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Prdm6 drives ductus arteriosus closure by promoting ductus arteriosus smooth muscle cell identity and contractility

Based upon our demonstration that the smooth muscle cell–selective (SMC-selective) putative methyltransferase, Prdm6, interacts with myocardin-related transcription factor-A, we examined Prdm6’s role in SMCs in vivo using cell type–specific knockout mouse models. Although SMC-specific depletion of P...

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Autores principales: Zou, Meng, Mangum, Kevin D., Magin, Justin C., Cao, Heidi H., Yarboro, Michael T., Shelton, Elaine L., Taylor, Joan M., Reese, Jeff, Furey, Terrence S., Mack, Christopher P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10077476/
https://www.ncbi.nlm.nih.gov/pubmed/36749647
http://dx.doi.org/10.1172/jci.insight.163454
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author Zou, Meng
Mangum, Kevin D.
Magin, Justin C.
Cao, Heidi H.
Yarboro, Michael T.
Shelton, Elaine L.
Taylor, Joan M.
Reese, Jeff
Furey, Terrence S.
Mack, Christopher P.
author_facet Zou, Meng
Mangum, Kevin D.
Magin, Justin C.
Cao, Heidi H.
Yarboro, Michael T.
Shelton, Elaine L.
Taylor, Joan M.
Reese, Jeff
Furey, Terrence S.
Mack, Christopher P.
author_sort Zou, Meng
collection PubMed
description Based upon our demonstration that the smooth muscle cell–selective (SMC-selective) putative methyltransferase, Prdm6, interacts with myocardin-related transcription factor-A, we examined Prdm6’s role in SMCs in vivo using cell type–specific knockout mouse models. Although SMC-specific depletion of Prdm6 in adult mice was well tolerated, Prdm6 depletion in Wnt1-expressing cells during development resulted in perinatal lethality and a completely penetrant patent ductus arteriosus (DA) phenotype. Lineage tracing experiments in Wnt1(Cre2) Prdm6(fl/fl) ROSA26(LacZ) mice revealed normal neural crest–derived SMC investment of the outflow tract. In contrast, myography measurements on DA segments isolated from E18.5 embryos indicated that Prdm6 depletion significantly reduced DA tone and contractility. RNA-Seq analyses on DA and ascending aorta samples at E18.5 identified a DA-enriched gene program that included many SMC-selective contractile associated proteins that was downregulated by Prdm6 depletion. Chromatin immunoprecipitation–sequencing experiments in outflow tract SMCs demonstrated that 50% of the genes Prdm6 depletion altered contained Prdm6 binding sites. Finally, using several genome-wide data sets, we identified an SMC-selective enhancer within the Prdm6 third intron that exhibited allele-specific activity, providing evidence that rs17149944 may be the causal SNP for a cardiovascular disease GWAS locus identified within the human PRDM6 gene.
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spelling pubmed-100774762023-04-07 Prdm6 drives ductus arteriosus closure by promoting ductus arteriosus smooth muscle cell identity and contractility Zou, Meng Mangum, Kevin D. Magin, Justin C. Cao, Heidi H. Yarboro, Michael T. Shelton, Elaine L. Taylor, Joan M. Reese, Jeff Furey, Terrence S. Mack, Christopher P. JCI Insight Research Article Based upon our demonstration that the smooth muscle cell–selective (SMC-selective) putative methyltransferase, Prdm6, interacts with myocardin-related transcription factor-A, we examined Prdm6’s role in SMCs in vivo using cell type–specific knockout mouse models. Although SMC-specific depletion of Prdm6 in adult mice was well tolerated, Prdm6 depletion in Wnt1-expressing cells during development resulted in perinatal lethality and a completely penetrant patent ductus arteriosus (DA) phenotype. Lineage tracing experiments in Wnt1(Cre2) Prdm6(fl/fl) ROSA26(LacZ) mice revealed normal neural crest–derived SMC investment of the outflow tract. In contrast, myography measurements on DA segments isolated from E18.5 embryos indicated that Prdm6 depletion significantly reduced DA tone and contractility. RNA-Seq analyses on DA and ascending aorta samples at E18.5 identified a DA-enriched gene program that included many SMC-selective contractile associated proteins that was downregulated by Prdm6 depletion. Chromatin immunoprecipitation–sequencing experiments in outflow tract SMCs demonstrated that 50% of the genes Prdm6 depletion altered contained Prdm6 binding sites. Finally, using several genome-wide data sets, we identified an SMC-selective enhancer within the Prdm6 third intron that exhibited allele-specific activity, providing evidence that rs17149944 may be the causal SNP for a cardiovascular disease GWAS locus identified within the human PRDM6 gene. American Society for Clinical Investigation 2023-03-08 /pmc/articles/PMC10077476/ /pubmed/36749647 http://dx.doi.org/10.1172/jci.insight.163454 Text en © 2023 Zou et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Zou, Meng
Mangum, Kevin D.
Magin, Justin C.
Cao, Heidi H.
Yarboro, Michael T.
Shelton, Elaine L.
Taylor, Joan M.
Reese, Jeff
Furey, Terrence S.
Mack, Christopher P.
Prdm6 drives ductus arteriosus closure by promoting ductus arteriosus smooth muscle cell identity and contractility
title Prdm6 drives ductus arteriosus closure by promoting ductus arteriosus smooth muscle cell identity and contractility
title_full Prdm6 drives ductus arteriosus closure by promoting ductus arteriosus smooth muscle cell identity and contractility
title_fullStr Prdm6 drives ductus arteriosus closure by promoting ductus arteriosus smooth muscle cell identity and contractility
title_full_unstemmed Prdm6 drives ductus arteriosus closure by promoting ductus arteriosus smooth muscle cell identity and contractility
title_short Prdm6 drives ductus arteriosus closure by promoting ductus arteriosus smooth muscle cell identity and contractility
title_sort prdm6 drives ductus arteriosus closure by promoting ductus arteriosus smooth muscle cell identity and contractility
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10077476/
https://www.ncbi.nlm.nih.gov/pubmed/36749647
http://dx.doi.org/10.1172/jci.insight.163454
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