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Transcriptional control of motor pool formation and motor circuit connectivity by the LIM-HD protein Isl2

The fidelity of motor control requires the precise positional arrangement of motor pools and the establishment of synaptic connections between them. During neural development in the spinal cord, motor nerves project to specific target muscles and receive proprioceptive input from these muscles via t...

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Autores principales: Lee, Yunjeong, Yeo, In Seo, Kim, Namhee, Lee, Dong-Keun, Kim, Kyung-Tai, Yoon, Jiyoung, Yi, Jawoon, Hong, Young Bin, Choi, Byung-Ok, Kosodo, Yoichi, Kim, Daesoo, Park, Jihwan, Song, Mi-Ryoung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10637776/
https://www.ncbi.nlm.nih.gov/pubmed/37869988
http://dx.doi.org/10.7554/eLife.84596
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author Lee, Yunjeong
Yeo, In Seo
Kim, Namhee
Lee, Dong-Keun
Kim, Kyung-Tai
Yoon, Jiyoung
Yi, Jawoon
Hong, Young Bin
Choi, Byung-Ok
Kosodo, Yoichi
Kim, Daesoo
Park, Jihwan
Song, Mi-Ryoung
author_facet Lee, Yunjeong
Yeo, In Seo
Kim, Namhee
Lee, Dong-Keun
Kim, Kyung-Tai
Yoon, Jiyoung
Yi, Jawoon
Hong, Young Bin
Choi, Byung-Ok
Kosodo, Yoichi
Kim, Daesoo
Park, Jihwan
Song, Mi-Ryoung
author_sort Lee, Yunjeong
collection PubMed
description The fidelity of motor control requires the precise positional arrangement of motor pools and the establishment of synaptic connections between them. During neural development in the spinal cord, motor nerves project to specific target muscles and receive proprioceptive input from these muscles via the sensorimotor circuit. LIM-homeodomain transcription factors are known to play a crucial role in successively restricting specific motor neuronal fates. However, their exact contribution to limb-based motor pools and locomotor circuits has not been fully understood. To address this, we conducted an investigation into the role of Isl2, a LIM-homeodomain transcription factor, in motor pool organization. We found that deletion of Isl2 led to the dispersion of motor pools, primarily affecting the median motor column (MMC) and lateral motor column (LMC) populations. Additionally, hindlimb motor pools lacked Etv4 expression, and we observed reduced terminal axon branching and disorganized neuromuscular junctions in Isl2-deficient mice. Furthermore, we performed transcriptomic analysis on the spinal cords of Isl2-deficient mice and identified a variety of downregulated genes associated with motor neuron (MN) differentiation, axon development, and synapse organization in hindlimb motor pools. As a consequence of these disruptions, sensorimotor connectivity and hindlimb locomotion were impaired in Isl2-deficient mice. Taken together, our findings highlight the critical role of Isl2 in organizing motor pool position and sensorimotor circuits in hindlimb motor pools. This research provides valuable insights into the molecular mechanisms governing motor control and its potential implications for understanding motor-related disorders in humans.
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spelling pubmed-106377762023-11-11 Transcriptional control of motor pool formation and motor circuit connectivity by the LIM-HD protein Isl2 Lee, Yunjeong Yeo, In Seo Kim, Namhee Lee, Dong-Keun Kim, Kyung-Tai Yoon, Jiyoung Yi, Jawoon Hong, Young Bin Choi, Byung-Ok Kosodo, Yoichi Kim, Daesoo Park, Jihwan Song, Mi-Ryoung eLife Developmental Biology The fidelity of motor control requires the precise positional arrangement of motor pools and the establishment of synaptic connections between them. During neural development in the spinal cord, motor nerves project to specific target muscles and receive proprioceptive input from these muscles via the sensorimotor circuit. LIM-homeodomain transcription factors are known to play a crucial role in successively restricting specific motor neuronal fates. However, their exact contribution to limb-based motor pools and locomotor circuits has not been fully understood. To address this, we conducted an investigation into the role of Isl2, a LIM-homeodomain transcription factor, in motor pool organization. We found that deletion of Isl2 led to the dispersion of motor pools, primarily affecting the median motor column (MMC) and lateral motor column (LMC) populations. Additionally, hindlimb motor pools lacked Etv4 expression, and we observed reduced terminal axon branching and disorganized neuromuscular junctions in Isl2-deficient mice. Furthermore, we performed transcriptomic analysis on the spinal cords of Isl2-deficient mice and identified a variety of downregulated genes associated with motor neuron (MN) differentiation, axon development, and synapse organization in hindlimb motor pools. As a consequence of these disruptions, sensorimotor connectivity and hindlimb locomotion were impaired in Isl2-deficient mice. Taken together, our findings highlight the critical role of Isl2 in organizing motor pool position and sensorimotor circuits in hindlimb motor pools. This research provides valuable insights into the molecular mechanisms governing motor control and its potential implications for understanding motor-related disorders in humans. eLife Sciences Publications, Ltd 2023-10-23 /pmc/articles/PMC10637776/ /pubmed/37869988 http://dx.doi.org/10.7554/eLife.84596 Text en © 2023, Lee et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Developmental Biology
Lee, Yunjeong
Yeo, In Seo
Kim, Namhee
Lee, Dong-Keun
Kim, Kyung-Tai
Yoon, Jiyoung
Yi, Jawoon
Hong, Young Bin
Choi, Byung-Ok
Kosodo, Yoichi
Kim, Daesoo
Park, Jihwan
Song, Mi-Ryoung
Transcriptional control of motor pool formation and motor circuit connectivity by the LIM-HD protein Isl2
title Transcriptional control of motor pool formation and motor circuit connectivity by the LIM-HD protein Isl2
title_full Transcriptional control of motor pool formation and motor circuit connectivity by the LIM-HD protein Isl2
title_fullStr Transcriptional control of motor pool formation and motor circuit connectivity by the LIM-HD protein Isl2
title_full_unstemmed Transcriptional control of motor pool formation and motor circuit connectivity by the LIM-HD protein Isl2
title_short Transcriptional control of motor pool formation and motor circuit connectivity by the LIM-HD protein Isl2
title_sort transcriptional control of motor pool formation and motor circuit connectivity by the lim-hd protein isl2
topic Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10637776/
https://www.ncbi.nlm.nih.gov/pubmed/37869988
http://dx.doi.org/10.7554/eLife.84596
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