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Reversal of epigenetic promoter silencing in Friedreich ataxia by a class I histone deacetylase inhibitor

机译:I类组蛋白脱乙酰基酶抑制剂逆转弗里德赖希共济失调中表观启动子沉默

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摘要

Friedreich ataxia, the most prevalent inherited ataxia, is caused by an expanded GAA triplet-repeat sequence in intron 1 of the FXN gene. Repressive chromatin spreads from the expanded GAA triplet-repeat sequence to cause epigenetic silencing of the FXN promoter via altered nucleosomal positioning and reduced chromatin accessibility. Indeed, deficient transcriptional initiation is the predominant cause of transcriptional deficiency in Friedreich ataxia. Treatment with 109, a class I histone deacetylase (HDAC) inhibitor, resulted in increased level of FXN transcript both upstream and downstream of the expanded GAA triplet-repeat sequence, without any change in transcript stability, suggesting that it acts via improvement of transcriptional initiation. Quantitative analysis of transcriptional initiation via metabolic labeling of nascent transcripts in patient-derived cells revealed a >3-fold increase (P < 0.05) in FXN promoter function. A concomitant 3-fold improvement (P < 0.001) in FXN promoter structure and chromatin accessibility was observed via Nucleosome Occupancy and Methylome Sequencing, a high-resolution in vivo footprint assay for detecting nucleosome occupancy in individual chromatin fibers. No such improvement in FXN promoter function or structure was observed upon treatment with a chemically-related inactive compound (966). Thus epigenetic promoter silencing in Friedreich ataxia is reversible, and the results implicate class I HDACs in repeat-mediated promoter silencing.
机译:Friedreich共济失调是最普遍的遗传共济失调,是由FXN基因内含子1中GAA三联体重复序列的扩增引起的。抑制的染色质从扩展的GAA三联体重复序列中扩散出来,通过改变核小体的定位和降低的染色质可及性,导致FXN启动子的表观遗传沉默。实际上,弗里德赖希共济失调的转录缺乏是导致转录缺陷的主要原因。用I类组蛋白脱乙酰基酶(HDAC)抑制剂109进行处理后,在扩展的GAA三联体重复序列的上游和下游均增加了FXN转录水平,但转录稳定性没有任何变化,表明它通过改善转录起始发挥作用。通过代谢标记患者来源细胞中新生转录本进行转录起始的定量分析显示,FXN启动子功能增加了> 3倍(P <0.05)。 FXN启动子结构和染色质可及性通过核小体占用和甲基化测序(一种用于检测单个染色质纤维中核小体占用的高分辨率体内足迹测定法)伴随着三倍的改善(P <0.001)。用化学相关的非活性化合物处理后,未观察到FXN启动子功能或结构的这种改善(966)。因此,弗里德赖希共济失调中的表观遗传启动子沉默是可逆的,并且结果暗示I类HDAC在重复介导的启动子沉默中起作用。

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