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From Pioneer to Repressor: Bimodal foxd3 Activity Dynamically Remodels Neural Crest Regulatory Landscape In Vivo

The neural crest (NC) is a transient embryonic stem cell-like population characterized by its multipotency and broad developmental potential. Here, we perform NC-specific transcriptional and epigenomic profiling of foxd3-mutant cells in vivo to define the gene regulatory circuits controlling NC spec...

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Autores principales: Lukoseviciute, Martyna, Gavriouchkina, Daria, Williams, Ruth M., Hochgreb-Hagele, Tatiana, Senanayake, Upeka, Chong-Morrison, Vanessa, Thongjuea, Supat, Repapi, Emmanouela, Mead, Adam, Sauka-Spengler, Tatjana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6286384/
https://www.ncbi.nlm.nih.gov/pubmed/30513303
http://dx.doi.org/10.1016/j.devcel.2018.11.009
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author Lukoseviciute, Martyna
Gavriouchkina, Daria
Williams, Ruth M.
Hochgreb-Hagele, Tatiana
Senanayake, Upeka
Chong-Morrison, Vanessa
Thongjuea, Supat
Repapi, Emmanouela
Mead, Adam
Sauka-Spengler, Tatjana
author_facet Lukoseviciute, Martyna
Gavriouchkina, Daria
Williams, Ruth M.
Hochgreb-Hagele, Tatiana
Senanayake, Upeka
Chong-Morrison, Vanessa
Thongjuea, Supat
Repapi, Emmanouela
Mead, Adam
Sauka-Spengler, Tatjana
author_sort Lukoseviciute, Martyna
collection PubMed
description The neural crest (NC) is a transient embryonic stem cell-like population characterized by its multipotency and broad developmental potential. Here, we perform NC-specific transcriptional and epigenomic profiling of foxd3-mutant cells in vivo to define the gene regulatory circuits controlling NC specification. Together with global binding analysis obtained by foxd3 biotin-ChIP and single cell profiles of foxd3-expressing premigratory NC, our analysis shows that, during early steps of NC formation, foxd3 acts globally as a pioneer factor to prime the onset of genes regulating NC specification and migration by re-arranging the chromatin landscape, opening cis-regulatory elements and reshuffling nucleosomes. Strikingly, foxd3 then gradually switches from an activator to its well-described role as a transcriptional repressor and potentially uses differential partners for each role. Taken together, these results demonstrate that foxd3 acts bimodally in the neural crest as a switch from “permissive” to “repressive” nucleosome and chromatin organization to maintain multipotency and define cell fates.
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spelling pubmed-62863842018-12-17 From Pioneer to Repressor: Bimodal foxd3 Activity Dynamically Remodels Neural Crest Regulatory Landscape In Vivo Lukoseviciute, Martyna Gavriouchkina, Daria Williams, Ruth M. Hochgreb-Hagele, Tatiana Senanayake, Upeka Chong-Morrison, Vanessa Thongjuea, Supat Repapi, Emmanouela Mead, Adam Sauka-Spengler, Tatjana Dev Cell Article The neural crest (NC) is a transient embryonic stem cell-like population characterized by its multipotency and broad developmental potential. Here, we perform NC-specific transcriptional and epigenomic profiling of foxd3-mutant cells in vivo to define the gene regulatory circuits controlling NC specification. Together with global binding analysis obtained by foxd3 biotin-ChIP and single cell profiles of foxd3-expressing premigratory NC, our analysis shows that, during early steps of NC formation, foxd3 acts globally as a pioneer factor to prime the onset of genes regulating NC specification and migration by re-arranging the chromatin landscape, opening cis-regulatory elements and reshuffling nucleosomes. Strikingly, foxd3 then gradually switches from an activator to its well-described role as a transcriptional repressor and potentially uses differential partners for each role. Taken together, these results demonstrate that foxd3 acts bimodally in the neural crest as a switch from “permissive” to “repressive” nucleosome and chromatin organization to maintain multipotency and define cell fates. Cell Press 2018-12-03 /pmc/articles/PMC6286384/ /pubmed/30513303 http://dx.doi.org/10.1016/j.devcel.2018.11.009 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lukoseviciute, Martyna
Gavriouchkina, Daria
Williams, Ruth M.
Hochgreb-Hagele, Tatiana
Senanayake, Upeka
Chong-Morrison, Vanessa
Thongjuea, Supat
Repapi, Emmanouela
Mead, Adam
Sauka-Spengler, Tatjana
From Pioneer to Repressor: Bimodal foxd3 Activity Dynamically Remodels Neural Crest Regulatory Landscape In Vivo
title From Pioneer to Repressor: Bimodal foxd3 Activity Dynamically Remodels Neural Crest Regulatory Landscape In Vivo
title_full From Pioneer to Repressor: Bimodal foxd3 Activity Dynamically Remodels Neural Crest Regulatory Landscape In Vivo
title_fullStr From Pioneer to Repressor: Bimodal foxd3 Activity Dynamically Remodels Neural Crest Regulatory Landscape In Vivo
title_full_unstemmed From Pioneer to Repressor: Bimodal foxd3 Activity Dynamically Remodels Neural Crest Regulatory Landscape In Vivo
title_short From Pioneer to Repressor: Bimodal foxd3 Activity Dynamically Remodels Neural Crest Regulatory Landscape In Vivo
title_sort from pioneer to repressor: bimodal foxd3 activity dynamically remodels neural crest regulatory landscape in vivo
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6286384/
https://www.ncbi.nlm.nih.gov/pubmed/30513303
http://dx.doi.org/10.1016/j.devcel.2018.11.009
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