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Deficiency of MicroRNA-23-27-24 Clusters Exhibits the Impairment of Myelination in the Central Nervous System

Several microRNAs (miRNAs), including miR-23 and miR-27a have been reportedly involved in regulating myelination in the central nervous system. Although miR-23 and miR-27a form clusters in vivo and the clustered miRNAs are known to perform complementary functions, the role of these miRNA clusters in...

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Autores principales: Tsuchikawa, Yuji, Kamei, Naosuke, Sanada, Yohei, Nakamae, Toshio, Harada, Takahiro, Imaizumi, Kazunori, Akimoto, Takayuki, Miyaki, Shigeru, Adachi, Nobuo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10060068/
https://www.ncbi.nlm.nih.gov/pubmed/37006814
http://dx.doi.org/10.1155/2023/8938674
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author Tsuchikawa, Yuji
Kamei, Naosuke
Sanada, Yohei
Nakamae, Toshio
Harada, Takahiro
Imaizumi, Kazunori
Akimoto, Takayuki
Miyaki, Shigeru
Adachi, Nobuo
author_facet Tsuchikawa, Yuji
Kamei, Naosuke
Sanada, Yohei
Nakamae, Toshio
Harada, Takahiro
Imaizumi, Kazunori
Akimoto, Takayuki
Miyaki, Shigeru
Adachi, Nobuo
author_sort Tsuchikawa, Yuji
collection PubMed
description Several microRNAs (miRNAs), including miR-23 and miR-27a have been reportedly involved in regulating myelination in the central nervous system. Although miR-23 and miR-27a form clusters in vivo and the clustered miRNAs are known to perform complementary functions, the role of these miRNA clusters in myelination has not been studied. To investigate the role of miR-23-27-24 clusters in myelination, we generated miR-23-27-24 cluster knockout mice and evaluated myelination in the brain and spinal cord. Our results showed that 10-week-old knockout mice had reduced motor function in the hanging wire test compared to the wild-type mice. At 4 weeks, 10 weeks, and 12 months of age, knockout mice showed reduced myelination compared to wild-type mice. The expression levels of myelin basic protein and myelin proteolipid protein were also significantly lower in the knockout mice compared to the wild-type mice. Although differentiation of oligodendrocyte progenitor cells to oligodendrocytes was not inhibited in the knockout mice, the percentage of oligodendrocytes expressing myelin basic protein was significantly lower in 4-week-old knockout mice than that in wild-type mice. Proteome analysis and western blotting showed increased expression of leucine-zipper-like transcription regulator 1 (LZTR1) and decreased expression of R-RAS and phosphorylated extracellular signal-regulated kinase 1/2 (pERK1/2) in the knockout mice. In summary, loss of miR-23-27-24 clusters reduces myelination and compromises motor functions in mice. Further, LZTR1, which regulates R-RAS upstream of the ERK1/2 pathway, a signal that promotes myelination, has been identified as a novel target of the miR-23-27-24 cluster in this study.
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spelling pubmed-100600682023-03-30 Deficiency of MicroRNA-23-27-24 Clusters Exhibits the Impairment of Myelination in the Central Nervous System Tsuchikawa, Yuji Kamei, Naosuke Sanada, Yohei Nakamae, Toshio Harada, Takahiro Imaizumi, Kazunori Akimoto, Takayuki Miyaki, Shigeru Adachi, Nobuo Neural Plast Research Article Several microRNAs (miRNAs), including miR-23 and miR-27a have been reportedly involved in regulating myelination in the central nervous system. Although miR-23 and miR-27a form clusters in vivo and the clustered miRNAs are known to perform complementary functions, the role of these miRNA clusters in myelination has not been studied. To investigate the role of miR-23-27-24 clusters in myelination, we generated miR-23-27-24 cluster knockout mice and evaluated myelination in the brain and spinal cord. Our results showed that 10-week-old knockout mice had reduced motor function in the hanging wire test compared to the wild-type mice. At 4 weeks, 10 weeks, and 12 months of age, knockout mice showed reduced myelination compared to wild-type mice. The expression levels of myelin basic protein and myelin proteolipid protein were also significantly lower in the knockout mice compared to the wild-type mice. Although differentiation of oligodendrocyte progenitor cells to oligodendrocytes was not inhibited in the knockout mice, the percentage of oligodendrocytes expressing myelin basic protein was significantly lower in 4-week-old knockout mice than that in wild-type mice. Proteome analysis and western blotting showed increased expression of leucine-zipper-like transcription regulator 1 (LZTR1) and decreased expression of R-RAS and phosphorylated extracellular signal-regulated kinase 1/2 (pERK1/2) in the knockout mice. In summary, loss of miR-23-27-24 clusters reduces myelination and compromises motor functions in mice. Further, LZTR1, which regulates R-RAS upstream of the ERK1/2 pathway, a signal that promotes myelination, has been identified as a novel target of the miR-23-27-24 cluster in this study. Hindawi 2023-03-22 /pmc/articles/PMC10060068/ /pubmed/37006814 http://dx.doi.org/10.1155/2023/8938674 Text en Copyright © 2023 Yuji Tsuchikawa et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Tsuchikawa, Yuji
Kamei, Naosuke
Sanada, Yohei
Nakamae, Toshio
Harada, Takahiro
Imaizumi, Kazunori
Akimoto, Takayuki
Miyaki, Shigeru
Adachi, Nobuo
Deficiency of MicroRNA-23-27-24 Clusters Exhibits the Impairment of Myelination in the Central Nervous System
title Deficiency of MicroRNA-23-27-24 Clusters Exhibits the Impairment of Myelination in the Central Nervous System
title_full Deficiency of MicroRNA-23-27-24 Clusters Exhibits the Impairment of Myelination in the Central Nervous System
title_fullStr Deficiency of MicroRNA-23-27-24 Clusters Exhibits the Impairment of Myelination in the Central Nervous System
title_full_unstemmed Deficiency of MicroRNA-23-27-24 Clusters Exhibits the Impairment of Myelination in the Central Nervous System
title_short Deficiency of MicroRNA-23-27-24 Clusters Exhibits the Impairment of Myelination in the Central Nervous System
title_sort deficiency of microrna-23-27-24 clusters exhibits the impairment of myelination in the central nervous system
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10060068/
https://www.ncbi.nlm.nih.gov/pubmed/37006814
http://dx.doi.org/10.1155/2023/8938674
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