神经性疼痛中的MicroRNA和长链非编码RNA

Pain Research Pub Date : 2019-09-20 DOI:10.11154/pain.34.219
A. Sakai, Motoyo Maruyama, Hidenori Suzuki
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引用次数: 1

摘要

非编码RNA通过与DNA、RNA和蛋白质的相互作用影响各种细胞过程。因此,非编码RNA、微小RNA和最近的长非编码RNA已被证明与疼痛障碍有关,包括神经性疼痛。微小RNA抑制基因表达的翻译步骤,微小RNA的失调是神经性疼痛的基础。另一方面,lncRNA调节基因表达的不同步骤,包括表观遗传学调节、转录、选择性剪接和翻译,尽管lncRNA在疼痛障碍中的作用仍知之甚少。有趣的是,一部分非编码RNA被释放到细胞外空间,并介导细胞间的通讯。细胞外微小RNA被证明可以调节伤害性传递。此外,细胞外非编码RNA有望成为血液中神经元损伤或疼痛的特异性生物标志物。在这篇综述中,我们总结了非编码RNA在神经性疼痛中的意义。
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MicroRNA and long non–coding RNA in neuropathic pain
Non–coding RNAs affect various cellular processes through interaction with DNA, RNA and protein. Accordingly, non–coding RNAs, microRNAs and more recently long non–coding RNAs, have been shown to be involved in pain disorders, including neuropathic pain. MicroRNAs inhibit translational step of gene expression and dysregulation of microRNAs underlies the neuropathic pain. On the other hand, lncRNAs regulate diverse steps of gene expression, including epigenetic modulation, transcription, alternative splicing and translation, although a role of lncRNAs in the pain disorders remain poorly understood. Interestingly, a part of non–coding RNAs are released to extracellular space and mediate a cell–cell communication. Extracellular microRNAs are shown to modulate nociceptive transmission. Furthermore, extracellular non–coding RNAs are expected as a specific biomarker for neuronal damage or pain in the blood. In this review, we summarize current insights into non–coding RNA significance in the neuropathic pain.
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Pain Research
Pain Research CLINICAL NEUROLOGY-
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