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Hyperexpansion of GAA repeats affects post-initiation steps of FXN transcription in Friedreich’s ataxia

机译:GAA重复序列的过度扩展会影响Friedreich共济失调中FXN转录的启动后步骤

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摘要

Friedreich’s ataxia (FRDA) is caused by biallelic expansion of GAA repeats leading to the transcriptional silencing of the frataxin (FXN) gene. The exact molecular mechanism of inhibition of FXN expression is unclear. Herein, we analyze the effects of hyperexpanded GAA repeats on transcription status and chromatin modifications proximal and distal to the GAA repeats. Using chromatin immunoprecipitation and quantitative PCR we detected significant changes in the chromatin landscape in FRDA cells relative to control cells downstream of the promoter, especially in the vicinity of the GAA tract. In this region, hyperexpanded GAAs induced a particular constellation of histone modifications typically associated with heterochromatin-like structures. Similar epigenetic changes were observed in GFP reporter construct containing 560 GAA repeats. Furthermore, we observed similar levels of FXN pre-mRNA at a region upstream of hyperexpanded GAA repeats in FRDA and control cells, indicating similar efficiency of transcription initiation. We also demonstrated that histone modifications associated with hyperexpanded GAA repeats are independent of initiation and progression of transcription. Our data provide strong evidence that FXN deficiency in FRDA patients results from a block of transition from initiation to a productive elongation of FXN transcription due to heterochromatin-like structures formed in the proximity of the hyperexpanded GAAs.
机译:弗里德里希(Friedreich)共济失调(FRDA)是由GAA重复序列的双等位基因扩增引起的,从而导致了frataxin(FXN)基因的转录沉默。抑制FXN表达的确切分子机制尚不清楚。本文中,我们分析了GAA重复序列过度扩增对GAA重复序列近端和远端的转录状态和染色质修饰的影响。使用染色质免疫沉淀和定量PCR,我们检测到FRDA细胞中的染色质景观相对于启动子下游(尤其是GAA区域附近)的对照细胞有显着变化。在该区域,过度扩增的GAA诱导了通常与异染色质样结构相关的组蛋白修饰的特定构象。在含有560个GAA重复序列的GFP报告基因构建物中观察到了相似的表观遗传变化。此外,我们观察到在FRDA和对照细胞中超扩增的GAA重复序列上游区域的FXN前mRNA的水平相似,表明转录起始的效率相似。我们还证明,与超扩增的GAA重复序列相关的组蛋白修饰与转录的起始和进展无关。我们的数据提供了有力的证据,表明FRDA患者中FXN缺乏是由于FXN转录从起始到生产性延伸的一段过渡而导致的,这是由于在过度扩增的GAA附近形成了异染色质样结构所致。

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