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ERR2 and ERR3 promote the development of gamma motor neuron functional properties required for proprioceptive movement control

The ability of terrestrial vertebrates to effectively move on land is integrally linked to the diversification of motor neurons into types that generate muscle force (alpha motor neurons) and types that modulate muscle proprioception, a task that in mammals is chiefly mediated by gamma motor neurons...

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Autores principales: Khan, Mudassar N., Cherukuri, Pitchaiah, Negro, Francesco, Rajput, Ashish, Fabrowski, Piotr, Bansal, Vikas, Lancelin, Camille, Lee, Tsung-I, Bian, Yehan, Mayer, William P., Akay, Turgay, Müller, Daniel, Bonn, Stefan, Farina, Dario, Marquardt, Till
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9815657/
https://www.ncbi.nlm.nih.gov/pubmed/36542664
http://dx.doi.org/10.1371/journal.pbio.3001923
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author Khan, Mudassar N.
Cherukuri, Pitchaiah
Negro, Francesco
Rajput, Ashish
Fabrowski, Piotr
Bansal, Vikas
Lancelin, Camille
Lee, Tsung-I
Bian, Yehan
Mayer, William P.
Akay, Turgay
Müller, Daniel
Bonn, Stefan
Farina, Dario
Marquardt, Till
author_facet Khan, Mudassar N.
Cherukuri, Pitchaiah
Negro, Francesco
Rajput, Ashish
Fabrowski, Piotr
Bansal, Vikas
Lancelin, Camille
Lee, Tsung-I
Bian, Yehan
Mayer, William P.
Akay, Turgay
Müller, Daniel
Bonn, Stefan
Farina, Dario
Marquardt, Till
author_sort Khan, Mudassar N.
collection PubMed
description The ability of terrestrial vertebrates to effectively move on land is integrally linked to the diversification of motor neurons into types that generate muscle force (alpha motor neurons) and types that modulate muscle proprioception, a task that in mammals is chiefly mediated by gamma motor neurons. The diversification of motor neurons into alpha and gamma types and their respective contributions to movement control have been firmly established in the past 7 decades, while recent studies identified gene expression signatures linked to both motor neuron types. However, the mechanisms that promote the specification of gamma motor neurons and/or their unique properties remained unaddressed. Here, we found that upon selective loss of the orphan nuclear receptors ERR2 and ERR3 (also known as ERRβ, ERRγ or NR3B2, NR3B3, respectively) in motor neurons in mice, morphologically distinguishable gamma motor neurons are generated but do not acquire characteristic functional properties necessary for regulating muscle proprioception, thus disrupting gait and precision movements. Complementary gain-of-function experiments in chick suggest that ERR2 and ERR3 could operate via transcriptional activation of neural activity modulators to promote a gamma motor neuron biophysical signature of low firing thresholds and high firing rates. Our work identifies a mechanism specifying gamma motor neuron functional properties essential for the regulation of proprioceptive movement control.
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spelling pubmed-98156572023-01-06 ERR2 and ERR3 promote the development of gamma motor neuron functional properties required for proprioceptive movement control Khan, Mudassar N. Cherukuri, Pitchaiah Negro, Francesco Rajput, Ashish Fabrowski, Piotr Bansal, Vikas Lancelin, Camille Lee, Tsung-I Bian, Yehan Mayer, William P. Akay, Turgay Müller, Daniel Bonn, Stefan Farina, Dario Marquardt, Till PLoS Biol Research Article The ability of terrestrial vertebrates to effectively move on land is integrally linked to the diversification of motor neurons into types that generate muscle force (alpha motor neurons) and types that modulate muscle proprioception, a task that in mammals is chiefly mediated by gamma motor neurons. The diversification of motor neurons into alpha and gamma types and their respective contributions to movement control have been firmly established in the past 7 decades, while recent studies identified gene expression signatures linked to both motor neuron types. However, the mechanisms that promote the specification of gamma motor neurons and/or their unique properties remained unaddressed. Here, we found that upon selective loss of the orphan nuclear receptors ERR2 and ERR3 (also known as ERRβ, ERRγ or NR3B2, NR3B3, respectively) in motor neurons in mice, morphologically distinguishable gamma motor neurons are generated but do not acquire characteristic functional properties necessary for regulating muscle proprioception, thus disrupting gait and precision movements. Complementary gain-of-function experiments in chick suggest that ERR2 and ERR3 could operate via transcriptional activation of neural activity modulators to promote a gamma motor neuron biophysical signature of low firing thresholds and high firing rates. Our work identifies a mechanism specifying gamma motor neuron functional properties essential for the regulation of proprioceptive movement control. Public Library of Science 2022-12-21 /pmc/articles/PMC9815657/ /pubmed/36542664 http://dx.doi.org/10.1371/journal.pbio.3001923 Text en © 2022 Khan et al 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 use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Khan, Mudassar N.
Cherukuri, Pitchaiah
Negro, Francesco
Rajput, Ashish
Fabrowski, Piotr
Bansal, Vikas
Lancelin, Camille
Lee, Tsung-I
Bian, Yehan
Mayer, William P.
Akay, Turgay
Müller, Daniel
Bonn, Stefan
Farina, Dario
Marquardt, Till
ERR2 and ERR3 promote the development of gamma motor neuron functional properties required for proprioceptive movement control
title ERR2 and ERR3 promote the development of gamma motor neuron functional properties required for proprioceptive movement control
title_full ERR2 and ERR3 promote the development of gamma motor neuron functional properties required for proprioceptive movement control
title_fullStr ERR2 and ERR3 promote the development of gamma motor neuron functional properties required for proprioceptive movement control
title_full_unstemmed ERR2 and ERR3 promote the development of gamma motor neuron functional properties required for proprioceptive movement control
title_short ERR2 and ERR3 promote the development of gamma motor neuron functional properties required for proprioceptive movement control
title_sort err2 and err3 promote the development of gamma motor neuron functional properties required for proprioceptive movement control
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9815657/
https://www.ncbi.nlm.nih.gov/pubmed/36542664
http://dx.doi.org/10.1371/journal.pbio.3001923
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