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Expanded GAA repeats impair FXN gene expression and reposition the FXN locus to the nuclear lamina in single cells

机译:扩展的GAA重复破坏FXN基因表达并将FXN基因座重新定位到单细胞的核层中

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摘要

Abnormally expanded DNA repeats are associated with several neurodegenerative diseases. In Friedreich's ataxia (FRDA), expanded GAA repeats in intron 1 of the frataxin gene (FXN) reduce FXN mRNA levels in averaged cell samples through a poorly understood mechanism. By visualizing FXN expression and nuclear localization in single cells, we show that GAA-expanded repeats decrease the number of FXN mRNA molecules, slow transcription, and increase FXN localization at the nuclear lamina (NL). Restoring histone acetylation reverses NL positioning. Expanded GAA-FXN loci in FRDA patient cells show increased NL localization with increased silencing of alleles and reduced transcription from alleles positioned peripherally. We also demonstrate inefficiencies in transcription initiation and elongation from the expanded GAA-FXN locus at single-cell resolution. We suggest that repressive epigenetic modifications at the expanded GAA-FXN locus may lead to NL relocation, where further repression may occur.
机译:异常扩增的DNA重复序列与几种神经退行性疾病有关。在弗里德里希共济失调(FRDA)中,frataxin基因(FXN)的内含子1中扩展的GAA重复序列通过人们不了解的机制降低了平均细胞样本中的FXN mRNA水平。通过可视化FXN表达和单个细胞中的核定位,我们表明,GAA扩展的重复序列减少了FXN mRNA分子的数量,减慢了转录并增加了FXN在核层(NL)的定位。恢复组蛋白乙酰化可逆转NL定位。 FRDA患者细胞中扩展的GAA-FXN基因座显示出等位基因沉默增加和定位周边等位基因转录减少,从而增加了NL定位。我们还证明了在单细胞分辨率下从扩增的GAA-FXN基因座转录起始和延伸效率低下。我们建议在扩展的GAA-FXN基因座处进行表观遗传修饰可能会导致NL重定位,从而可能发生进一步的抑制。

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