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ZNF416 is a pivotal transcriptional regulator of fibroblast mechanoactivation

Matrix stiffness is a central regulator of fibroblast function. However, the transcriptional mechanisms linking matrix stiffness to changes in fibroblast phenotype are incompletely understood. Here, we evaluated the effect of matrix stiffness on genome-wide chromatin accessibility in freshly isolate...

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Autores principales: Jones, Dakota L., Meridew, Jeffrey A., Link, Patrick A., Ducharme, Merrick T., Lydon, Katherine L., Choi, Kyoung M., Caporarello, Nunzia, Tan, Qi, Diaz Espinosa, Ana Maria, Xiong, Yuning, Lee, Jeong-Heon, Ye, Zhenqing, Yan, Huihuang, Ordog, Tamas, Ligresti, Giovanni, Varelas, Xaralabos, Tschumperlin, Daniel J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7918622/
https://www.ncbi.nlm.nih.gov/pubmed/33625469
http://dx.doi.org/10.1083/jcb.202007152
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author Jones, Dakota L.
Meridew, Jeffrey A.
Link, Patrick A.
Ducharme, Merrick T.
Lydon, Katherine L.
Choi, Kyoung M.
Caporarello, Nunzia
Tan, Qi
Diaz Espinosa, Ana Maria
Xiong, Yuning
Lee, Jeong-Heon
Ye, Zhenqing
Yan, Huihuang
Ordog, Tamas
Ligresti, Giovanni
Varelas, Xaralabos
Tschumperlin, Daniel J.
author_facet Jones, Dakota L.
Meridew, Jeffrey A.
Link, Patrick A.
Ducharme, Merrick T.
Lydon, Katherine L.
Choi, Kyoung M.
Caporarello, Nunzia
Tan, Qi
Diaz Espinosa, Ana Maria
Xiong, Yuning
Lee, Jeong-Heon
Ye, Zhenqing
Yan, Huihuang
Ordog, Tamas
Ligresti, Giovanni
Varelas, Xaralabos
Tschumperlin, Daniel J.
author_sort Jones, Dakota L.
collection PubMed
description Matrix stiffness is a central regulator of fibroblast function. However, the transcriptional mechanisms linking matrix stiffness to changes in fibroblast phenotype are incompletely understood. Here, we evaluated the effect of matrix stiffness on genome-wide chromatin accessibility in freshly isolated lung fibroblasts using ATAC-seq. We found higher matrix stiffness profoundly increased global chromatin accessibility relative to lower matrix stiffness, and these alterations were in close genomic proximity to known profibrotic gene programs. Motif analysis of these regulated genomic loci identified ZNF416 as a putative mediator of fibroblast stiffness responses. Genome occupancy analysis using ChIP-seq confirmed that ZNF416 occupies a broad range of genes implicated in fibroblast activation and tissue fibrosis, with relatively little overlap in genomic occupancy with other mechanoresponsive and profibrotic transcriptional regulators. Using loss- and gain-of-function studies, we demonstrated that ZNF416 plays a critical role in fibroblast proliferation, extracellular matrix synthesis, and contractile function. Together, these observations identify ZNF416 as novel mechano-activated transcriptional regulator of fibroblast biology.
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spelling pubmed-79186222021-11-03 ZNF416 is a pivotal transcriptional regulator of fibroblast mechanoactivation Jones, Dakota L. Meridew, Jeffrey A. Link, Patrick A. Ducharme, Merrick T. Lydon, Katherine L. Choi, Kyoung M. Caporarello, Nunzia Tan, Qi Diaz Espinosa, Ana Maria Xiong, Yuning Lee, Jeong-Heon Ye, Zhenqing Yan, Huihuang Ordog, Tamas Ligresti, Giovanni Varelas, Xaralabos Tschumperlin, Daniel J. J Cell Biol Report Matrix stiffness is a central regulator of fibroblast function. However, the transcriptional mechanisms linking matrix stiffness to changes in fibroblast phenotype are incompletely understood. Here, we evaluated the effect of matrix stiffness on genome-wide chromatin accessibility in freshly isolated lung fibroblasts using ATAC-seq. We found higher matrix stiffness profoundly increased global chromatin accessibility relative to lower matrix stiffness, and these alterations were in close genomic proximity to known profibrotic gene programs. Motif analysis of these regulated genomic loci identified ZNF416 as a putative mediator of fibroblast stiffness responses. Genome occupancy analysis using ChIP-seq confirmed that ZNF416 occupies a broad range of genes implicated in fibroblast activation and tissue fibrosis, with relatively little overlap in genomic occupancy with other mechanoresponsive and profibrotic transcriptional regulators. Using loss- and gain-of-function studies, we demonstrated that ZNF416 plays a critical role in fibroblast proliferation, extracellular matrix synthesis, and contractile function. Together, these observations identify ZNF416 as novel mechano-activated transcriptional regulator of fibroblast biology. Rockefeller University Press 2021-02-24 /pmc/articles/PMC7918622/ /pubmed/33625469 http://dx.doi.org/10.1083/jcb.202007152 Text en © 2021 Jones et al. http://www.rupress.org/terms/https://creativecommons.org/licenses/by-nc-sa/4.0/This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms/). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 International license, as described at https://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Report
Jones, Dakota L.
Meridew, Jeffrey A.
Link, Patrick A.
Ducharme, Merrick T.
Lydon, Katherine L.
Choi, Kyoung M.
Caporarello, Nunzia
Tan, Qi
Diaz Espinosa, Ana Maria
Xiong, Yuning
Lee, Jeong-Heon
Ye, Zhenqing
Yan, Huihuang
Ordog, Tamas
Ligresti, Giovanni
Varelas, Xaralabos
Tschumperlin, Daniel J.
ZNF416 is a pivotal transcriptional regulator of fibroblast mechanoactivation
title ZNF416 is a pivotal transcriptional regulator of fibroblast mechanoactivation
title_full ZNF416 is a pivotal transcriptional regulator of fibroblast mechanoactivation
title_fullStr ZNF416 is a pivotal transcriptional regulator of fibroblast mechanoactivation
title_full_unstemmed ZNF416 is a pivotal transcriptional regulator of fibroblast mechanoactivation
title_short ZNF416 is a pivotal transcriptional regulator of fibroblast mechanoactivation
title_sort znf416 is a pivotal transcriptional regulator of fibroblast mechanoactivation
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7918622/
https://www.ncbi.nlm.nih.gov/pubmed/33625469
http://dx.doi.org/10.1083/jcb.202007152
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