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首页> 外文期刊>European journal of human genetics: EJHG >Epigenetic analysis reveals a euchromatic configuration in the FMR1 unmethylated full mutations.
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Epigenetic analysis reveals a euchromatic configuration in the FMR1 unmethylated full mutations.

机译:表观遗传分析揭示了FMR1未甲基化的完整突变中的常染色体构型。

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Fragile X syndrome (FXS) is caused by the expansion of a CGG repeat in the 5'UTR of the FMR1 gene and the subsequent methylation of all CpG sites in the promoter region. We recently identified, in unrelated FXS families, two rare males with an unmethylated full mutation, that is, with an expanded CGG repeat (>200 triplets) lacking the typical CpG methylation in the FMR1 promoter. These individuals are not mentally retarded and do not appear to be mosaic for premutation or methylated full mutation alleles. We established lymphoblastoid and fibroblast cell lines that showed essentially normal levels of the FMR1-mRNA but reduced translational efficiency of the corresponding mRNA. Epigenetic analysis of the FMR1 gene demonstrated the lack of DNA methylation and a methylation pattern of lysines 4 and 27 on histone H3 similar to that of normal controls, in accordance with normal transcription levels and consistent with a euchromatic configuration. On the other hand, histone H3/H4 acetylation and lysine 9 methylation on histone H3 were similar to those of typical FXS cell lines, suggesting that these epigenetic changes are not sufficient for FMR1 gene inactivation. These findings demonstrate remarkable consistency and suggest a common genetic mechanism causing this rare FMR1 epigenotype. The discovery of such a mechanism may be important in view of therapeutic attempts to convert methylated into unmethylated full mutations, restoring the expression of the FMR1 gene.
机译:脆性X综合征(FXS)是由FMR1基因5'UTR中CGG重复序列的扩增以及启动子区域中所有CpG位点的随后甲基化引起的。我们最近在不相关的FXS家族中发现了两个罕见的雄性,它们具有未甲基化的完整突变,即具有扩展的CGG重复序列(> 200个三联体),而在FMR1启动子中缺少典型的CpG甲基化。这些人没有智力障碍,似乎没有预突变或甲基化全突变等位基因的镶嵌。我们建立了显示出基本正常水平的FMR1-mRNA但降低了相应mRNA的翻译效率的淋巴母细胞和成纤维细胞系。 FMR1基因的表观遗传学分析表明,与正常对照相似,组蛋白H3上的DNA甲基化缺失以及赖氨酸4和27的赖氨酸甲基化模式与正常对照相似,并且与常染色体结构一致。另一方面,组蛋白H3上的组蛋白H3 / H4乙酰化和赖氨酸9甲基化与典型的FXS细胞系相似,表明这些表观遗传变化不足以使FMR1基因失活。这些发现表明了惊人的一致性,并暗示了导致这种罕见的FMR1表型的常见遗传机制。考虑到将甲基化转变为未甲基化的完整突变,恢复FMR1基因表达的治疗尝试,发现这种机制可能很重要。

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