Sagot, Marie-France Bioinformatics Original Papers Motivation: The increasing availability of metabolomics data enables to better understand the metabolic processes involved in the immediate response of an organism to environmental changes and stress. The data usually come in the form of a list of metabolites whose concentrations significantly changed under some conditions, and are thus not easy to interpret without being able to precisely visualize how such metabolites are interconnected. Results: We present a method that enables to organize the data from any metabolomics experiment into metabolic stories. Each story corresponds to a possible scenario explaining the flow of matter between the metabolites of interest. These scenarios may then be ranked in different ways depending on which interpretation one wishes to emphasize for the causal link between two affected metabolites: enzyme activation, enzyme inhibition or domino effect on the concentration changes of substrates and products. Equally probable stories under any selected ranking scheme can be further grouped into a single anthology that summarizes, in a unique subnetwork, all equivalently plausible alternative stories. An anthology is simply a union of such stories. We detail an application of the method to the response of yeast to cadmium exposure. We use this system as a proof of concept for our method, and we show that we are able to find a story that reproduces very well the current knowledge about the yeast response to cadmium. We further show that this response is mostly based on enzyme activation. We also provide a framework for exploring the alternative pathways or side effects this local response is expected to have in the rest of the network. We discuss several interpretations for the changes we see, and we suggest hypotheses that could in principle be experimentally tested. Noticeably, our method requires simple input data and could be used in a wide variety of applications. Availability and implementation: The code for the method presented in this article is available at http://gobbolino.gforge.inria.fr. Contact: pvmilreu@gmail.com; vincent.lacroix@univ-lyon1.fr; marie-france.sagot@inria.fr Supplementary information: Supplementary data are available at Bioinformatics online. Oxford University Press 2014-01-01 2013-10-27 /pmc/articles/PMC3866556/ /pubmed/24167155 http://dx.doi.org/10.1093/bioinformatics/btt597 Text en © The Author 2013. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original Papers
Milreu, Paulo Vieira
Klein, Cecilia Coimbra
Cottret, Ludovic
Acuña, Vicente
Birmelé, Etienne
Borassi, Michele
Junot, Christophe
Marchetti-Spaccamela, Alberto
Marino, Andrea
Stougie, Leen
Jourdan, Fabien
Crescenzi, Pierluigi
Lacroix, Vincent
Sagot, Marie-France
Telling metabolic stories to explore metabolomics data: a case study on the yeast response to cadmium exposure
title Telling metabolic stories to explore metabolomics data: a case study on the yeast response to cadmium exposure
title_full Telling metabolic stories to explore metabolomics data: a case study on the yeast response to cadmium exposure
title_fullStr Telling metabolic stories to explore metabolomics data: a case study on the yeast response to cadmium exposure
title_full_unstemmed Telling metabolic stories to explore metabolomics data: a case study on the yeast response to cadmium exposure
title_short Telling metabolic stories to explore metabolomics data: a case study on the yeast response to cadmium exposure
title_sort telling metabolic stories to explore metabolomics data: a case study on the yeast response to cadmium exposure
topic Original Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3866556/
https://www.ncbi.nlm.nih.gov/pubmed/24167155
http://dx.doi.org/10.1093/bioinformatics/btt597
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