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Long intronic GAA repeats causing Friedreich ataxia impede transcription elongation

机译:长时间的内含子GAA重复导致Friedreich共济失调阻碍转录延伸

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摘要

Friedreich ataxia is a degenerative disease caused by deficiency of the protein frataxin (FXN). An intronic expansion of GAA triplets in the FXN-encoding gene, FXN, causes gene silencing and thus reduced FXN protein levels. Although it is widely assumed that GAA repeats block transcription via the assembly of an inaccessible chromatin structure marked by methylated H3K9, direct proof for this is lacking. In this study, we analysed different histone modification patterns along the human FXN gene in FRDA patient-derived lymphoblastoid cell lines. We show that FXN mRNA synthesis, but not turnover rates are affected by an expanded GAA repeat tract. Importantly, rather than preventing transcription initiation, long GAA repeat tracts affect transcription at the elongation step and this can occur independently of H3K9 methylation. Our data demonstrate that finding novel strategies to overcome the transcription elongation problem may develop into promising new treatments for FRDA.
机译:Friedreich共济失调是一种由蛋白质frataxin(FXN)缺乏引起的退化性疾病。 FXN编码基因FXN中GAA三联体的内含子扩增会导致基因沉默,从而降低FXN蛋白水平。尽管人们普遍认为GAA会通过甲基化的H3K9标记的难以接近的染色质结构的组装来重复转录,但仍缺乏直接的证据。在这项研究中,我们分析了FRDA患者来源的淋巴母细胞样细胞系中沿人类FXN基因的不同组蛋白修饰模式。我们表明,FXN mRNA的合成,但不是周转率受扩展的GAA重复道的影响。重要的是,较长的GAA重复序列会影响延伸步骤的转录,而不是阻止转录起始,并且可以独立于H3K9甲基化而发生。我们的数据表明,寻找克服转录延长问题的新策略可能会发展成为有前景的FRDA新疗法。

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