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The transcription factor EGR2 is indispensable for tissue-specific imprinting of alveolar macrophages in health and tissue repair( # )

Alveolar macrophages are the most abundant macrophages in the healthy lung where they play key roles in homeostasis and immune surveillance against air-borne pathogens. Tissue-specific differentiation and survival of alveolar macrophages relies on niche-derived factors, such as granulocyte-macrophag...

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Autores principales: McCowan, Jack, Fercoq, Frédéric, Kirkwood, Phoebe M., T’Jonck, Wouter, Hegarty, Lizi M., Mawer, Connar M., Cunningham, Richard, Mirchandani, Ananda S., Hoy, Anna, Humphries, Duncan C., Jones, Gareth-Rhys, Hansen, Carsten G., Hirani, Nik, Jenkins, Stephen J., Henri, Sandrine, Malissen, Bernard, Walmsley, Sarah R., Dockrell, David H., Saunders, Philippa T. K., Carlin, Leo M., Bain, Calum C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7612216/
https://www.ncbi.nlm.nih.gov/pubmed/34797692
http://dx.doi.org/10.1126/sciimmunol.abj2132
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author McCowan, Jack
Fercoq, Frédéric
Kirkwood, Phoebe M.
T’Jonck, Wouter
Hegarty, Lizi M.
Mawer, Connar M.
Cunningham, Richard
Mirchandani, Ananda S.
Hoy, Anna
Humphries, Duncan C.
Jones, Gareth-Rhys
Hansen, Carsten G.
Hirani, Nik
Jenkins, Stephen J.
Henri, Sandrine
Malissen, Bernard
Walmsley, Sarah R.
Dockrell, David H.
Saunders, Philippa T. K.
Carlin, Leo M.
Bain, Calum C.
author_facet McCowan, Jack
Fercoq, Frédéric
Kirkwood, Phoebe M.
T’Jonck, Wouter
Hegarty, Lizi M.
Mawer, Connar M.
Cunningham, Richard
Mirchandani, Ananda S.
Hoy, Anna
Humphries, Duncan C.
Jones, Gareth-Rhys
Hansen, Carsten G.
Hirani, Nik
Jenkins, Stephen J.
Henri, Sandrine
Malissen, Bernard
Walmsley, Sarah R.
Dockrell, David H.
Saunders, Philippa T. K.
Carlin, Leo M.
Bain, Calum C.
author_sort McCowan, Jack
collection PubMed
description Alveolar macrophages are the most abundant macrophages in the healthy lung where they play key roles in homeostasis and immune surveillance against air-borne pathogens. Tissue-specific differentiation and survival of alveolar macrophages relies on niche-derived factors, such as granulocyte-macrophage colony stimulating factor 2 (GM-CSF) and transforming growth factor beta (TGF-β). However, the nature of the downstream molecular pathways that regulate the identity and function of alveolar macrophages and their response to injury remains poorly understood. Here, we identify that the transcription factor EGR2 is an evolutionarily conserved feature of lung alveolar macrophages and show that cell-intrinsic EGR2 is indispensable for the tissue-specific identity of alveolar macrophages. Mechanistically, we show that EGR2 is driven by TGF-β and GM-CSF in a PPAR-γ-dependent manner to control alveolar macrophage differentiation. Functionally, EGR2 was dispensable for regulation of lipids in the airways, but crucial for the effective handling of the respiratory pathogen Streptococcus pneumoniae. Finally, we show that EGR2 is required for repopulation of the alveolar niche following sterile, bleomycin-induced lung injury and demonstrate that EGR2-dependent, monocyte-derived alveolar macrophages are vital for effective tissue repair following injury. Collectively, we demonstrate that EGR2 is an indispensable component of the transcriptional network controlling the identity and function of alveolar macrophages in health and disease.
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spelling pubmed-76122162022-01-13 The transcription factor EGR2 is indispensable for tissue-specific imprinting of alveolar macrophages in health and tissue repair( # ) McCowan, Jack Fercoq, Frédéric Kirkwood, Phoebe M. T’Jonck, Wouter Hegarty, Lizi M. Mawer, Connar M. Cunningham, Richard Mirchandani, Ananda S. Hoy, Anna Humphries, Duncan C. Jones, Gareth-Rhys Hansen, Carsten G. Hirani, Nik Jenkins, Stephen J. Henri, Sandrine Malissen, Bernard Walmsley, Sarah R. Dockrell, David H. Saunders, Philippa T. K. Carlin, Leo M. Bain, Calum C. Sci Immunol Article Alveolar macrophages are the most abundant macrophages in the healthy lung where they play key roles in homeostasis and immune surveillance against air-borne pathogens. Tissue-specific differentiation and survival of alveolar macrophages relies on niche-derived factors, such as granulocyte-macrophage colony stimulating factor 2 (GM-CSF) and transforming growth factor beta (TGF-β). However, the nature of the downstream molecular pathways that regulate the identity and function of alveolar macrophages and their response to injury remains poorly understood. Here, we identify that the transcription factor EGR2 is an evolutionarily conserved feature of lung alveolar macrophages and show that cell-intrinsic EGR2 is indispensable for the tissue-specific identity of alveolar macrophages. Mechanistically, we show that EGR2 is driven by TGF-β and GM-CSF in a PPAR-γ-dependent manner to control alveolar macrophage differentiation. Functionally, EGR2 was dispensable for regulation of lipids in the airways, but crucial for the effective handling of the respiratory pathogen Streptococcus pneumoniae. Finally, we show that EGR2 is required for repopulation of the alveolar niche following sterile, bleomycin-induced lung injury and demonstrate that EGR2-dependent, monocyte-derived alveolar macrophages are vital for effective tissue repair following injury. Collectively, we demonstrate that EGR2 is an indispensable component of the transcriptional network controlling the identity and function of alveolar macrophages in health and disease. 2021-11-19 2021-11-19 /pmc/articles/PMC7612216/ /pubmed/34797692 http://dx.doi.org/10.1126/sciimmunol.abj2132 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a CC BY 4.0 (https://creativecommons.org/licenses/by/4.0/) International license.
spellingShingle Article
McCowan, Jack
Fercoq, Frédéric
Kirkwood, Phoebe M.
T’Jonck, Wouter
Hegarty, Lizi M.
Mawer, Connar M.
Cunningham, Richard
Mirchandani, Ananda S.
Hoy, Anna
Humphries, Duncan C.
Jones, Gareth-Rhys
Hansen, Carsten G.
Hirani, Nik
Jenkins, Stephen J.
Henri, Sandrine
Malissen, Bernard
Walmsley, Sarah R.
Dockrell, David H.
Saunders, Philippa T. K.
Carlin, Leo M.
Bain, Calum C.
The transcription factor EGR2 is indispensable for tissue-specific imprinting of alveolar macrophages in health and tissue repair( # )
title The transcription factor EGR2 is indispensable for tissue-specific imprinting of alveolar macrophages in health and tissue repair( # )
title_full The transcription factor EGR2 is indispensable for tissue-specific imprinting of alveolar macrophages in health and tissue repair( # )
title_fullStr The transcription factor EGR2 is indispensable for tissue-specific imprinting of alveolar macrophages in health and tissue repair( # )
title_full_unstemmed The transcription factor EGR2 is indispensable for tissue-specific imprinting of alveolar macrophages in health and tissue repair( # )
title_short The transcription factor EGR2 is indispensable for tissue-specific imprinting of alveolar macrophages in health and tissue repair( # )
title_sort transcription factor egr2 is indispensable for tissue-specific imprinting of alveolar macrophages in health and tissue repair( # )
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7612216/
https://www.ncbi.nlm.nih.gov/pubmed/34797692
http://dx.doi.org/10.1126/sciimmunol.abj2132
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