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Transcriptional profiling of a mouse model for Rett syndrome reveals subtle transcriptional changes in the brain

机译:Rett综合征小鼠模型的转录分析揭示了大脑中的细微转录变化

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The Mecp2 gene has been shown to be mutated in most cases of human Rett syndrome, and mouse models deleted for the ortholog have been generated. Lineage-specific deletion of the gene indicated that the Rett-like phenotype is caused by Mecp2 deficiency in neurons. Biochemical evidence suggests that Mecp2 acts as a global transcriptional repressor, predicting that mutant mice should have genome-wide transcriptional deregulation. We tested this hypothesis by comparing global gene expression in wild-type and Mecp2 mutant mice. The results of numerous microarray analyses revealed no dramatic changes in transcription even in mice displaying overt disease symptoms, although statistical power analyses of the data indicated that even a small number of relatively subtle changes in transcription would have been detected if present. However, a classifier consisting of a combined small set of genes was able to distinguish between mutant and wild-type samples with high accuracy. This result suggests that Mecp2 deficiency leads to subtle gene expression changes in mutant brains which may be associated with the phenotypic changes observed.
机译:在大多数人类Rett综合征病例中,Mecp2基因已显示出突变,并且已经生成了缺失了直系同源基因的小鼠模型。该基因的谱系特异性缺失表明,Rett样表型是由神经元中的Mecp2缺乏引起的。生化证据表明,Mecp2充当全局转录阻遏物,预示突变小鼠应具有全基因组转录失调。我们通过比较野生型和Mecp2突变小鼠中的全局基因表达来检验该假设。大量微阵列分析的结果表明,即使在显示明显疾病症状的小鼠中,转录也没有显着变化,尽管对数据的统计分析表明,即使存在,即使是相对少量的微小变化,也都可以检测到。但是,由少量基因组合而成的分类器能够以高准确度区分突变体样品和野生型样品。该结果表明,Mecp2缺乏会导致突变脑中微妙的基因表达变化,这可能与观察到的表型变化有关。

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