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Notch activation shifts the fate decision of senescent progenitors toward myofibrogenesis in human adipose tissue

Senescence is a key event in the impairment of adipose tissue (AT) function with obesity and aging but the underlying molecular and cellular players remain to be fully defined, particularly with respect to the human AT progenitors. We have found distinct profiles of senescent progenitors based on AT...

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Autores principales: Boulet, Nathalie, Briot, Anaïs, Jargaud, Valentin, Estève, David, Rémaury, Anne, Belles, Chloé, Viana, Pénélope, Fontaine, Jessica, Murphy, Lucie, Déon, Catherine, Guillemot, Marie, Pech, Catherine, Veeranagouda, Yaligara, Didier, Michel, Decaunes, Pauline, Mouisel, Etienne, Carpéné, Christian, Iacovoni, Jason S., Zakaroff‐Girard, Alexia, Grolleau, Jean‐Louis, Galitzky, Jean, Ledoux, Séverine, Guillemot, Jean‐Claude, Bouloumié, Anne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10014050/
https://www.ncbi.nlm.nih.gov/pubmed/36617688
http://dx.doi.org/10.1111/acel.13776
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author Boulet, Nathalie
Briot, Anaïs
Jargaud, Valentin
Estève, David
Rémaury, Anne
Belles, Chloé
Viana, Pénélope
Fontaine, Jessica
Murphy, Lucie
Déon, Catherine
Guillemot, Marie
Pech, Catherine
Veeranagouda, Yaligara
Didier, Michel
Decaunes, Pauline
Mouisel, Etienne
Carpéné, Christian
Iacovoni, Jason S.
Zakaroff‐Girard, Alexia
Grolleau, Jean‐Louis
Galitzky, Jean
Ledoux, Séverine
Guillemot, Jean‐Claude
Bouloumié, Anne
author_facet Boulet, Nathalie
Briot, Anaïs
Jargaud, Valentin
Estève, David
Rémaury, Anne
Belles, Chloé
Viana, Pénélope
Fontaine, Jessica
Murphy, Lucie
Déon, Catherine
Guillemot, Marie
Pech, Catherine
Veeranagouda, Yaligara
Didier, Michel
Decaunes, Pauline
Mouisel, Etienne
Carpéné, Christian
Iacovoni, Jason S.
Zakaroff‐Girard, Alexia
Grolleau, Jean‐Louis
Galitzky, Jean
Ledoux, Séverine
Guillemot, Jean‐Claude
Bouloumié, Anne
author_sort Boulet, Nathalie
collection PubMed
description Senescence is a key event in the impairment of adipose tissue (AT) function with obesity and aging but the underlying molecular and cellular players remain to be fully defined, particularly with respect to the human AT progenitors. We have found distinct profiles of senescent progenitors based on AT location between stroma from visceral versus subcutaneous AT. In addition to flow cytometry, we characterized the location differences with transcriptomic and proteomic approaches, uncovering the genes and developmental pathways that are underlying replicative senescence. We identified key components to include INBHA as well as SFRP4 and GREM1, antagonists for the WNT and BMP pathways, in the senescence‐associated secretory phenotype and NOTCH3 in the senescence‐associated intrinsic phenotype. Notch activation in AT progenitors inhibits adipogenesis and promotes myofibrogenesis independently of TGFβ. In addition, we demonstrate that NOTCH3 is enriched in the premyofibroblast progenitor subset, which preferentially accumulates in the visceral AT of patients with an early obesity trajectory. Herein, we reveal that NOTCH3 plays a role in the balance of progenitor fate determination preferring myofibrogenesis at the expense of adipogenesis. Progenitor NOTCH3 may constitute a tool to monitor replicative senescence and to limit AT dysfunction in obesity and aging.
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spelling pubmed-100140502023-03-15 Notch activation shifts the fate decision of senescent progenitors toward myofibrogenesis in human adipose tissue Boulet, Nathalie Briot, Anaïs Jargaud, Valentin Estève, David Rémaury, Anne Belles, Chloé Viana, Pénélope Fontaine, Jessica Murphy, Lucie Déon, Catherine Guillemot, Marie Pech, Catherine Veeranagouda, Yaligara Didier, Michel Decaunes, Pauline Mouisel, Etienne Carpéné, Christian Iacovoni, Jason S. Zakaroff‐Girard, Alexia Grolleau, Jean‐Louis Galitzky, Jean Ledoux, Séverine Guillemot, Jean‐Claude Bouloumié, Anne Aging Cell Research Articles Senescence is a key event in the impairment of adipose tissue (AT) function with obesity and aging but the underlying molecular and cellular players remain to be fully defined, particularly with respect to the human AT progenitors. We have found distinct profiles of senescent progenitors based on AT location between stroma from visceral versus subcutaneous AT. In addition to flow cytometry, we characterized the location differences with transcriptomic and proteomic approaches, uncovering the genes and developmental pathways that are underlying replicative senescence. We identified key components to include INBHA as well as SFRP4 and GREM1, antagonists for the WNT and BMP pathways, in the senescence‐associated secretory phenotype and NOTCH3 in the senescence‐associated intrinsic phenotype. Notch activation in AT progenitors inhibits adipogenesis and promotes myofibrogenesis independently of TGFβ. In addition, we demonstrate that NOTCH3 is enriched in the premyofibroblast progenitor subset, which preferentially accumulates in the visceral AT of patients with an early obesity trajectory. Herein, we reveal that NOTCH3 plays a role in the balance of progenitor fate determination preferring myofibrogenesis at the expense of adipogenesis. Progenitor NOTCH3 may constitute a tool to monitor replicative senescence and to limit AT dysfunction in obesity and aging. John Wiley and Sons Inc. 2023-01-08 /pmc/articles/PMC10014050/ /pubmed/36617688 http://dx.doi.org/10.1111/acel.13776 Text en © 2023 The Authors. Aging Cell published by Anatomical Society and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Boulet, Nathalie
Briot, Anaïs
Jargaud, Valentin
Estève, David
Rémaury, Anne
Belles, Chloé
Viana, Pénélope
Fontaine, Jessica
Murphy, Lucie
Déon, Catherine
Guillemot, Marie
Pech, Catherine
Veeranagouda, Yaligara
Didier, Michel
Decaunes, Pauline
Mouisel, Etienne
Carpéné, Christian
Iacovoni, Jason S.
Zakaroff‐Girard, Alexia
Grolleau, Jean‐Louis
Galitzky, Jean
Ledoux, Séverine
Guillemot, Jean‐Claude
Bouloumié, Anne
Notch activation shifts the fate decision of senescent progenitors toward myofibrogenesis in human adipose tissue
title Notch activation shifts the fate decision of senescent progenitors toward myofibrogenesis in human adipose tissue
title_full Notch activation shifts the fate decision of senescent progenitors toward myofibrogenesis in human adipose tissue
title_fullStr Notch activation shifts the fate decision of senescent progenitors toward myofibrogenesis in human adipose tissue
title_full_unstemmed Notch activation shifts the fate decision of senescent progenitors toward myofibrogenesis in human adipose tissue
title_short Notch activation shifts the fate decision of senescent progenitors toward myofibrogenesis in human adipose tissue
title_sort notch activation shifts the fate decision of senescent progenitors toward myofibrogenesis in human adipose tissue
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10014050/
https://www.ncbi.nlm.nih.gov/pubmed/36617688
http://dx.doi.org/10.1111/acel.13776
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