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Cytokine-Mediated Degradation of the Transcription Factor ERG Impacts the Pulmonary Vascular Response to Systemic Inflammatory Challenge

During infectious diseases, proinflammatory cytokines transiently destabilize interactions between adjacent vascular endothelial cells (ECs) to facilitate the passage of immune molecules and cells into tissues. However, in the lung, the resulting vascular hyperpermeability can lead to organ dysfunct...

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Autores principales: Schafer, Christopher M., Martin-Almedina, Silvia, Kurylowicz, Katarzyna, Dufton, Neil, Osuna-Almagro, Lourdes, Wu, Meng-Ling, Johnson, Charmain F., Shah, Aarti V., Haskard, Dorian O., Buxton, Andrianna, Willis, Erika, Wheeler, Kate, Turner, Sean, Chlebicz, Magdalena, Scott, Rizaldy P., Kovats, Susan, Cleuren, Audrey, Birdsey, Graeme M., Randi, Anna M., Griffin, Courtney T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10364964/
https://www.ncbi.nlm.nih.gov/pubmed/37317853
http://dx.doi.org/10.1161/ATVBAHA.123.318926
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author Schafer, Christopher M.
Martin-Almedina, Silvia
Kurylowicz, Katarzyna
Dufton, Neil
Osuna-Almagro, Lourdes
Wu, Meng-Ling
Johnson, Charmain F.
Shah, Aarti V.
Haskard, Dorian O.
Buxton, Andrianna
Willis, Erika
Wheeler, Kate
Turner, Sean
Chlebicz, Magdalena
Scott, Rizaldy P.
Kovats, Susan
Cleuren, Audrey
Birdsey, Graeme M.
Randi, Anna M.
Griffin, Courtney T.
author_facet Schafer, Christopher M.
Martin-Almedina, Silvia
Kurylowicz, Katarzyna
Dufton, Neil
Osuna-Almagro, Lourdes
Wu, Meng-Ling
Johnson, Charmain F.
Shah, Aarti V.
Haskard, Dorian O.
Buxton, Andrianna
Willis, Erika
Wheeler, Kate
Turner, Sean
Chlebicz, Magdalena
Scott, Rizaldy P.
Kovats, Susan
Cleuren, Audrey
Birdsey, Graeme M.
Randi, Anna M.
Griffin, Courtney T.
author_sort Schafer, Christopher M.
collection PubMed
description During infectious diseases, proinflammatory cytokines transiently destabilize interactions between adjacent vascular endothelial cells (ECs) to facilitate the passage of immune molecules and cells into tissues. However, in the lung, the resulting vascular hyperpermeability can lead to organ dysfunction. Previous work identified the transcription factor ERG (erythroblast transformation-specific–related gene) as a master regulator of endothelial homeostasis. Here we investigate whether the sensitivity of pulmonary blood vessels to cytokine-induced destabilization is due to organotypic mechanisms affecting the ability of endothelial ERG to protect lung ECs from inflammatory injury. METHODS: Cytokine-dependent ubiquitination and proteasomal degradation of ERG were analyzed in cultured HUVECs (human umbilical vein ECs). Systemic administration of TNFα (tumor necrosis factor alpha) or the bacterial cell wall component lipopolysaccharide was used to cause a widespread inflammatory challenge in mice; ERG protein levels were assessed by immunoprecipitation, immunoblot, and immunofluorescence. Murine Erg deletion was genetically induced in ECs (Erg(fl/fl);Cdh5[PAC]-Cre(ERT2)), and multiple organs were analyzed by histology, immunostaining, and electron microscopy. RESULTS: In vitro, TNFα promoted the ubiquitination and degradation of ERG in HUVECs, which was blocked by the proteasomal inhibitor MG132. In vivo, systemic administration of TNFα or lipopolysaccharide resulted in a rapid and substantial degradation of ERG within lung ECs but not ECs of the retina, heart, liver, or kidney. Pulmonary ERG was also downregulated in a murine model of influenza infection. Erg(fl/fl);Cdh5(PAC)-Cre(ERT2) mice spontaneously recapitulated aspects of inflammatory challenges, including lung-predominant vascular hyperpermeability, immune cell recruitment, and fibrosis. These phenotypes were associated with a lung-specific decrease in the expression of Tek—a gene target of ERG previously implicated in maintaining pulmonary vascular stability during inflammation. CONCLUSIONS: Collectively, our data highlight a unique role for ERG in pulmonary vascular function. We propose that cytokine-induced ERG degradation and subsequent transcriptional changes in lung ECs play critical roles in the destabilization of pulmonary blood vessels during infectious diseases.
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spelling pubmed-103649642023-07-25 Cytokine-Mediated Degradation of the Transcription Factor ERG Impacts the Pulmonary Vascular Response to Systemic Inflammatory Challenge Schafer, Christopher M. Martin-Almedina, Silvia Kurylowicz, Katarzyna Dufton, Neil Osuna-Almagro, Lourdes Wu, Meng-Ling Johnson, Charmain F. Shah, Aarti V. Haskard, Dorian O. Buxton, Andrianna Willis, Erika Wheeler, Kate Turner, Sean Chlebicz, Magdalena Scott, Rizaldy P. Kovats, Susan Cleuren, Audrey Birdsey, Graeme M. Randi, Anna M. Griffin, Courtney T. Arterioscler Thromb Vasc Biol Basic Sciences During infectious diseases, proinflammatory cytokines transiently destabilize interactions between adjacent vascular endothelial cells (ECs) to facilitate the passage of immune molecules and cells into tissues. However, in the lung, the resulting vascular hyperpermeability can lead to organ dysfunction. Previous work identified the transcription factor ERG (erythroblast transformation-specific–related gene) as a master regulator of endothelial homeostasis. Here we investigate whether the sensitivity of pulmonary blood vessels to cytokine-induced destabilization is due to organotypic mechanisms affecting the ability of endothelial ERG to protect lung ECs from inflammatory injury. METHODS: Cytokine-dependent ubiquitination and proteasomal degradation of ERG were analyzed in cultured HUVECs (human umbilical vein ECs). Systemic administration of TNFα (tumor necrosis factor alpha) or the bacterial cell wall component lipopolysaccharide was used to cause a widespread inflammatory challenge in mice; ERG protein levels were assessed by immunoprecipitation, immunoblot, and immunofluorescence. Murine Erg deletion was genetically induced in ECs (Erg(fl/fl);Cdh5[PAC]-Cre(ERT2)), and multiple organs were analyzed by histology, immunostaining, and electron microscopy. RESULTS: In vitro, TNFα promoted the ubiquitination and degradation of ERG in HUVECs, which was blocked by the proteasomal inhibitor MG132. In vivo, systemic administration of TNFα or lipopolysaccharide resulted in a rapid and substantial degradation of ERG within lung ECs but not ECs of the retina, heart, liver, or kidney. Pulmonary ERG was also downregulated in a murine model of influenza infection. Erg(fl/fl);Cdh5(PAC)-Cre(ERT2) mice spontaneously recapitulated aspects of inflammatory challenges, including lung-predominant vascular hyperpermeability, immune cell recruitment, and fibrosis. These phenotypes were associated with a lung-specific decrease in the expression of Tek—a gene target of ERG previously implicated in maintaining pulmonary vascular stability during inflammation. CONCLUSIONS: Collectively, our data highlight a unique role for ERG in pulmonary vascular function. We propose that cytokine-induced ERG degradation and subsequent transcriptional changes in lung ECs play critical roles in the destabilization of pulmonary blood vessels during infectious diseases. Lippincott Williams & Wilkins 2023-06-15 2023-08 /pmc/articles/PMC10364964/ /pubmed/37317853 http://dx.doi.org/10.1161/ATVBAHA.123.318926 Text en © 2023 The Authors. https://creativecommons.org/licenses/by-nc-nd/4.0/Arteriosclerosis, Thrombosis, and Vascular Biology is published on behalf of the American Heart Association, Inc., by Wolters Kluwer Health, Inc. This is an open access article under the terms of the Creative Commons Attribution Non-Commercial-NoDerivs (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use, distribution, and reproduction in any medium, provided that the original work is properly cited, the use is noncommercial, and no modifications or adaptations are made.
spellingShingle Basic Sciences
Schafer, Christopher M.
Martin-Almedina, Silvia
Kurylowicz, Katarzyna
Dufton, Neil
Osuna-Almagro, Lourdes
Wu, Meng-Ling
Johnson, Charmain F.
Shah, Aarti V.
Haskard, Dorian O.
Buxton, Andrianna
Willis, Erika
Wheeler, Kate
Turner, Sean
Chlebicz, Magdalena
Scott, Rizaldy P.
Kovats, Susan
Cleuren, Audrey
Birdsey, Graeme M.
Randi, Anna M.
Griffin, Courtney T.
Cytokine-Mediated Degradation of the Transcription Factor ERG Impacts the Pulmonary Vascular Response to Systemic Inflammatory Challenge
title Cytokine-Mediated Degradation of the Transcription Factor ERG Impacts the Pulmonary Vascular Response to Systemic Inflammatory Challenge
title_full Cytokine-Mediated Degradation of the Transcription Factor ERG Impacts the Pulmonary Vascular Response to Systemic Inflammatory Challenge
title_fullStr Cytokine-Mediated Degradation of the Transcription Factor ERG Impacts the Pulmonary Vascular Response to Systemic Inflammatory Challenge
title_full_unstemmed Cytokine-Mediated Degradation of the Transcription Factor ERG Impacts the Pulmonary Vascular Response to Systemic Inflammatory Challenge
title_short Cytokine-Mediated Degradation of the Transcription Factor ERG Impacts the Pulmonary Vascular Response to Systemic Inflammatory Challenge
title_sort cytokine-mediated degradation of the transcription factor erg impacts the pulmonary vascular response to systemic inflammatory challenge
topic Basic Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10364964/
https://www.ncbi.nlm.nih.gov/pubmed/37317853
http://dx.doi.org/10.1161/ATVBAHA.123.318926
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