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Recent advances in MeCP2 structure and function.

机译:MeCP2结构和功能的最新进展。

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Mutations in methyl DNA binding protein 2 (MeCP2) cause the neurodevelopmental disorder Rett syndrome (RTT). The mechanism(s) by which the native MeCP2 protein operates in the cell are not well understood. Historically, MeCP2 has been characterized as a proximal gene silencer with 2 functional domains: a methyl DNA binding domain and a transcription repression domain. However, several lines of new data indicate that MeCP2 structure and function relationships are more complex. In this review, we first discuss recent studies that have advanced understanding of the basic structural biochemistry of MeCP2. This is followed by an analysis of cell-based experiments suggesting MeCP2 is a regulator, rather than a strict silencer, of transcription. The new data establish MeCP2 as a multifunctional nuclear protein, with potentially important roles in chromatin architecture, regulation of RNA splicing, and active transcription. We conclude by discussing clinical correlations between domain-specific mutations and RTT pathology to stress that all structural domains of MeCP2 are required to properly mediate cellular function of the intact protein.
机译:甲基DNA结合蛋白2(MeCP2)中的突变引起神经发育障碍Rett综合征(RTT)。天然MeCP2蛋白在细胞中发挥作用的机制尚不清楚。从历史上看,MeCP2被表征为具有2个功能域的近端基因沉默子:甲基DNA结合域和转录抑制域。但是,几行新数据表明MeCP2的结构和功能关系更为复杂。在这篇综述中,我们首先讨论对MeCP2的基本结构生物化学有高级理解的最新研究。接下来是对基于细胞的实验的分析,表明MeCP2是转录的调节剂,而不是严格的沉默子。新数据将MeCP2确立为多功能核蛋白,在染色质结构,RNA剪接调控和活性转录中具有潜在重要作用。我们通过讨论域特异性突变和RTT病理之间的临床相关性来得出结论,以强调MeCP2的所有结构域都是正确介导完整蛋白的细胞功能所必需的。

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