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Unbiased characterization of the larval zebrafish enteric nervous system at a single cell transcriptomic level

The enteric nervous system (ENS) regulates many gastrointestinal functions including peristalsis, immune regulation and uptake of nutrients. Defects in the ENS can lead to severe enteric neuropathies such as Hirschsprung disease (HSCR). Zebrafish have proven to be fruitful in the identification of g...

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Autores principales: Kuil, Laura E., Kakiailatu, Naomi J.M., Windster, Jonathan D., Bindels, Eric, Zink, Joke T.M., van der Zee, Gaby, Hofstra, Robert M.W., Shepherd, Iain T., Melotte, Veerle, Alves, Maria M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10329177/
https://www.ncbi.nlm.nih.gov/pubmed/37426341
http://dx.doi.org/10.1016/j.isci.2023.107070
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author Kuil, Laura E.
Kakiailatu, Naomi J.M.
Windster, Jonathan D.
Bindels, Eric
Zink, Joke T.M.
van der Zee, Gaby
Hofstra, Robert M.W.
Shepherd, Iain T.
Melotte, Veerle
Alves, Maria M.
author_facet Kuil, Laura E.
Kakiailatu, Naomi J.M.
Windster, Jonathan D.
Bindels, Eric
Zink, Joke T.M.
van der Zee, Gaby
Hofstra, Robert M.W.
Shepherd, Iain T.
Melotte, Veerle
Alves, Maria M.
author_sort Kuil, Laura E.
collection PubMed
description The enteric nervous system (ENS) regulates many gastrointestinal functions including peristalsis, immune regulation and uptake of nutrients. Defects in the ENS can lead to severe enteric neuropathies such as Hirschsprung disease (HSCR). Zebrafish have proven to be fruitful in the identification of genes involved in ENS development and HSCR pathogenesis. However, composition and specification of enteric neurons and glial subtypes at larval stages, remains mainly unexplored. Here, we performed single cell RNA sequencing of zebrafish ENS at 5 days post-fertilization. We identified vagal neural crest progenitors, Schwann cell precursors, and four clusters of differentiated neurons. In addition, a previously unrecognized elavl3+/phox2bb-population of neurons and cx43+/phox2bb-enteric glia was found. Pseudotime analysis supported binary neurogenic branching of ENS differentiation, driven by a notch-responsive state. Taken together, we provide new insights on ENS development and specification, proving that the zebrafish is a valuable model for the study of congenital enteric neuropathies.
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spelling pubmed-103291772023-07-09 Unbiased characterization of the larval zebrafish enteric nervous system at a single cell transcriptomic level Kuil, Laura E. Kakiailatu, Naomi J.M. Windster, Jonathan D. Bindels, Eric Zink, Joke T.M. van der Zee, Gaby Hofstra, Robert M.W. Shepherd, Iain T. Melotte, Veerle Alves, Maria M. iScience Article The enteric nervous system (ENS) regulates many gastrointestinal functions including peristalsis, immune regulation and uptake of nutrients. Defects in the ENS can lead to severe enteric neuropathies such as Hirschsprung disease (HSCR). Zebrafish have proven to be fruitful in the identification of genes involved in ENS development and HSCR pathogenesis. However, composition and specification of enteric neurons and glial subtypes at larval stages, remains mainly unexplored. Here, we performed single cell RNA sequencing of zebrafish ENS at 5 days post-fertilization. We identified vagal neural crest progenitors, Schwann cell precursors, and four clusters of differentiated neurons. In addition, a previously unrecognized elavl3+/phox2bb-population of neurons and cx43+/phox2bb-enteric glia was found. Pseudotime analysis supported binary neurogenic branching of ENS differentiation, driven by a notch-responsive state. Taken together, we provide new insights on ENS development and specification, proving that the zebrafish is a valuable model for the study of congenital enteric neuropathies. Elsevier 2023-06-08 /pmc/articles/PMC10329177/ /pubmed/37426341 http://dx.doi.org/10.1016/j.isci.2023.107070 Text en © 2023 The Author(s) https://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
Kuil, Laura E.
Kakiailatu, Naomi J.M.
Windster, Jonathan D.
Bindels, Eric
Zink, Joke T.M.
van der Zee, Gaby
Hofstra, Robert M.W.
Shepherd, Iain T.
Melotte, Veerle
Alves, Maria M.
Unbiased characterization of the larval zebrafish enteric nervous system at a single cell transcriptomic level
title Unbiased characterization of the larval zebrafish enteric nervous system at a single cell transcriptomic level
title_full Unbiased characterization of the larval zebrafish enteric nervous system at a single cell transcriptomic level
title_fullStr Unbiased characterization of the larval zebrafish enteric nervous system at a single cell transcriptomic level
title_full_unstemmed Unbiased characterization of the larval zebrafish enteric nervous system at a single cell transcriptomic level
title_short Unbiased characterization of the larval zebrafish enteric nervous system at a single cell transcriptomic level
title_sort unbiased characterization of the larval zebrafish enteric nervous system at a single cell transcriptomic level
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10329177/
https://www.ncbi.nlm.nih.gov/pubmed/37426341
http://dx.doi.org/10.1016/j.isci.2023.107070
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