Cargando…

Xbp1 and Brachyury establish an evolutionarily conserved subcircuit of the notochord gene regulatory network

Gene regulatory networks coordinate the formation of organs and structures that compose the evolving body plans of different organisms. We are using a simple chordate model, the Ciona embryo, to investigate the essential gene regulatory network that orchestrates morphogenesis of the notochord, a str...

Descripción completa

Detalles Bibliográficos
Autores principales: Wu, Yushi, Devotta, Arun, José-Edwards, Diana S, Kugler, Jamie E, Negrón-Piñeiro, Lenny J, Braslavskaya, Karina, Addy, Jermyn, Saint-Jeannet, Jean-Pierre, Di Gregorio, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8803312/
https://www.ncbi.nlm.nih.gov/pubmed/35049502
http://dx.doi.org/10.7554/eLife.73992
_version_ 1784642841831538688
author Wu, Yushi
Devotta, Arun
José-Edwards, Diana S
Kugler, Jamie E
Negrón-Piñeiro, Lenny J
Braslavskaya, Karina
Addy, Jermyn
Saint-Jeannet, Jean-Pierre
Di Gregorio, Anna
author_facet Wu, Yushi
Devotta, Arun
José-Edwards, Diana S
Kugler, Jamie E
Negrón-Piñeiro, Lenny J
Braslavskaya, Karina
Addy, Jermyn
Saint-Jeannet, Jean-Pierre
Di Gregorio, Anna
author_sort Wu, Yushi
collection PubMed
description Gene regulatory networks coordinate the formation of organs and structures that compose the evolving body plans of different organisms. We are using a simple chordate model, the Ciona embryo, to investigate the essential gene regulatory network that orchestrates morphogenesis of the notochord, a structure necessary for the proper development of all chordate embryos. Although numerous transcription factors expressed in the notochord have been identified in different chordates, several of them remain to be positioned within a regulatory framework. Here, we focus on Xbp1, a transcription factor expressed during notochord formation in Ciona and other chordates. Through the identification of Xbp1-downstream notochord genes in Ciona, we found evidence of the early co-option of genes involved in the unfolded protein response to the notochord developmental program. We report the regulatory interplay between Xbp1 and Brachyury, and by extending these results to Xenopus, we show that Brachyury and Xbp1 form a cross-regulatory subcircuit of the notochord gene regulatory network that has been consolidated during chordate evolution.
format Online
Article
Text
id pubmed-8803312
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher eLife Sciences Publications, Ltd
record_format MEDLINE/PubMed
spelling pubmed-88033122022-02-02 Xbp1 and Brachyury establish an evolutionarily conserved subcircuit of the notochord gene regulatory network Wu, Yushi Devotta, Arun José-Edwards, Diana S Kugler, Jamie E Negrón-Piñeiro, Lenny J Braslavskaya, Karina Addy, Jermyn Saint-Jeannet, Jean-Pierre Di Gregorio, Anna eLife Developmental Biology Gene regulatory networks coordinate the formation of organs and structures that compose the evolving body plans of different organisms. We are using a simple chordate model, the Ciona embryo, to investigate the essential gene regulatory network that orchestrates morphogenesis of the notochord, a structure necessary for the proper development of all chordate embryos. Although numerous transcription factors expressed in the notochord have been identified in different chordates, several of them remain to be positioned within a regulatory framework. Here, we focus on Xbp1, a transcription factor expressed during notochord formation in Ciona and other chordates. Through the identification of Xbp1-downstream notochord genes in Ciona, we found evidence of the early co-option of genes involved in the unfolded protein response to the notochord developmental program. We report the regulatory interplay between Xbp1 and Brachyury, and by extending these results to Xenopus, we show that Brachyury and Xbp1 form a cross-regulatory subcircuit of the notochord gene regulatory network that has been consolidated during chordate evolution. eLife Sciences Publications, Ltd 2022-01-20 /pmc/articles/PMC8803312/ /pubmed/35049502 http://dx.doi.org/10.7554/eLife.73992 Text en © 2022, Wu et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Developmental Biology
Wu, Yushi
Devotta, Arun
José-Edwards, Diana S
Kugler, Jamie E
Negrón-Piñeiro, Lenny J
Braslavskaya, Karina
Addy, Jermyn
Saint-Jeannet, Jean-Pierre
Di Gregorio, Anna
Xbp1 and Brachyury establish an evolutionarily conserved subcircuit of the notochord gene regulatory network
title Xbp1 and Brachyury establish an evolutionarily conserved subcircuit of the notochord gene regulatory network
title_full Xbp1 and Brachyury establish an evolutionarily conserved subcircuit of the notochord gene regulatory network
title_fullStr Xbp1 and Brachyury establish an evolutionarily conserved subcircuit of the notochord gene regulatory network
title_full_unstemmed Xbp1 and Brachyury establish an evolutionarily conserved subcircuit of the notochord gene regulatory network
title_short Xbp1 and Brachyury establish an evolutionarily conserved subcircuit of the notochord gene regulatory network
title_sort xbp1 and brachyury establish an evolutionarily conserved subcircuit of the notochord gene regulatory network
topic Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8803312/
https://www.ncbi.nlm.nih.gov/pubmed/35049502
http://dx.doi.org/10.7554/eLife.73992
work_keys_str_mv AT wuyushi xbp1andbrachyuryestablishanevolutionarilyconservedsubcircuitofthenotochordgeneregulatorynetwork
AT devottaarun xbp1andbrachyuryestablishanevolutionarilyconservedsubcircuitofthenotochordgeneregulatorynetwork
AT joseedwardsdianas xbp1andbrachyuryestablishanevolutionarilyconservedsubcircuitofthenotochordgeneregulatorynetwork
AT kuglerjamiee xbp1andbrachyuryestablishanevolutionarilyconservedsubcircuitofthenotochordgeneregulatorynetwork
AT negronpineirolennyj xbp1andbrachyuryestablishanevolutionarilyconservedsubcircuitofthenotochordgeneregulatorynetwork
AT braslavskayakarina xbp1andbrachyuryestablishanevolutionarilyconservedsubcircuitofthenotochordgeneregulatorynetwork
AT addyjermyn xbp1andbrachyuryestablishanevolutionarilyconservedsubcircuitofthenotochordgeneregulatorynetwork
AT saintjeannetjeanpierre xbp1andbrachyuryestablishanevolutionarilyconservedsubcircuitofthenotochordgeneregulatorynetwork
AT digregorioanna xbp1andbrachyuryestablishanevolutionarilyconservedsubcircuitofthenotochordgeneregulatorynetwork