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转录后基因表达调控参与多发性硬化症小鼠模型中的髓鞘修复:HuR 和 HuD ELAV RNA 结合蛋白的反义调节。

Posttranscriptional Regulation of Gene Expression Participates in the Myelin Restoration in Mouse Models of Multiple Sclerosis: Antisense Modulation of HuR and HuD ELAV RNA Binding Protein.

机构信息

Department of Neuroscience, Psychology, Drug Research and Child Health (NEUROFARBA), Section of Pharmacology, University of Florence, Viale G. Pieraccini 6, I-50139, Florence, Italy.

出版信息

Mol Neurobiol. 2023 May;60(5):2661-2677. doi: 10.1007/s12035-023-03236-8. Epub 2023 Jan 25.

Abstract

Neuropathic pain is the most difficult-to-treat pain syndrome in multiple sclerosis. Evidence relates neuropathic pain to demyelination, which often originates from unresolved neuroinflammation or altered immune response. Posttranscriptional regulation of gene expression might play a fundamental role in the regulation of these processes. The ELAV RNA-binding proteins HuR and HuD are involved in the promotion of inflammatory phenomena and in neuronal development and maintenance, respectively. Thus, the aim of this study was to investigate the role of HuR and HuD in demyelination-associated neuropathic pain in the mouse experimental autoimmune encephalomyelitis (EAE) model. HuR resulted overexpressed in the spinal cord of MOG-EAE and PLP-EAE mice and was detected in CD11b + cells. Conversely, HuD was largely downregulated in the MOG-EAE spinal cord, along with GAP43 and neurofilament H, while in PLP-EAE mice, HuD and neuronal markers remained unaltered. Intranasal antisense oligonucleotide (ASO) delivery to knockdown HuR, increased myelin basic protein expression, and Luxol Fast Blue staining in both EAE models, an indication of increased myelin content. These effects temporally coincided with attenuation of pain hypersensitivity. Anti-HuR ASO increased the expression of HuD in GAP43-expressing cells and promoted a HuD-mediated neuroprotective activity in MOG-EAE mice, while in PLP-EAE mice, HuR silencing dampened pro-inflammatory responses mediated by spinal microglia activation. In conclusion, anti-HuR ASO showed myelin protection at analgesic doses with multitarget mechanisms, and it deserves further consideration as an innovative agent to counteract demyelination in neuropathic pain states.

摘要

神经病理性疼痛是多发性硬化症中最难治疗的疼痛综合征。有证据表明神经病理性疼痛与脱髓鞘有关,而脱髓鞘通常源于未解决的神经炎症或免疫反应改变。基因表达的转录后调控可能在这些过程的调节中发挥着基本作用。ELAV RNA 结合蛋白 HuR 和 HuD 分别参与炎症现象的促进以及神经元的发育和维持。因此,本研究旨在探讨 HuR 和 HuD 在实验性自身免疫性脑脊髓炎(EAE)小鼠模型中与脱髓鞘相关的神经病理性疼痛中的作用。HuR 在 MOG-EAE 和 PLP-EAE 小鼠的脊髓中过度表达,并在 CD11b+细胞中检测到。相反,HuD 在 MOG-EAE 脊髓中大量下调,同时 GAP43 和神经丝 H 也下调,而在 PLP-EAE 小鼠中,HuD 和神经元标记物保持不变。鼻内给予反义寡核苷酸(ASO)以敲低 HuR,增加了两种 EAE 模型中的髓鞘碱性蛋白表达和卢索快速蓝染色,表明髓鞘含量增加。这些效应与疼痛敏感性降低的时间一致。抗 HuR ASO 增加了 GAP43 表达细胞中 HuD 的表达,并在 MOG-EAE 小鼠中促进了 HuD 介导的神经保护活性,而在 PLP-EAE 小鼠中,HuR 沉默抑制了脊髓小胶质细胞激活介导的促炎反应。总之,抗 HuR ASO 以多靶点机制显示出在镇痛剂量下的髓鞘保护作用,值得进一步考虑作为一种创新药物,以对抗神经病理性疼痛状态下的脱髓鞘。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad14/10039839/47d63bf035b8/12035_2023_3236_Fig1_HTML.jpg

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