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Chromatin Remodeling Drives Immune-Fibroblast Crosstalk in Heart Failure Pathogenesis

Chronic inflammation and tissue fibrosis are common stress responses that worsen organ function, yet the molecular mechanisms governing their crosstalk are poorly understood. In diseased organs, stress-induced changes in gene expression fuel maladaptive cell state transitions and pathological intera...

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Autores principales: Alexanian, Michael, Padmanabhan, Arun, Nishino, Tomohiro, Travers, Joshua G., Ye, Lin, Lee, Clara Youngna, Sadagopan, Nandhini, Huang, Yu, Pelonero, Angelo, Auclair, Kirsten, Zhu, Ada, Teran, Barbara Gonzalez, Flanigan, Will, Kim, Charis Kee-Seon, Lumbao-Conradson, Koya, Costa, Mauro, Jain, Rajan, Charo, Israel, Haldar, Saptarsi M., Pollard, Katherine S., Vagnozzi, Ronald J., McKinsey, Timothy A., Przytycki, Pawel F., Srivastava, Deepak
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9881961/
https://www.ncbi.nlm.nih.gov/pubmed/36711864
http://dx.doi.org/10.1101/2023.01.06.522937
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author Alexanian, Michael
Padmanabhan, Arun
Nishino, Tomohiro
Travers, Joshua G.
Ye, Lin
Lee, Clara Youngna
Sadagopan, Nandhini
Huang, Yu
Pelonero, Angelo
Auclair, Kirsten
Zhu, Ada
Teran, Barbara Gonzalez
Flanigan, Will
Kim, Charis Kee-Seon
Lumbao-Conradson, Koya
Costa, Mauro
Jain, Rajan
Charo, Israel
Haldar, Saptarsi M.
Pollard, Katherine S.
Vagnozzi, Ronald J.
McKinsey, Timothy A.
Przytycki, Pawel F.
Srivastava, Deepak
author_facet Alexanian, Michael
Padmanabhan, Arun
Nishino, Tomohiro
Travers, Joshua G.
Ye, Lin
Lee, Clara Youngna
Sadagopan, Nandhini
Huang, Yu
Pelonero, Angelo
Auclair, Kirsten
Zhu, Ada
Teran, Barbara Gonzalez
Flanigan, Will
Kim, Charis Kee-Seon
Lumbao-Conradson, Koya
Costa, Mauro
Jain, Rajan
Charo, Israel
Haldar, Saptarsi M.
Pollard, Katherine S.
Vagnozzi, Ronald J.
McKinsey, Timothy A.
Przytycki, Pawel F.
Srivastava, Deepak
author_sort Alexanian, Michael
collection PubMed
description Chronic inflammation and tissue fibrosis are common stress responses that worsen organ function, yet the molecular mechanisms governing their crosstalk are poorly understood. In diseased organs, stress-induced changes in gene expression fuel maladaptive cell state transitions and pathological interaction between diverse cellular compartments. Although chronic fibroblast activation worsens dysfunction of lung, liver, kidney, and heart, and exacerbates many cancers, the stress-sensing mechanisms initiating the transcriptional activation of fibroblasts are not well understood. Here, we show that conditional deletion of the transcription co-activator Brd4 in Cx3cr1-positive myeloid cells ameliorates heart failure and is associated with a dramatic reduction in fibroblast activation. Analysis of single-cell chromatin accessibility and BRD4 occupancy in vivo in Cx3cr1-positive cells identified a large enhancer proximal to Interleukin-1 beta (Il1b), and a series of CRISPR deletions revealed the precise stress-dependent regulatory element that controlled expression of Il1b in disease. Secreted IL1B functioned non-cell autonomously to activate a p65/RELA-dependent enhancer near the transcription factor MEOX1, resulting in a profibrotic response in human cardiac fibroblasts. In vivo, antibody-mediated IL1B neutralization prevented stress-induced expression of MEOX1, inhibited fibroblast activation, and improved cardiac function in heart failure. The elucidation of BRD4-dependent crosstalk between a specific immune cell subset and fibroblasts through IL1B provides new therapeutic strategies for heart disease and other disorders of chronic inflammation and maladaptive tissue remodeling.
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spelling pubmed-98819612023-01-28 Chromatin Remodeling Drives Immune-Fibroblast Crosstalk in Heart Failure Pathogenesis Alexanian, Michael Padmanabhan, Arun Nishino, Tomohiro Travers, Joshua G. Ye, Lin Lee, Clara Youngna Sadagopan, Nandhini Huang, Yu Pelonero, Angelo Auclair, Kirsten Zhu, Ada Teran, Barbara Gonzalez Flanigan, Will Kim, Charis Kee-Seon Lumbao-Conradson, Koya Costa, Mauro Jain, Rajan Charo, Israel Haldar, Saptarsi M. Pollard, Katherine S. Vagnozzi, Ronald J. McKinsey, Timothy A. Przytycki, Pawel F. Srivastava, Deepak bioRxiv Article Chronic inflammation and tissue fibrosis are common stress responses that worsen organ function, yet the molecular mechanisms governing their crosstalk are poorly understood. In diseased organs, stress-induced changes in gene expression fuel maladaptive cell state transitions and pathological interaction between diverse cellular compartments. Although chronic fibroblast activation worsens dysfunction of lung, liver, kidney, and heart, and exacerbates many cancers, the stress-sensing mechanisms initiating the transcriptional activation of fibroblasts are not well understood. Here, we show that conditional deletion of the transcription co-activator Brd4 in Cx3cr1-positive myeloid cells ameliorates heart failure and is associated with a dramatic reduction in fibroblast activation. Analysis of single-cell chromatin accessibility and BRD4 occupancy in vivo in Cx3cr1-positive cells identified a large enhancer proximal to Interleukin-1 beta (Il1b), and a series of CRISPR deletions revealed the precise stress-dependent regulatory element that controlled expression of Il1b in disease. Secreted IL1B functioned non-cell autonomously to activate a p65/RELA-dependent enhancer near the transcription factor MEOX1, resulting in a profibrotic response in human cardiac fibroblasts. In vivo, antibody-mediated IL1B neutralization prevented stress-induced expression of MEOX1, inhibited fibroblast activation, and improved cardiac function in heart failure. The elucidation of BRD4-dependent crosstalk between a specific immune cell subset and fibroblasts through IL1B provides new therapeutic strategies for heart disease and other disorders of chronic inflammation and maladaptive tissue remodeling. Cold Spring Harbor Laboratory 2023-01-07 /pmc/articles/PMC9881961/ /pubmed/36711864 http://dx.doi.org/10.1101/2023.01.06.522937 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Alexanian, Michael
Padmanabhan, Arun
Nishino, Tomohiro
Travers, Joshua G.
Ye, Lin
Lee, Clara Youngna
Sadagopan, Nandhini
Huang, Yu
Pelonero, Angelo
Auclair, Kirsten
Zhu, Ada
Teran, Barbara Gonzalez
Flanigan, Will
Kim, Charis Kee-Seon
Lumbao-Conradson, Koya
Costa, Mauro
Jain, Rajan
Charo, Israel
Haldar, Saptarsi M.
Pollard, Katherine S.
Vagnozzi, Ronald J.
McKinsey, Timothy A.
Przytycki, Pawel F.
Srivastava, Deepak
Chromatin Remodeling Drives Immune-Fibroblast Crosstalk in Heart Failure Pathogenesis
title Chromatin Remodeling Drives Immune-Fibroblast Crosstalk in Heart Failure Pathogenesis
title_full Chromatin Remodeling Drives Immune-Fibroblast Crosstalk in Heart Failure Pathogenesis
title_fullStr Chromatin Remodeling Drives Immune-Fibroblast Crosstalk in Heart Failure Pathogenesis
title_full_unstemmed Chromatin Remodeling Drives Immune-Fibroblast Crosstalk in Heart Failure Pathogenesis
title_short Chromatin Remodeling Drives Immune-Fibroblast Crosstalk in Heart Failure Pathogenesis
title_sort chromatin remodeling drives immune-fibroblast crosstalk in heart failure pathogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9881961/
https://www.ncbi.nlm.nih.gov/pubmed/36711864
http://dx.doi.org/10.1101/2023.01.06.522937
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