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首页> 外文期刊>Journal of cellular and molecular medicine. >Cell cloning-based transcriptome analysis in Rett patients: relevance to the pathogenesis of Rett syndrome of new human MeCP2 target genes.
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Cell cloning-based transcriptome analysis in Rett patients: relevance to the pathogenesis of Rett syndrome of new human MeCP2 target genes.

机译:Rett患者中基于细胞克隆的转录组分析:与新人类MeCP2靶基因的Rett综合征发病机制相关。

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More than 90% of Rett syndrome (RTT) patients have heterozygous mutations in the X-linked methyl-CpG binding protein 2 (MECP2) gene that encodes the methyl-CpG-binding protein 2, a transcriptional modulator. Because MECP2 is subjected to X chromosome inactivation (XCI), girls with RTT either express the wild-type or mutant allele in each individual cell. To test the consequences of MECP2 mutations resulting from a genome-wide transcriptional dysregulation and to identify its target genes in a system that circumvents the functional mosaicism resulting from XCI, we carried out gene expression profiling of clonal populations derived from fibroblast primary cultures expressing exclusively either the wild-type or the mutant MECP2 allele. Clonal cultures were obtained from skin biopsy of three RTT patients carrying either a non-sense or a frameshift MECP2 mutation. For each patient, gene expression profiles of wild-type and mutant clones were compared by oligonucleotide expression microarray analysis. Firstly, clustering analysis classified the RTT patients according to their genetic background and MECP2 mutation. Secondly, expression profiling by microarray analysis and quantitative RT-PCR indicated four up-regulated genes and five down-regulated genes significantly dysregulated in all our statistical analysis, including excellent potential candidate genes for the understanding of the pathophysiology of this neurodevelopmental disease. Thirdly, chromatin immunoprecipitation analysis confirmed MeCP2 binding to respective CpG islands in three out of four up-regulated candidate genes and sequencing of bisulphite-converted DNA indicated that MeCP2 preferentially binds to methylated-DNA sequences. Most importantly, the finding that at least two of these genes (BMCC1 and RNF182) were shown to be involved in cell survival and/or apoptosis may suggest that impaired MeCP2 function could alter the survival of neurons thus compromising brain function without inducing cell death.
机译:超过90%的Rett综合征(RTT)患者在X链接的甲基CpG结合蛋白2(MECP2)基因中具有杂合突变,该基因编码甲基CpG结合蛋白2,一种转录调节剂。由于MECP2受到X染色体灭活(XCI)的影响,患有RTT的女孩在每个单独的细胞中表达野生型或突变等位基因。为了测试全基因组转录失调导致的MECP2突变的后果,并在规避XCI导致的功能性嵌合的系统中鉴定其靶基因,我们对来源于成纤维细胞原代培养物的克隆种群进行了基因表达谱分析野生型或突变的MECP2等位基因。从三名携带无义或移码MECP2突变的RTT患者的皮肤活检中获得了克隆培养物。对于每个患者,通过寡核苷酸表达微阵列分析比较野生型和突变型克隆的基因表达谱。首先,聚类分析根据RTT患者的遗传背景和MECP2突变对其进行分类。其次,通过微阵列分析和定量RT-PCR进行的表达谱分析表明,在我们所有的统计分析中,四个上调的基因和五个下调的基因均明显失调,包括用于理解这种神经发育疾病的病理生理的优秀潜在候选基因。第三,染色质免疫沉淀分析证实了MeCP2在四个上调候选基因中的三个中与各自的CpG岛结合,亚硫酸氢盐转化的DNA的测序表明MeCP2优先结合甲基化的DNA序列。最重要的是,发现这些基因中至少有两个基因(BMCC1和RNF182)与细胞存活和/或凋亡有关,这一发现可能表明MeCP2功能受损可能会改变神经元的存活,从而损害脑功能而不会引起细胞死亡。

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