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NFAT1 Orchestrates Spinal Microglial Transcription and Promotes Microglial Proliferation via c‐MYC Contributing to Nerve Injury‐Induced Neuropathic Pain

Peripheral nerve injury‐induced spinal microglial proliferation plays a pivotal role in neuropathic pain. So far, key intracellular druggable molecules involved in this process are not identified. The nuclear factor of activated T‐cells (NFAT1) is a master regulator of immune cell proliferation. Whe...

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Autores principales: Jiang, Bao‐Chun, Ding, Ting‐Yu, Guo, Chang‐Yun, Bai, Xue‐Hui, Cao, De‐Li, Wu, Xiao‐Bo, Sha, Wei‐Lin, Jiang, Ming, Wu, Long‐Jun, Gao, Yong‐Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9507349/
https://www.ncbi.nlm.nih.gov/pubmed/35892263
http://dx.doi.org/10.1002/advs.202201300
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author Jiang, Bao‐Chun
Ding, Ting‐Yu
Guo, Chang‐Yun
Bai, Xue‐Hui
Cao, De‐Li
Wu, Xiao‐Bo
Sha, Wei‐Lin
Jiang, Ming
Wu, Long‐Jun
Gao, Yong‐Jing
author_facet Jiang, Bao‐Chun
Ding, Ting‐Yu
Guo, Chang‐Yun
Bai, Xue‐Hui
Cao, De‐Li
Wu, Xiao‐Bo
Sha, Wei‐Lin
Jiang, Ming
Wu, Long‐Jun
Gao, Yong‐Jing
author_sort Jiang, Bao‐Chun
collection PubMed
description Peripheral nerve injury‐induced spinal microglial proliferation plays a pivotal role in neuropathic pain. So far, key intracellular druggable molecules involved in this process are not identified. The nuclear factor of activated T‐cells (NFAT1) is a master regulator of immune cell proliferation. Whether and how NFAT1 modulates spinal microglial proliferation during neuropathic pain remain unknown. Here it is reported that NFAT1 is persistently upregulated in microglia after spinal nerve ligation (SNL), which is regulated by TET2‐mediated DNA demethylation. Global or microglia‐specific deletion of Nfat1 attenuates SNL‐induced pain and decreases excitatory synaptic transmission of lamina II neurons. Furthermore, deletion of Nfat1 decreases microglial proliferation and the expression of multiple microglia‐related genes, such as cytokines, transmembrane signaling receptors, and transcription factors. Particularly, SNL increases the binding of NFAT1 with the promoter of Itgam, Tnf, Il‐1b, and c‐Myc in the spinal cord. Microglia‐specific overexpression of c‐MYC induces pain hypersensitivity and microglial proliferation. Finally, inhibiting NFAT1 and c‐MYC by intrathecal injection of inhibitor or siRNA alleviates SNL‐induced neuropathic pain. Collectively, NFAT1 is a hub transcription factor that regulates microglial proliferation via c‐MYC and guides the expression of the activated microglia genome. Thus, NFAT1 may be an effective target for treating neuropathic pain.
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spelling pubmed-95073492022-09-30 NFAT1 Orchestrates Spinal Microglial Transcription and Promotes Microglial Proliferation via c‐MYC Contributing to Nerve Injury‐Induced Neuropathic Pain Jiang, Bao‐Chun Ding, Ting‐Yu Guo, Chang‐Yun Bai, Xue‐Hui Cao, De‐Li Wu, Xiao‐Bo Sha, Wei‐Lin Jiang, Ming Wu, Long‐Jun Gao, Yong‐Jing Adv Sci (Weinh) Research Articles Peripheral nerve injury‐induced spinal microglial proliferation plays a pivotal role in neuropathic pain. So far, key intracellular druggable molecules involved in this process are not identified. The nuclear factor of activated T‐cells (NFAT1) is a master regulator of immune cell proliferation. Whether and how NFAT1 modulates spinal microglial proliferation during neuropathic pain remain unknown. Here it is reported that NFAT1 is persistently upregulated in microglia after spinal nerve ligation (SNL), which is regulated by TET2‐mediated DNA demethylation. Global or microglia‐specific deletion of Nfat1 attenuates SNL‐induced pain and decreases excitatory synaptic transmission of lamina II neurons. Furthermore, deletion of Nfat1 decreases microglial proliferation and the expression of multiple microglia‐related genes, such as cytokines, transmembrane signaling receptors, and transcription factors. Particularly, SNL increases the binding of NFAT1 with the promoter of Itgam, Tnf, Il‐1b, and c‐Myc in the spinal cord. Microglia‐specific overexpression of c‐MYC induces pain hypersensitivity and microglial proliferation. Finally, inhibiting NFAT1 and c‐MYC by intrathecal injection of inhibitor or siRNA alleviates SNL‐induced neuropathic pain. Collectively, NFAT1 is a hub transcription factor that regulates microglial proliferation via c‐MYC and guides the expression of the activated microglia genome. Thus, NFAT1 may be an effective target for treating neuropathic pain. John Wiley and Sons Inc. 2022-07-27 /pmc/articles/PMC9507349/ /pubmed/35892263 http://dx.doi.org/10.1002/advs.202201300 Text en © 2022 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Jiang, Bao‐Chun
Ding, Ting‐Yu
Guo, Chang‐Yun
Bai, Xue‐Hui
Cao, De‐Li
Wu, Xiao‐Bo
Sha, Wei‐Lin
Jiang, Ming
Wu, Long‐Jun
Gao, Yong‐Jing
NFAT1 Orchestrates Spinal Microglial Transcription and Promotes Microglial Proliferation via c‐MYC Contributing to Nerve Injury‐Induced Neuropathic Pain
title NFAT1 Orchestrates Spinal Microglial Transcription and Promotes Microglial Proliferation via c‐MYC Contributing to Nerve Injury‐Induced Neuropathic Pain
title_full NFAT1 Orchestrates Spinal Microglial Transcription and Promotes Microglial Proliferation via c‐MYC Contributing to Nerve Injury‐Induced Neuropathic Pain
title_fullStr NFAT1 Orchestrates Spinal Microglial Transcription and Promotes Microglial Proliferation via c‐MYC Contributing to Nerve Injury‐Induced Neuropathic Pain
title_full_unstemmed NFAT1 Orchestrates Spinal Microglial Transcription and Promotes Microglial Proliferation via c‐MYC Contributing to Nerve Injury‐Induced Neuropathic Pain
title_short NFAT1 Orchestrates Spinal Microglial Transcription and Promotes Microglial Proliferation via c‐MYC Contributing to Nerve Injury‐Induced Neuropathic Pain
title_sort nfat1 orchestrates spinal microglial transcription and promotes microglial proliferation via c‐myc contributing to nerve injury‐induced neuropathic pain
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9507349/
https://www.ncbi.nlm.nih.gov/pubmed/35892263
http://dx.doi.org/10.1002/advs.202201300
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