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Distinct miRNA expression in dorsal striatal subregions is associated with risk for addiction in rats

机译:背纹状体次区域中不同的miRNA表达与成瘾风险相关

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Recently, we published data using an animal model that allowed us to characterize animals into two groups, addiction vulnerable and addiction resilient, where we identified that addiction/relapse vulnerability was associated with deficits in synaptic plasticity-associated gene expression in the dorsal striatum (DS). Notable was the strong reduction in expression for activity-regulated cytoskeleton-associated protein ( Arc ) considered a master regulator of synaptic plasticity. In the present study, we confirmed that Arc messenger RNA was significantly decreased in the DS, but importantly, we identified that this reduction was restricted to the dorsomedial (DMS) and not dorsolateral striatum (DLS). There is recent evidence of microRNA (miRNA)-associated posttranscriptional suppression of Arc and animal models of addiction have identified a key role for miRNA in the regulation of addiction-relevant genes. In further support of this link, we identified several differentially expressed miRNA with the potential to influence addiction-relevant plasticity genes, including Arc . A key study recently reported that miR-212 expression is protective against compulsive cocaine-seeking. Supporting this hypothesis, we found that miR-212 expression was significantly reduced in the DMS but not DLS of addiction-vulnerable animals. Together, our data provide strong evidence that miRNA promote ongoing plasticity deficits in the DS of addiction-vulnerable animals.
机译:最近,我们使用动物模型发布了数据,该模型使我们能够将动物分为成瘾易感性和成瘾性成瘾两大类,其中我们确定成瘾/复发易感性与背侧纹状体(DS)中突触可塑性相关基因表达的缺陷有关)。值得注意的是,活性调节的细胞骨架相关蛋白(Arc)的表达大大降低,而该蛋白被认为是突触可塑性的主要调节剂。在本研究中,我们证实了DS中Arc Messenger的RNA显着降低,但是重要的是,我们确定这种降低仅限于背侧纹状体(DMS)而不是背外侧纹状体(DLS)。最近有证据表明,Arc的microRNA(miRNA)相关转录后抑制作用和成瘾动物模型已经确定了miRNA在成瘾相关基因调控中的关键作用。为了进一步支持该链接,我们鉴定了几种差异表达的miRNA,它们可能影响成瘾相关的可塑性基因,包括Arc。最近的一项关键研究报告说,miR-212表达可防止强迫性可卡因搜寻。支持该假设的我们发现,成瘾易感动物的DMS中miR-212表达显着降低,而DLS中却没有。在一起,我们的数据提供了有力的证据,证明miRNA会在易上瘾的动物的DS中促进持续的可塑性缺陷。

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