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Imidazole propionate is increased in diabetes and associated with dietary patterns and altered microbial ecology

Microbiota-host-diet interactions contribute to the development of metabolic diseases. Imidazole propionate is a novel microbially produced metabolite from histidine, which impairs glucose metabolism. Here, we show that subjects with prediabetes and diabetes in the MetaCardis cohort from three Europ...

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Autores principales: Molinaro, Antonio, Bel Lassen, Pierre, Henricsson, Marcus, Wu, Hao, Adriouch, Solia, Belda, Eugeni, Chakaroun, Rima, Nielsen, Trine, Bergh, Per-Olof, Rouault, Christine, André, Sébastien, Marquet, Florian, Andreelli, Fabrizio, Salem, Joe-Elie, Assmann, Karen, Bastard, Jean-Philippe, Forslund, Sofia, Le Chatelier, Emmanuelle, Falony, Gwen, Pons, Nicolas, Prifti, Edi, Quinquis, Benoit, Roume, Hugo, Vieira-Silva, Sara, Hansen, Tue H., Pedersen, Helle Krogh, Lewinter, Christian, Sønderskov, Nadja B., Køber, Lars, Vestergaard, Henrik, Hansen, Torben, Zucker, Jean-Daniel, Galan, Pilar, Dumas, Marc-Emmanuel, Raes, Jeroen, Oppert, Jean-Michel, Letunic, Ivica, Nielsen, Jens, Bork, Peer, Ehrlich, S. Dusko, Stumvoll, Michael, Pedersen, Oluf, Aron-Wisneswky, Judith, Clément, Karine, Bäckhed, Fredrik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7676231/
https://www.ncbi.nlm.nih.gov/pubmed/33208748
http://dx.doi.org/10.1038/s41467-020-19589-w
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author Molinaro, Antonio
Bel Lassen, Pierre
Henricsson, Marcus
Wu, Hao
Adriouch, Solia
Belda, Eugeni
Chakaroun, Rima
Nielsen, Trine
Bergh, Per-Olof
Rouault, Christine
André, Sébastien
Marquet, Florian
Andreelli, Fabrizio
Salem, Joe-Elie
Assmann, Karen
Bastard, Jean-Philippe
Forslund, Sofia
Le Chatelier, Emmanuelle
Falony, Gwen
Pons, Nicolas
Prifti, Edi
Quinquis, Benoit
Roume, Hugo
Vieira-Silva, Sara
Hansen, Tue H.
Pedersen, Helle Krogh
Lewinter, Christian
Sønderskov, Nadja B.
Køber, Lars
Vestergaard, Henrik
Hansen, Torben
Zucker, Jean-Daniel
Galan, Pilar
Dumas, Marc-Emmanuel
Raes, Jeroen
Oppert, Jean-Michel
Letunic, Ivica
Nielsen, Jens
Bork, Peer
Ehrlich, S. Dusko
Stumvoll, Michael
Pedersen, Oluf
Aron-Wisneswky, Judith
Clément, Karine
Bäckhed, Fredrik
author_facet Molinaro, Antonio
Bel Lassen, Pierre
Henricsson, Marcus
Wu, Hao
Adriouch, Solia
Belda, Eugeni
Chakaroun, Rima
Nielsen, Trine
Bergh, Per-Olof
Rouault, Christine
André, Sébastien
Marquet, Florian
Andreelli, Fabrizio
Salem, Joe-Elie
Assmann, Karen
Bastard, Jean-Philippe
Forslund, Sofia
Le Chatelier, Emmanuelle
Falony, Gwen
Pons, Nicolas
Prifti, Edi
Quinquis, Benoit
Roume, Hugo
Vieira-Silva, Sara
Hansen, Tue H.
Pedersen, Helle Krogh
Lewinter, Christian
Sønderskov, Nadja B.
Køber, Lars
Vestergaard, Henrik
Hansen, Torben
Zucker, Jean-Daniel
Galan, Pilar
Dumas, Marc-Emmanuel
Raes, Jeroen
Oppert, Jean-Michel
Letunic, Ivica
Nielsen, Jens
Bork, Peer
Ehrlich, S. Dusko
Stumvoll, Michael
Pedersen, Oluf
Aron-Wisneswky, Judith
Clément, Karine
Bäckhed, Fredrik
author_sort Molinaro, Antonio
collection PubMed
description Microbiota-host-diet interactions contribute to the development of metabolic diseases. Imidazole propionate is a novel microbially produced metabolite from histidine, which impairs glucose metabolism. Here, we show that subjects with prediabetes and diabetes in the MetaCardis cohort from three European countries have elevated serum imidazole propionate levels. Furthermore, imidazole propionate levels were increased in subjects with low bacterial gene richness and Bacteroides 2 enterotype, which have previously been associated with obesity. The Bacteroides 2 enterotype was also associated with increased abundance of the genes involved in imidazole propionate biosynthesis from dietary histidine. Since patients and controls did not differ in their histidine dietary intake, the elevated levels of imidazole propionate in type 2 diabetes likely reflects altered microbial metabolism of histidine, rather than histidine intake per se. Thus the microbiota may contribute to type 2 diabetes by generating imidazole propionate that can modulate host inflammation and metabolism.
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spelling pubmed-76762312020-11-24 Imidazole propionate is increased in diabetes and associated with dietary patterns and altered microbial ecology Molinaro, Antonio Bel Lassen, Pierre Henricsson, Marcus Wu, Hao Adriouch, Solia Belda, Eugeni Chakaroun, Rima Nielsen, Trine Bergh, Per-Olof Rouault, Christine André, Sébastien Marquet, Florian Andreelli, Fabrizio Salem, Joe-Elie Assmann, Karen Bastard, Jean-Philippe Forslund, Sofia Le Chatelier, Emmanuelle Falony, Gwen Pons, Nicolas Prifti, Edi Quinquis, Benoit Roume, Hugo Vieira-Silva, Sara Hansen, Tue H. Pedersen, Helle Krogh Lewinter, Christian Sønderskov, Nadja B. Køber, Lars Vestergaard, Henrik Hansen, Torben Zucker, Jean-Daniel Galan, Pilar Dumas, Marc-Emmanuel Raes, Jeroen Oppert, Jean-Michel Letunic, Ivica Nielsen, Jens Bork, Peer Ehrlich, S. Dusko Stumvoll, Michael Pedersen, Oluf Aron-Wisneswky, Judith Clément, Karine Bäckhed, Fredrik Nat Commun Article Microbiota-host-diet interactions contribute to the development of metabolic diseases. Imidazole propionate is a novel microbially produced metabolite from histidine, which impairs glucose metabolism. Here, we show that subjects with prediabetes and diabetes in the MetaCardis cohort from three European countries have elevated serum imidazole propionate levels. Furthermore, imidazole propionate levels were increased in subjects with low bacterial gene richness and Bacteroides 2 enterotype, which have previously been associated with obesity. The Bacteroides 2 enterotype was also associated with increased abundance of the genes involved in imidazole propionate biosynthesis from dietary histidine. Since patients and controls did not differ in their histidine dietary intake, the elevated levels of imidazole propionate in type 2 diabetes likely reflects altered microbial metabolism of histidine, rather than histidine intake per se. Thus the microbiota may contribute to type 2 diabetes by generating imidazole propionate that can modulate host inflammation and metabolism. Nature Publishing Group UK 2020-11-18 /pmc/articles/PMC7676231/ /pubmed/33208748 http://dx.doi.org/10.1038/s41467-020-19589-w Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Molinaro, Antonio
Bel Lassen, Pierre
Henricsson, Marcus
Wu, Hao
Adriouch, Solia
Belda, Eugeni
Chakaroun, Rima
Nielsen, Trine
Bergh, Per-Olof
Rouault, Christine
André, Sébastien
Marquet, Florian
Andreelli, Fabrizio
Salem, Joe-Elie
Assmann, Karen
Bastard, Jean-Philippe
Forslund, Sofia
Le Chatelier, Emmanuelle
Falony, Gwen
Pons, Nicolas
Prifti, Edi
Quinquis, Benoit
Roume, Hugo
Vieira-Silva, Sara
Hansen, Tue H.
Pedersen, Helle Krogh
Lewinter, Christian
Sønderskov, Nadja B.
Køber, Lars
Vestergaard, Henrik
Hansen, Torben
Zucker, Jean-Daniel
Galan, Pilar
Dumas, Marc-Emmanuel
Raes, Jeroen
Oppert, Jean-Michel
Letunic, Ivica
Nielsen, Jens
Bork, Peer
Ehrlich, S. Dusko
Stumvoll, Michael
Pedersen, Oluf
Aron-Wisneswky, Judith
Clément, Karine
Bäckhed, Fredrik
Imidazole propionate is increased in diabetes and associated with dietary patterns and altered microbial ecology
title Imidazole propionate is increased in diabetes and associated with dietary patterns and altered microbial ecology
title_full Imidazole propionate is increased in diabetes and associated with dietary patterns and altered microbial ecology
title_fullStr Imidazole propionate is increased in diabetes and associated with dietary patterns and altered microbial ecology
title_full_unstemmed Imidazole propionate is increased in diabetes and associated with dietary patterns and altered microbial ecology
title_short Imidazole propionate is increased in diabetes and associated with dietary patterns and altered microbial ecology
title_sort imidazole propionate is increased in diabetes and associated with dietary patterns and altered microbial ecology
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7676231/
https://www.ncbi.nlm.nih.gov/pubmed/33208748
http://dx.doi.org/10.1038/s41467-020-19589-w
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