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The homeodomain factor Gbx1 is required for locomotion and cell specification in the dorsal spinal cord

Dorsal horn neurons in the spinal cord integrate and relay sensory information to higher brain centers. These neurons are organized in specific laminae and different transcription factors are involved in their specification. The murine homeodomain Gbx1 protein is expressed in the mantle zone of the...

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Autores principales: Meziane, Hamid, Fraulob, Valérie, Riet, Fabrice, Krezel, Wojciech, Selloum, Mohammed, Geffarth, Michaela, Acampora, Dario, Hérault, Yann, Simeone, Antonio, Brand, Michael, Dollé, Pascal, Rhinn, Muriel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: PeerJ Inc. 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3757465/
https://www.ncbi.nlm.nih.gov/pubmed/24010020
http://dx.doi.org/10.7717/peerj.142
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author Meziane, Hamid
Fraulob, Valérie
Riet, Fabrice
Krezel, Wojciech
Selloum, Mohammed
Geffarth, Michaela
Acampora, Dario
Hérault, Yann
Simeone, Antonio
Brand, Michael
Dollé, Pascal
Rhinn, Muriel
author_facet Meziane, Hamid
Fraulob, Valérie
Riet, Fabrice
Krezel, Wojciech
Selloum, Mohammed
Geffarth, Michaela
Acampora, Dario
Hérault, Yann
Simeone, Antonio
Brand, Michael
Dollé, Pascal
Rhinn, Muriel
author_sort Meziane, Hamid
collection PubMed
description Dorsal horn neurons in the spinal cord integrate and relay sensory information to higher brain centers. These neurons are organized in specific laminae and different transcription factors are involved in their specification. The murine homeodomain Gbx1 protein is expressed in the mantle zone of the spinal cord at E12.5-13.5, correlating with the appearance of a discernable dorsal horn around E14 and eventually defining a narrow layer in the dorsal horn around perinatal stages. At postnatal stages, Gbx1 identifies a specific subpopulation of GABAergic neurons in the dorsal spinal cord. We have generated a loss of function mutation for Gbx1 and analyzed its consequences during spinal cord development. Gbx1(−/−) mice are viable and can reproduce as homozygous null mutants. However, the adult mutant mice display an altered gait during forward movement that specifically affects the hindlimbs. This abnormal gait was evaluated by a series of behavioral tests, indicating that locomotion is impaired, but not muscle strength or motor coordination. Molecular analysis showed that the development of the dorsal horn is not profoundly affected in Gbx1(−/−) mutant mice. However, analysis of terminal neuronal differentiation revealed that the proportion of GABAergic inhibitory interneurons in the superficial dorsal horn is diminished. Our study unveiled a role for Gbx1 in specifying a subset of GABAergic neurons in the dorsal horn of the spinal cord involved in the control of posterior limb movement.
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spelling pubmed-37574652013-09-04 The homeodomain factor Gbx1 is required for locomotion and cell specification in the dorsal spinal cord Meziane, Hamid Fraulob, Valérie Riet, Fabrice Krezel, Wojciech Selloum, Mohammed Geffarth, Michaela Acampora, Dario Hérault, Yann Simeone, Antonio Brand, Michael Dollé, Pascal Rhinn, Muriel PeerJ Developmental Biology Dorsal horn neurons in the spinal cord integrate and relay sensory information to higher brain centers. These neurons are organized in specific laminae and different transcription factors are involved in their specification. The murine homeodomain Gbx1 protein is expressed in the mantle zone of the spinal cord at E12.5-13.5, correlating with the appearance of a discernable dorsal horn around E14 and eventually defining a narrow layer in the dorsal horn around perinatal stages. At postnatal stages, Gbx1 identifies a specific subpopulation of GABAergic neurons in the dorsal spinal cord. We have generated a loss of function mutation for Gbx1 and analyzed its consequences during spinal cord development. Gbx1(−/−) mice are viable and can reproduce as homozygous null mutants. However, the adult mutant mice display an altered gait during forward movement that specifically affects the hindlimbs. This abnormal gait was evaluated by a series of behavioral tests, indicating that locomotion is impaired, but not muscle strength or motor coordination. Molecular analysis showed that the development of the dorsal horn is not profoundly affected in Gbx1(−/−) mutant mice. However, analysis of terminal neuronal differentiation revealed that the proportion of GABAergic inhibitory interneurons in the superficial dorsal horn is diminished. Our study unveiled a role for Gbx1 in specifying a subset of GABAergic neurons in the dorsal horn of the spinal cord involved in the control of posterior limb movement. PeerJ Inc. 2013-08-29 /pmc/articles/PMC3757465/ /pubmed/24010020 http://dx.doi.org/10.7717/peerj.142 Text en © 2013 Meziane et al. http://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Developmental Biology
Meziane, Hamid
Fraulob, Valérie
Riet, Fabrice
Krezel, Wojciech
Selloum, Mohammed
Geffarth, Michaela
Acampora, Dario
Hérault, Yann
Simeone, Antonio
Brand, Michael
Dollé, Pascal
Rhinn, Muriel
The homeodomain factor Gbx1 is required for locomotion and cell specification in the dorsal spinal cord
title The homeodomain factor Gbx1 is required for locomotion and cell specification in the dorsal spinal cord
title_full The homeodomain factor Gbx1 is required for locomotion and cell specification in the dorsal spinal cord
title_fullStr The homeodomain factor Gbx1 is required for locomotion and cell specification in the dorsal spinal cord
title_full_unstemmed The homeodomain factor Gbx1 is required for locomotion and cell specification in the dorsal spinal cord
title_short The homeodomain factor Gbx1 is required for locomotion and cell specification in the dorsal spinal cord
title_sort homeodomain factor gbx1 is required for locomotion and cell specification in the dorsal spinal cord
topic Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3757465/
https://www.ncbi.nlm.nih.gov/pubmed/24010020
http://dx.doi.org/10.7717/peerj.142
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