神经病理性疼痛
ATF3
弧(几何)
医学
表观遗传学
神经科学
内分泌学
麻醉
化学
生物
基因表达
基因
发起人
几何学
数学
生物化学
作者
Tao Yu,Yuan Zhang,Xiaohong Jin,Nan Hua,Hong Liu,Renfei Qi,Zitong Huang,Yufang Sun,Dongsheng Jiang,Terrance P. Snutch,Xinghong Jiang,Jin Tao
标识
DOI:10.1038/s41467-023-43022-7
摘要
Although beta-endorphinergic neurons in the hypothalamic arcuate nucleus (ARC) synthesize beta-endorphin (β-EP) to alleviate nociceptive behaviors, the underlying regulatory mechanisms remain unknown. Here, we elucidated an epigenetic pathway driven by microRNA regulation of β-EP synthesis in ARC neurons to control neuropathic pain. In pain-injured rats miR-203a-3p was the most highly upregulated miRNA in the ARC. A similar increase was identified in the cerebrospinal fluid of trigeminal neuralgia patients. Mechanistically, we found histone deacetylase 9 was downregulated following nerve injury, which decreased deacetylation of histone H3 lysine-18, facilitating the binding of NR4A2 transcription factor to the miR-203a-3p gene promoter, thereby upregulating miR-203a-3p expression. Further, increased miR-203a-3p was found to maintain neuropathic pain by targeting proprotein convertase 1, an endopeptidase necessary for the cleavage of proopiomelanocortin, the precursor of β-EP. The identified mechanism may provide an avenue for the development of new therapeutic targets for neuropathic pain treatment.
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