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Distal regulation, silencers, and a shared combinatorial syntax are hallmarks of animal embryogenesis

The chromatin environment plays a central role in regulating developmental gene expression in metazoans. Yet, the ancestral regulatory landscape of metazoan embryogenesis is unknown. Here, we generate chromatin accessibility profiles for six embryonic, plus larval and adult stages in the sponge Amph...

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Autores principales: Cornejo-Páramo, Paola, Roper, Kathrein, Degnan, Sandie M., Degnan, Bernard M., Wong, Emily S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8896464/
https://www.ncbi.nlm.nih.gov/pubmed/35045977
http://dx.doi.org/10.1101/gr.275864.121
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author Cornejo-Páramo, Paola
Roper, Kathrein
Degnan, Sandie M.
Degnan, Bernard M.
Wong, Emily S.
author_facet Cornejo-Páramo, Paola
Roper, Kathrein
Degnan, Sandie M.
Degnan, Bernard M.
Wong, Emily S.
author_sort Cornejo-Páramo, Paola
collection PubMed
description The chromatin environment plays a central role in regulating developmental gene expression in metazoans. Yet, the ancestral regulatory landscape of metazoan embryogenesis is unknown. Here, we generate chromatin accessibility profiles for six embryonic, plus larval and adult stages in the sponge Amphimedon queenslandica. These profiles are reproducible within stages, reflect histone modifications, and identify transcription factor (TF) binding sequence motifs predictive of cis-regulatory elements operating during embryogenesis in other metazoans, but not the unicellular relative Capsaspora. Motif analysis of chromatin accessibility profiles across Amphimedon embryogenesis identifies three major developmental periods. As in bilaterian embryogenesis, early development in Amphimedon involves activating and repressive chromatin in regions both proximal and distal to transcription start sites. Transcriptionally repressive elements (“silencers”) are prominent during late embryogenesis. They coincide with an increase in cis-regulatory regions harboring metazoan TF binding motifs, as well as an increase in the expression of metazoan-specific genes. Changes in chromatin state and gene expression in Amphimedon suggest the conservation of distal enhancers, dynamically silenced chromatin, and TF-DNA binding specificity in animal embryogenesis.
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spelling pubmed-88964642022-09-01 Distal regulation, silencers, and a shared combinatorial syntax are hallmarks of animal embryogenesis Cornejo-Páramo, Paola Roper, Kathrein Degnan, Sandie M. Degnan, Bernard M. Wong, Emily S. Genome Res Research The chromatin environment plays a central role in regulating developmental gene expression in metazoans. Yet, the ancestral regulatory landscape of metazoan embryogenesis is unknown. Here, we generate chromatin accessibility profiles for six embryonic, plus larval and adult stages in the sponge Amphimedon queenslandica. These profiles are reproducible within stages, reflect histone modifications, and identify transcription factor (TF) binding sequence motifs predictive of cis-regulatory elements operating during embryogenesis in other metazoans, but not the unicellular relative Capsaspora. Motif analysis of chromatin accessibility profiles across Amphimedon embryogenesis identifies three major developmental periods. As in bilaterian embryogenesis, early development in Amphimedon involves activating and repressive chromatin in regions both proximal and distal to transcription start sites. Transcriptionally repressive elements (“silencers”) are prominent during late embryogenesis. They coincide with an increase in cis-regulatory regions harboring metazoan TF binding motifs, as well as an increase in the expression of metazoan-specific genes. Changes in chromatin state and gene expression in Amphimedon suggest the conservation of distal enhancers, dynamically silenced chromatin, and TF-DNA binding specificity in animal embryogenesis. Cold Spring Harbor Laboratory Press 2022-03 /pmc/articles/PMC8896464/ /pubmed/35045977 http://dx.doi.org/10.1101/gr.275864.121 Text en © 2022 Cornejo-Páramo et al.; Published by Cold Spring Harbor Laboratory Press https://creativecommons.org/licenses/by-nc/4.0/This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see https://genome.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) .
spellingShingle Research
Cornejo-Páramo, Paola
Roper, Kathrein
Degnan, Sandie M.
Degnan, Bernard M.
Wong, Emily S.
Distal regulation, silencers, and a shared combinatorial syntax are hallmarks of animal embryogenesis
title Distal regulation, silencers, and a shared combinatorial syntax are hallmarks of animal embryogenesis
title_full Distal regulation, silencers, and a shared combinatorial syntax are hallmarks of animal embryogenesis
title_fullStr Distal regulation, silencers, and a shared combinatorial syntax are hallmarks of animal embryogenesis
title_full_unstemmed Distal regulation, silencers, and a shared combinatorial syntax are hallmarks of animal embryogenesis
title_short Distal regulation, silencers, and a shared combinatorial syntax are hallmarks of animal embryogenesis
title_sort distal regulation, silencers, and a shared combinatorial syntax are hallmarks of animal embryogenesis
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8896464/
https://www.ncbi.nlm.nih.gov/pubmed/35045977
http://dx.doi.org/10.1101/gr.275864.121
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