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微小 RNA-489-3p 通过调节背角中癌蛋白 DEK/TET1 依赖性表观遗传修饰来减轻神经性痛觉过敏。

MicroRNA-489-3p attenuates neuropathic allodynia by regulating oncoprotein DEK/TET1-dependent epigenetic modification in the dorsal horn.

机构信息

Department of Medicine, Mackay Medical College, New Taipei, Taiwan.

Division of Thoracic Surgery, Department of Health, Taichung Hospital, Executive Yuan, Taichung, Taiwan.

出版信息

Neuropharmacology. 2022 Jun 1;210:109028. doi: 10.1016/j.neuropharm.2022.109028. Epub 2022 Mar 15.

Abstract

Originally characterized as an oncoprotein overexpressed in many forms of cancer that participates in numerous cellular pathways, DEK has since been well described regarding the regulation of epigenetic markers and transcription factors in neurons. However, its role in neuropathic allodynia processes remain elusive and intriguingly complex. Here, we show that DEK, which is induced in spinal dorsal horn neurons after spinal nerve ligation (SNL), is regulated by miR-489-3p. Moreover, SNL-induced decrease in miR-489-3p expression increased the expression of DEK, which recruited TET1 to the promoter fragments of the Bdnf, Grm5, and Stat3 genes, thereby enhancing their transcription in the dorsal horn. Remarkably, these effects were also induced by intrathecally administering naïve animals with miR-489-3p inhibitor, which could be inhibited by knockdown of TET1 siRNA or DEK siRNA. Conversely, delivery of intrathecal miR-489-3p-mimic into SNL rats attenuated allodynia behavior and reversed protein expression coupled to the promoter segments in the dorsal horn. Thus, a spinal miR-489-3p/DEK/TET1 transcriptional axis may contribute to neuropathic allodynia. These results may provide a new target for treating neuropathic allodynia.

摘要

最初被描述为在许多癌症形式中过表达的癌蛋白,参与许多细胞途径,DEK 已被很好地描述了其在神经元中的表观遗传标记物和转录因子的调节作用。然而,它在神经病理性痛觉过敏过程中的作用仍然难以捉摸且非常复杂。在这里,我们表明,在脊神经结扎(SNL)后脊髓背角神经元中诱导的 DEK 受 miR-489-3p 的调节。此外,SNL 诱导的 miR-489-3p 表达减少增加了 DEK 的表达,DEK 将 TET1 募集到 Bdnf、Grm5 和 Stat3 基因的启动子片段,从而增强它们在背角中的转录。值得注意的是,这些效应也可以通过鞘内给予幼稚动物 miR-489-3p 抑制剂来诱导,而 TET1 siRNA 或 DEK siRNA 的敲低可以抑制这些效应。相反,将鞘内 miR-489-3p 模拟物递送至 SNL 大鼠可减轻痛觉过敏行为,并逆转背角中与启动子片段相关的蛋白表达。因此,脊髓 miR-489-3p/DEK/TET1 转录轴可能有助于神经病理性痛觉过敏。这些结果可能为治疗神经病理性痛觉过敏提供了一个新的靶点。

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