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Connexinplexity: the spatial and temporal expression of connexin genes during vertebrate organogenesis

Animal development requires coordinated communication between cells. The Connexin family of proteins is a major contributor to intercellular communication in vertebrates by forming gap junction channels that facilitate the movement of ions, small molecules, and metabolites between cells. Additionall...

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Autores principales: Lukowicz-Bedford, Rachel M, Farnsworth, Dylan R, Miller, Adam C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9073686/
https://www.ncbi.nlm.nih.gov/pubmed/35325106
http://dx.doi.org/10.1093/g3journal/jkac062
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author Lukowicz-Bedford, Rachel M
Farnsworth, Dylan R
Miller, Adam C
author_facet Lukowicz-Bedford, Rachel M
Farnsworth, Dylan R
Miller, Adam C
author_sort Lukowicz-Bedford, Rachel M
collection PubMed
description Animal development requires coordinated communication between cells. The Connexin family of proteins is a major contributor to intercellular communication in vertebrates by forming gap junction channels that facilitate the movement of ions, small molecules, and metabolites between cells. Additionally, individual hemichannels can provide a conduit to the extracellular space for paracrine and autocrine signaling. Connexin-mediated communication is widely used in epithelial, neural, and vascular development and homeostasis, and most tissues likely use this form of communication. In fact, Connexin disruptions are of major clinical significance contributing to disorders developing from all major germ layers. Despite the fact that Connexins serve as an essential mode of cellular communication, the temporal and cell-type-specific expression patterns of connexin genes remain unknown in vertebrates. A major challenge is the large and complex connexin gene family. To overcome this barrier, we determined the expression of all connexins in zebrafish using single-cell RNA-sequencing of entire animals across several stages of organogenesis. Our analysis of expression patterns has revealed that few connexins are broadly expressed, but rather, most are expressed in tissue- or cell-type-specific patterns. Additionally, most tissues possess a unique combinatorial signature of connexin expression with dynamic temporal changes across the organism, tissue, and cell. Our analysis has identified new patterns for well-known connexins and assigned spatial and temporal expression to genes with no-existing information. We provide a field guide relating zebrafish and human connexin genes as a critical step toward understanding how Connexins contribute to cellular communication and development throughout vertebrate organogenesis.
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spelling pubmed-90736862022-05-06 Connexinplexity: the spatial and temporal expression of connexin genes during vertebrate organogenesis Lukowicz-Bedford, Rachel M Farnsworth, Dylan R Miller, Adam C G3 (Bethesda) Investigation Animal development requires coordinated communication between cells. The Connexin family of proteins is a major contributor to intercellular communication in vertebrates by forming gap junction channels that facilitate the movement of ions, small molecules, and metabolites between cells. Additionally, individual hemichannels can provide a conduit to the extracellular space for paracrine and autocrine signaling. Connexin-mediated communication is widely used in epithelial, neural, and vascular development and homeostasis, and most tissues likely use this form of communication. In fact, Connexin disruptions are of major clinical significance contributing to disorders developing from all major germ layers. Despite the fact that Connexins serve as an essential mode of cellular communication, the temporal and cell-type-specific expression patterns of connexin genes remain unknown in vertebrates. A major challenge is the large and complex connexin gene family. To overcome this barrier, we determined the expression of all connexins in zebrafish using single-cell RNA-sequencing of entire animals across several stages of organogenesis. Our analysis of expression patterns has revealed that few connexins are broadly expressed, but rather, most are expressed in tissue- or cell-type-specific patterns. Additionally, most tissues possess a unique combinatorial signature of connexin expression with dynamic temporal changes across the organism, tissue, and cell. Our analysis has identified new patterns for well-known connexins and assigned spatial and temporal expression to genes with no-existing information. We provide a field guide relating zebrafish and human connexin genes as a critical step toward understanding how Connexins contribute to cellular communication and development throughout vertebrate organogenesis. Oxford University Press 2022-03-24 /pmc/articles/PMC9073686/ /pubmed/35325106 http://dx.doi.org/10.1093/g3journal/jkac062 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Genetics Society of America. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigation
Lukowicz-Bedford, Rachel M
Farnsworth, Dylan R
Miller, Adam C
Connexinplexity: the spatial and temporal expression of connexin genes during vertebrate organogenesis
title Connexinplexity: the spatial and temporal expression of connexin genes during vertebrate organogenesis
title_full Connexinplexity: the spatial and temporal expression of connexin genes during vertebrate organogenesis
title_fullStr Connexinplexity: the spatial and temporal expression of connexin genes during vertebrate organogenesis
title_full_unstemmed Connexinplexity: the spatial and temporal expression of connexin genes during vertebrate organogenesis
title_short Connexinplexity: the spatial and temporal expression of connexin genes during vertebrate organogenesis
title_sort connexinplexity: the spatial and temporal expression of connexin genes during vertebrate organogenesis
topic Investigation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9073686/
https://www.ncbi.nlm.nih.gov/pubmed/35325106
http://dx.doi.org/10.1093/g3journal/jkac062
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