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miRNAome analysis of the mammalian neuronal nicotinic acetylcholine receptor genefamily

机译:哺乳动物神经元烟碱型乙酰胆碱受体基因的miRNAome分析家庭

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摘要

Nicotine binds to and activates a family of ligand-gated ion channels, neuronal nicotinic acetylcholine receptors (nAChRs). Chronic nicotine exposure alters the expression of various nAChR subtypes, which likely contributes to nicotine dependence; however, the underlying mechanisms regulating these changes remain unclear. A growing body of evidence indicates that microRNAs (miRNAs) may be involved in nAChR regulation. Using bioinformatics, miRNA library screening, site-directed mutagenesis, and gene expression analysis, we have identified a limited number of miRNAs that functionally interact with the 3′-untranslated regions (3′ UTRs) of mammalian neuronal nAChR subunit genes. In silico analyses revealed specific, evolutionarily conserved sites within the 3′ UTRs through which the miRNAs regulate gene expression. Mutating these sites disrupted miRNA regulation confirming the in silico predictions. In addition, the miRNAs that target nAChR 3′ UTRs are expressed in mouse brain and are regulated by chronic nicotine exposure. Furthermore, we show that expression of one of these miRNAs, miR-542-3p, is modulated by nicotine within the mesocorticolimbic reward pathway. Importantly, overexpression of miR-542-3p led to a decrease in the protein levels of its target, the nAChR β2 subunit. Bioinformatic analysis suggests that a number of the miRNAs play a general role in regulating cholinergic signaling. Our results provide evidence for a novel mode of nicotine-mediated regulation of the mammalian nAChR gene family.
机译:尼古丁结合并激活一系列配体门控离子通道,即神经元烟碱乙酰胆碱受体(nAChRs)。慢性尼古丁暴露会改变各种nAChR亚型的表达,这可能有助于尼古丁的依赖。但是,调节这些变化的潜在机制仍不清楚。越来越多的证据表明,microRNA(miRNA)可能参与nAChR调控​​。使用生物信息学,miRNA库筛选,定向诱变和基因表达分析,我们已经确定了功能上与哺乳动物神经元nAChR亚基基因的3'非翻译区(3'UTR)相互作用的miRNA数量有限。在计算机分析中揭示了miRNA调节基因表达的3'UTR内特定的,进化保守的位点。对这些位点进行突变会破坏miRNA调控,从而确认了计算机预测。此外,靶向nAChR 3'UTR的miRNA在小鼠大脑中表达,并受到慢性尼古丁暴露的调节。此外,我们显示,这些糖皮质激素之一,miR-542-3p的表达在中皮层皮质的奖励途径中受到尼古丁的调节。重要的是,miR-542-3p的过表达导致其靶标nAChRβ2亚基的蛋白质水平降低。生物信息学分析表明,许多miRNA在调节胆碱能信号传导中起一般作用。我们的结果为尼古丁介导的哺乳动物nAChR基因家族调节的新型模式提供了证据。

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