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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Rescue of gene expression by modified REST decoy oligonucleotides in a cellular model of Huntington's disease.
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Rescue of gene expression by modified REST decoy oligonucleotides in a cellular model of Huntington's disease.

机译:在亨廷顿舞蹈病的细胞模型中,通过修饰的REST诱饵寡核苷酸拯救基因表达。

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Transcriptional dysfunction is a prominent hallmark of Huntington's disease (HD). Several transcription factors have been implicated in the aetiology of HD progression and one of the most prominent is repressor element 1 (RE1) silencing transcription factor (REST). REST is a global repressor of neuronal gene expression and in the presence of mutant Huntingtin increased nuclear REST levels lead to elevated RE1 occupancy and a concomitant increase in target gene repression, including brain-derived neurotrophic factor. It is of great interest to devise strategies to reverse transcriptional dysregulation caused by increased nuclear REST and determine the consequences in HD. Thus far, such strategies have involved RNAi or mutant REST constructs. Decoys are double-stranded oligodeoxynucleotides corresponding to the DNA-binding element of a transcription factor and act to sequester it, thereby abrogating its transcriptional activity. Here, we report the use of a novel decoy strategy to rescue REST target gene expression in a cellular model of HD. We show that delivery of the decoy in cells expressing mutant Huntingtin leads to its specific interaction with REST, a reduction in REST occupancy of RE1s and rescue of target gene expression, including Bdnf. These data point to an alternative strategy for rebalancing the transcriptional dysregulation in HD.
机译:转录功能障碍是亨廷顿氏病(HD)的突出标志。 HD进展的病因涉及几种转录因子,最主要的转录因子之一是阻遏物元件1(RE1)沉默转录因子(REST)。 REST是神经元基因表达的全球阻遏物,在存在突变的Huntingtin的情况下,核REST水平的升高会导致RE1占用率升高,同时靶基因抑制作用(包括脑源性神经营养因子)也会随之增加。设计能够逆转由增加的核REST引起的转录失调并确定HD后果的策略引起了极大的兴趣。迄今为止,此类策略涉及RNAi或突变REST构建体。诱饵是对应于转录因子的DNA结合元件的双链寡脱氧核苷酸,并起隔离作用,从而废除了其转录活性。在这里,我们报告使用一种新颖的诱饵策略来挽救HD细胞模型中的REST目标基因表达。我们显示,诱饵在表达突变型亨廷顿蛋白的细胞中的递送导致其与REST的特异性相互作用,减少了RE1s的REST占有率,并挽救了包括Bdnf在内的目标基因表达。这些数据指出了重新平衡HD转录异常的另一种策略。

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