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Ninj2 regulates Schwann cells development by interfering laminin-integrin signaling

Rationale: Myelin sheath is an important structure to maintain normal functions of the nerves. Nerve Injury-Induced Protein 2 (Ninj2) was found upregulated in Schwann cells (SC) upon injury. However, whether and how Ninj2 plays a role in myelination remain unknown. Methods: In this study, we use tra...

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Autores principales: Sun, Yuxia, Chen, Xiang, Yue, Cen, Yang, Wenyi, Zhang, Shu, Ou, Zhimin, Chen, Ying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9691370/
https://www.ncbi.nlm.nih.gov/pubmed/36438492
http://dx.doi.org/10.7150/thno.76131
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author Sun, Yuxia
Chen, Xiang
Yue, Cen
Yang, Wenyi
Zhang, Shu
Ou, Zhimin
Chen, Ying
author_facet Sun, Yuxia
Chen, Xiang
Yue, Cen
Yang, Wenyi
Zhang, Shu
Ou, Zhimin
Chen, Ying
author_sort Sun, Yuxia
collection PubMed
description Rationale: Myelin sheath is an important structure to maintain normal functions of the nerves. Nerve Injury-Induced Protein 2 (Ninj2) was found upregulated in Schwann cells (SC) upon injury. However, whether and how Ninj2 plays a role in myelination remain unknown. Methods: In this study, we use transmission electron microscope imaging, immunofluorescent imaging, and behavioral tests to show the effects of Ninj2 on myelination and remyelination in peripheral nervous system (PNS) of SC-specific Ninj2 knockout mice (Dhh(cre/+);Ninj2(fl/fl)). For mechanism studies, we use RNA-Seq analysis to show the Ninj2-related pathways, and co-immunoprecipitation/mass-spectrometry to identify the Ninj2-interacting proteins in SCs. Furthermore, we evaluate the effect of integrin inhibitor GRGDSP during remyelination. Results: Ninj2 negatively regulates SC development. Ninj2-deficient mice exhibit precocious myelination phenotype, as well as the accelerated remyelination process after sciatic nerve injury. Loss of Ninj2 promotes myelination by promoting SC proliferation to augment its population. Mechanistically, Ninj2 interacted with ITGB1 on SC membrane, which inhibits laminin-integrin signaling. Removal of Ninj2 induces the activity of laminin-integrin signaling, resulting in the improved myelination in the Dhh(cre/+);Ninj2(fl/fl) mice. Inhibition of laminin-integrin signaling by integrin inhibitor GRGDSP sufficiently delays the remyelination process in the Dhh(cre/+);Ninj2(fl/fl) mice with sciatic nerve injury. Conclusion: Our study found Ninj2 as a negative regulator in the network controlling myelination in the PNS.
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spelling pubmed-96913702022-11-25 Ninj2 regulates Schwann cells development by interfering laminin-integrin signaling Sun, Yuxia Chen, Xiang Yue, Cen Yang, Wenyi Zhang, Shu Ou, Zhimin Chen, Ying Theranostics Research Paper Rationale: Myelin sheath is an important structure to maintain normal functions of the nerves. Nerve Injury-Induced Protein 2 (Ninj2) was found upregulated in Schwann cells (SC) upon injury. However, whether and how Ninj2 plays a role in myelination remain unknown. Methods: In this study, we use transmission electron microscope imaging, immunofluorescent imaging, and behavioral tests to show the effects of Ninj2 on myelination and remyelination in peripheral nervous system (PNS) of SC-specific Ninj2 knockout mice (Dhh(cre/+);Ninj2(fl/fl)). For mechanism studies, we use RNA-Seq analysis to show the Ninj2-related pathways, and co-immunoprecipitation/mass-spectrometry to identify the Ninj2-interacting proteins in SCs. Furthermore, we evaluate the effect of integrin inhibitor GRGDSP during remyelination. Results: Ninj2 negatively regulates SC development. Ninj2-deficient mice exhibit precocious myelination phenotype, as well as the accelerated remyelination process after sciatic nerve injury. Loss of Ninj2 promotes myelination by promoting SC proliferation to augment its population. Mechanistically, Ninj2 interacted with ITGB1 on SC membrane, which inhibits laminin-integrin signaling. Removal of Ninj2 induces the activity of laminin-integrin signaling, resulting in the improved myelination in the Dhh(cre/+);Ninj2(fl/fl) mice. Inhibition of laminin-integrin signaling by integrin inhibitor GRGDSP sufficiently delays the remyelination process in the Dhh(cre/+);Ninj2(fl/fl) mice with sciatic nerve injury. Conclusion: Our study found Ninj2 as a negative regulator in the network controlling myelination in the PNS. Ivyspring International Publisher 2022-10-17 /pmc/articles/PMC9691370/ /pubmed/36438492 http://dx.doi.org/10.7150/thno.76131 Text en © The author(s) 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/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Sun, Yuxia
Chen, Xiang
Yue, Cen
Yang, Wenyi
Zhang, Shu
Ou, Zhimin
Chen, Ying
Ninj2 regulates Schwann cells development by interfering laminin-integrin signaling
title Ninj2 regulates Schwann cells development by interfering laminin-integrin signaling
title_full Ninj2 regulates Schwann cells development by interfering laminin-integrin signaling
title_fullStr Ninj2 regulates Schwann cells development by interfering laminin-integrin signaling
title_full_unstemmed Ninj2 regulates Schwann cells development by interfering laminin-integrin signaling
title_short Ninj2 regulates Schwann cells development by interfering laminin-integrin signaling
title_sort ninj2 regulates schwann cells development by interfering laminin-integrin signaling
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9691370/
https://www.ncbi.nlm.nih.gov/pubmed/36438492
http://dx.doi.org/10.7150/thno.76131
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