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首页> 外文期刊>Nucleic acids research >Long intronic GAA?TTC repeats induce epigenetic changes and reporter gene silencing in a molecular model of Friedreich ataxia
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Long intronic GAA?TTC repeats induce epigenetic changes and reporter gene silencing in a molecular model of Friedreich ataxia

机译:长内含子GAA?TTC重复序列在Friedreich共济失调分子模型中诱导表观遗传变化和报告基因沉默

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Friedreich ataxia (FRDA) is caused by hyperexpansion of GAA?TTC repeats located in the first intron of the FXN gene, which inhibits transcription leading to the deficiency of frataxin. The FXN gene is an excellent target for therapeutic intervention since (i) 98% of patients carry the same type of mutation, (ii) the mutation is intronic, thus leaving the FXN coding sequence unaffected and (iii) heterozygous GAA?TTC expansion carriers with ~50% decrease of the frataxin are asymptomatic. The discovery of therapeutic strategies for FRDA is hampered by a lack of appropriate molecular models of the disease. Herein, we present the development of a new cell line as a molecular model of FRDA by inserting 560 GAA?TTC repeats into an intron of a GFP reporter minigene. The GFP_(GAA?TTC)560 minigene recapitulates the molecular hallmarks of the mutated FXN gene, i.e. inhibition of transcription of the reporter gene, decreased levels of the reporter protein and hypoacetylation and hypermethylation of histones in the vicinity of the repeats. Additionally, selected histone deacetylase inhibitors, known to stimulate the FXN gene expression, increase the expression of the GFP_(GAA?TTC)560 reporter. This FRDA model can be adapted to high-throughput analyses in a search for new therapeutics for the disease.
机译:弗里德赖希共济失调(FRDA)是由FXN基因第一个内含子中的GAA?TTC重复序列过度扩增引起的,它抑制了转录,从而导致了frataxin的缺乏。 FXN基因是治疗干预的极佳靶标,因为(i)98%的患者携带相同类型的突变,(ii)该突变是内含子,因此不影响FXN编码序列,并且(iii)杂合的GAA?TTC扩展载体减少约50%的frataxin是无症状的。缺乏适当的疾病分子模型阻碍了FRDA治疗策略的发现。本文中,我们通过将560 GAA?TTC重复序列插入GFP报告基因小基因的内含子,提出了一种作为FRDA分子模型的新细胞系。 GFP_(GAA?TTC) 560 小基因概括了突变的FXN基因的分子特征,即抑制报告基因的转录,降低报告基因蛋白的水平以及附近组蛋白的低乙酰化和高甲基化重复。此外,选择的已知能刺激FXN基因表达的组蛋白脱乙酰基酶抑制剂可增加GFP_(GAA?TTC) 560 报告基因的表达。该FRDA模型可适用于高通量分析,以寻找该疾病的新疗法。

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