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Neuron. 2014 Feb 5;81(3):536-543. doi: 10.1016/j.neuron.2013.12.018.
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Sequestration of DROSHA and DGCR8 by expanded CGG RNA repeats alters microRNA processing in fragile X-associated tremor/ataxia syndrome.扩展的 CGG RNA 重复序列将 DROSHA 和 DGCR8 隔离,改变脆性 X 相关震颤/共济失调综合征中的 microRNA 加工。
Cell Rep. 2013 Mar 28;3(3):869-80. doi: 10.1016/j.celrep.2013.02.004. Epub 2013 Mar 7.
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How do the RNA-binding proteins TDP-43 and FUS relate to amyotrophic lateral sclerosis and frontotemporal degeneration, and to each other?TDP-43 和 FUS 这两种 RNA 结合蛋白与肌萎缩性侧索硬化症和额颞叶变性有何关系?它们彼此之间又有什么关系?
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Divergent roles of ALS-linked proteins FUS/TLS and TDP-43 intersect in processing long pre-mRNAs.ALS 相关蛋白 FUS/TLS 和 TDP-43 具有不同的功能,它们在加工长的前体 mRNA 方面存在交集。
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Chemical screen reveals small molecules suppressing fragile X premutation rCGG repeat-mediated neurodegeneration in Drosophila.化学筛选揭示了小分子抑制脆性 X 前突变 rCGG 重复介导的果蝇神经退行性变。
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Female CGG knock-in mice modeling the fragile X premutation are impaired on a skilled forelimb reaching task.建模脆性 X 前突变的雌性 CGG 敲入小鼠在熟练的前肢伸展任务中受损。
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Executive dysfunction in young FMR1 premutation carriers: forme fruste of FXTAS or new phenotype?年轻FMR1前突变携带者的执行功能障碍:脆性X震颤性共济失调综合征的顿挫型还是新的表型?
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RNA中的CGG重复序列在脆性X震颤共济失调综合征的小鼠和果蝇模型中调节TDP-43的表达。

CGG repeats in RNA modulate expression of TDP-43 in mouse and fly models of fragile X tremor ataxia syndrome.

作者信息

Galloway Jocelyn N, Shaw Chad, Yu Peng, Parghi Deena, Poidevin Mickael, Jin Peng, Nelson David L

机构信息

Interdepartmental Program in Cell and Molecular Biology.

Department of Human and Molecular Genetics and.

出版信息

Hum Mol Genet. 2014 Nov 15;23(22):5906-15. doi: 10.1093/hmg/ddu314. Epub 2014 Jun 30.

DOI:10.1093/hmg/ddu314
PMID:24986919
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4204772/
Abstract

Determining the molecular mechanism(s) leading to Purkinje neuron loss in the neurodegenerative disorder fragile X-associated tremor/ataxia syndrome (FXTAS) is limited by the complex morphology of this cell type. Purkinje neurons are notoriously difficult to isolate and maintain in culture presenting considerable difficultly to identify molecular changes in response to expanded CGG repeat (rCGG)-containing mRNA that induces neurotoxicity in FXTAS. Several studies have uncovered a number of RNA-binding proteins involved in translation that aberrantly interact with the CGG-containing RNA; however, whether these interactions alter the translational profile of cells has not been investigated. Here we employ bacTRAP translational profiling to demonstrate that Purkinje neurons ectopically expressing 90 CGG repeats exhibit a dramatic change in their translational profile even prior to the onset of rCGG-induced phenotypes. This approach identified ∼500 transcripts that are differentially associated with ribosomes in r(CGG)₉₀-expressing mice. Functional annotation cluster analysis revealed broad ontologies enriched in the r(CGG)₉₀ list, including RNA binding and response to stress. Intriguingly, a transcript for the Tardbp gene, implicated in a number of other neurodegenerative disorders, exhibits altered association with ribosomes in the presence of r(CGG)₉₀ repeats. We therefore tested and showed that reduced association of Tardbp mRNA with the ribosomes results in a loss of TDP-43 protein expression in r(CGG)₉₀-expressing Purkinje neurons. Furthermore, we showed that TDP-43 could modulate the rCGG repeat-mediated toxicity in a Drosophila model that we developed previously. These findings together suggest that translational dysregulation may be an underlying mechanism of rCGG-induced neurotoxicity in FXTAS.

摘要

在神经退行性疾病脆性X相关震颤/共济失调综合征(FXTAS)中,导致浦肯野神经元丧失的分子机制的确定受到这种细胞类型复杂形态的限制。众所周知,浦肯野神经元很难在培养中分离和维持,这给识别响应于含有扩展CGG重复序列(rCGG)的mRNA(其在FXTAS中诱导神经毒性)的分子变化带来了相当大的困难。多项研究发现了一些参与翻译的RNA结合蛋白,它们与含CGG的RNA异常相互作用;然而,这些相互作用是否会改变细胞的翻译谱尚未得到研究。在这里,我们采用bacTRAP翻译谱分析来证明,即使在rCGG诱导的表型出现之前,异位表达90个CGG重复序列的浦肯野神经元的翻译谱也会发生显著变化。这种方法鉴定出约500个转录本,它们在表达r(CGG)₉₀的小鼠中与核糖体有差异关联。功能注释聚类分析揭示了r(CGG)₉₀列表中富集的广泛本体,包括RNA结合和应激反应。有趣的是,在许多其他神经退行性疾病中涉及的Tardbp基因的一个转录本,在存在r(CGG)₉₀重复序列的情况下与核糖体的关联发生了改变。因此,我们进行了测试并表明,Tardbp mRNA与核糖体的关联减少导致在表达r(CGG)₉₀的浦肯野神经元中TDP - 43蛋白表达丧失。此外,我们表明TDP - 43可以在我们之前开发的果蝇模型中调节rCGG重复介导的毒性。这些发现共同表明,翻译失调可能是FXTAS中rCGG诱导神经毒性的潜在机制。