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The bifunctional microRNA miR-9/miR-9* regulates REST and CoREST and is downregulated in Huntington's disease

机译:双功能microRNA miR-9 / miR-9 *调节REST和CoREST并在亨廷顿舞蹈病中下调

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摘要

The transcription factor REST silences neuronal gene expression in non-neuronal cells. In neurons, the protein is sequestered in the cytoplasm in part through binding to huntingtin. Polyglutamine expansions in huntingtin, which causes Huntington's disease (HD), abrogates REST-huntingtin binding. Consequently, REST translocates to the nucleus, occupies RE1 repressor sequences and decreases neuronal gene expression. In this work, we found that levels of several microRNAs (miRNAs) with upstream RE1 sites are decreased in HD patient cortices relative to healthy controls. Interestingly, one of these, the bifunctional brain enriched miR-9/miR-9*, targets two components of the REST complex: miR-9 targets REST and miR-9* targets CoREST. These data provide evidence for a double negative feedback loop between the REST silencing complex and the miRNAs it regulates.
机译:转录因子REST使非神经元细胞中的神经元基因表达沉默。在神经元中,蛋白质部分地通过与亨廷顿蛋白结合而被隔离在细胞质中。亨廷顿病中的聚谷氨酰胺扩张会导致亨廷顿舞蹈病(HD),从而消除REST-亨廷顿蛋白的结合。因此,REST易位至细胞核,占据RE1阻遏物序列并减少神经元基因表达。在这项工作中,我们发现相对于健康对照,HD患者皮层中具有上游RE1位点的几种microRNA(miRNA)的水平降低了。有趣的是,富含双功能的大脑之一miR-9 / miR-9 *针对REST复合体的两个组成部分:miR-9针对REST,而miR-9 *针对CoREST。这些数据为REST沉默复合物与其调控的miRNA之间的双重负反馈回路提供了证据。

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