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Voltage-gated sodium channel scn8a is required for innervation and regeneration of amputated adult zebrafish fins

Teleost fishes and urodele amphibians can regenerate amputated appendages, whereas this ability is restricted to digit tips in adult mammals. One key component of appendage regeneration is reinnervation of the wound area. However, how innervation is regulated in injured appendages of adult vertebrat...

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Autores principales: Osorio-Méndez, Daniel, Miller, Andrew, Begeman, Ian J., Kurth, Andrew, Hagle, Ryan, Rolph, Daniela, Dickson, Amy L., Chen, Chen-Hui, Halloran, Mary, Poss, Kenneth D., Kang, Junsu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9282381/
https://www.ncbi.nlm.nih.gov/pubmed/35867745
http://dx.doi.org/10.1073/pnas.2200342119
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author Osorio-Méndez, Daniel
Miller, Andrew
Begeman, Ian J.
Kurth, Andrew
Hagle, Ryan
Rolph, Daniela
Dickson, Amy L.
Chen, Chen-Hui
Halloran, Mary
Poss, Kenneth D.
Kang, Junsu
author_facet Osorio-Méndez, Daniel
Miller, Andrew
Begeman, Ian J.
Kurth, Andrew
Hagle, Ryan
Rolph, Daniela
Dickson, Amy L.
Chen, Chen-Hui
Halloran, Mary
Poss, Kenneth D.
Kang, Junsu
author_sort Osorio-Méndez, Daniel
collection PubMed
description Teleost fishes and urodele amphibians can regenerate amputated appendages, whereas this ability is restricted to digit tips in adult mammals. One key component of appendage regeneration is reinnervation of the wound area. However, how innervation is regulated in injured appendages of adult vertebrates has seen limited research attention. From a forward genetics screen for temperature-sensitive defects in zebrafish fin regeneration, we identified a mutation that disrupted regeneration while also inducing paralysis at the restrictive temperature. Genetic mapping and complementation tests identify a mutation in the major neuronal voltage-gated sodium channel (VGSC) gene scn8ab. Conditional disruption of scn8ab impairs early regenerative events, including blastema formation, but does not affect morphogenesis of established regenerates. Whereas scn8ab mutations reduced neural activity as expected, they also disrupted axon regrowth and patterning in fin regenerates, resulting in hypoinnervation. Our findings indicate that the activity of VGSCs plays a proregenerative role by promoting innervation of appendage stumps.
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spelling pubmed-92823812023-01-06 Voltage-gated sodium channel scn8a is required for innervation and regeneration of amputated adult zebrafish fins Osorio-Méndez, Daniel Miller, Andrew Begeman, Ian J. Kurth, Andrew Hagle, Ryan Rolph, Daniela Dickson, Amy L. Chen, Chen-Hui Halloran, Mary Poss, Kenneth D. Kang, Junsu Proc Natl Acad Sci U S A Biological Sciences Teleost fishes and urodele amphibians can regenerate amputated appendages, whereas this ability is restricted to digit tips in adult mammals. One key component of appendage regeneration is reinnervation of the wound area. However, how innervation is regulated in injured appendages of adult vertebrates has seen limited research attention. From a forward genetics screen for temperature-sensitive defects in zebrafish fin regeneration, we identified a mutation that disrupted regeneration while also inducing paralysis at the restrictive temperature. Genetic mapping and complementation tests identify a mutation in the major neuronal voltage-gated sodium channel (VGSC) gene scn8ab. Conditional disruption of scn8ab impairs early regenerative events, including blastema formation, but does not affect morphogenesis of established regenerates. Whereas scn8ab mutations reduced neural activity as expected, they also disrupted axon regrowth and patterning in fin regenerates, resulting in hypoinnervation. Our findings indicate that the activity of VGSCs plays a proregenerative role by promoting innervation of appendage stumps. National Academy of Sciences 2022-07-06 2022-07-12 /pmc/articles/PMC9282381/ /pubmed/35867745 http://dx.doi.org/10.1073/pnas.2200342119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Osorio-Méndez, Daniel
Miller, Andrew
Begeman, Ian J.
Kurth, Andrew
Hagle, Ryan
Rolph, Daniela
Dickson, Amy L.
Chen, Chen-Hui
Halloran, Mary
Poss, Kenneth D.
Kang, Junsu
Voltage-gated sodium channel scn8a is required for innervation and regeneration of amputated adult zebrafish fins
title Voltage-gated sodium channel scn8a is required for innervation and regeneration of amputated adult zebrafish fins
title_full Voltage-gated sodium channel scn8a is required for innervation and regeneration of amputated adult zebrafish fins
title_fullStr Voltage-gated sodium channel scn8a is required for innervation and regeneration of amputated adult zebrafish fins
title_full_unstemmed Voltage-gated sodium channel scn8a is required for innervation and regeneration of amputated adult zebrafish fins
title_short Voltage-gated sodium channel scn8a is required for innervation and regeneration of amputated adult zebrafish fins
title_sort voltage-gated sodium channel scn8a is required for innervation and regeneration of amputated adult zebrafish fins
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9282381/
https://www.ncbi.nlm.nih.gov/pubmed/35867745
http://dx.doi.org/10.1073/pnas.2200342119
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