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在神经病理性疼痛下,与伏隔核神经元适应反应相关的 microRNAs 的变化。

Change in microRNAs associated with neuronal adaptive responses in the nucleus accumbens under neuropathic pain.

机构信息

Department of Toxicology, Hoshi University School of Pharmacy and Pharmaceutical Sciences, Tokyo 142-8501, Japan.

出版信息

J Neurosci. 2011 Oct 26;31(43):15294-9. doi: 10.1523/JNEUROSCI.0921-11.2011.

Abstract

Neuropathic pain is the most difficult type of pain to control, and patients lose their motivation for the purposive pursuit with a decrease in their quality of life. Using a functional magnetic resonance imaging analysis, we demonstrated that blood oxygenation level-dependent signal intensity was increased in the ipsilateral nucleus accumbens (N.Acc.) following peripheral nerve injury. microRNAs are small, noncoding RNA molecules that direct the post-transcriptional suppression of gene expression, and play an important role in regulating synaptic plasticity. In this study, we found that sciatic nerve ligation induced a drastic decrease in the expression of miR200b and miR429 in N.Acc. neurons. The expression of DNA methyltransferase 3a (DNMT3a), which is the one of the predicted targets of miR200b/429, was significantly increased in the limbic forebrain including N.Acc. at 7 d after sciatic nerve ligation. Double-immunolabeling with antibodies specific to DNMT3a and NR1 showed that DNMT3a-immunoreactivity in the N.Acc. was located in NR1-labeled neurons, indicating that increased DNMT3a proteins were dominantly expressed in postsynaptic neurons in the N.Acc. area under a neuropathic pain-like state. The results of these analyses provide new insight into an epigenetic modification that is accompanied by a dramatic decrease in miR200b and miR429 along with the dysfunction of "mesolimbic motivation/valuation circuitry" under a neuropathic pain-like state. These phenomena may result in an increase in DNMT3a in neurons of the N.Acc. under neuropathic pain, which leads to the long-term transcription-silencing of several genes.

摘要

神经性疼痛是最难控制的疼痛类型,患者的生活质量下降,对有目的的追求失去动力。使用功能磁共振成像分析,我们证明了外周神经损伤后同侧伏隔核(N.Acc.)的血氧水平依赖信号强度增加。 microRNAs 是小的非编码 RNA 分子,可指导基因表达的转录后抑制,并在调节突触可塑性中发挥重要作用。在这项研究中,我们发现坐骨神经结扎诱导 N.Acc.神经元中 miR200b 和 miR429 的表达急剧下降。 DNA 甲基转移酶 3a(DNMT3a)的表达,其是 miR200b/429 的预测靶标之一,在坐骨神经结扎后 7 天包括 N.Acc.在内的边缘前脑显著增加。与针对 DNMT3a 和 NR1 的特异性抗体的双重免疫标记显示,N.Acc.中的 DNMT3a 免疫反应性位于 NR1 标记的神经元中,表明在神经性疼痛样状态下,N.Acc.区域中增加的 DNMT3a 蛋白主要表达在突触后神经元中。这些分析的结果为伴随“中边缘动机/评估电路”功能障碍的 miR200b 和 miR429 急剧减少的表观遗传修饰提供了新的见解。这些现象可能导致神经性疼痛下 N.Acc. 神经元中 DNMT3a 的增加,从而导致几个基因的长期转录沉默。

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