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A Mouse Model for MeCP2 Duplication Syndrome: MeCP2 Overexpression Impairs Learning and Memory and Synaptic Transmission

机译:MeCP2复制综合征的小鼠模型:MeCP2过表达损害学习和记忆及突触传递。

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摘要

Rett syndrome and MECP2 duplication syndrome are neurodevelopmental disorders that arise from loss-of-function and gain-of-function alterations in methyl-CpG binding protein 2 (MeCP2) expression, respectively. Although there have been studies examining MeCP2 loss of function in animal models, there is limited information on MeCP2 overexpression in animal models. Here, we characterize a mouse line with MeCP2 overexpression restricted to neurons (Tau–Mecp2). This MeCP2 overexpression line shows motor coordination deficits, heightened anxiety, and impairments in learning and memory that are accompanied by deficits in long-term potentiation and short-term synaptic plasticity. Whole-cell voltage-clamp recordings of cultured hippocampal neurons from Tau–Mecp2 mice reveal augmented frequency of miniature EPSCs with no change in miniature IPSCs, indicating that overexpression of MeCP2 selectively impacts excitatory synapse function. Moreover, we show that alterations in transcriptional repression mechanisms underlie the synaptic phenotypes in hippocampal neurons from the Tau–Mecp2 mice. These results demonstrate that the Tau–Mecp2 mouse line recapitulates many key phenotypes of MECP2 duplication syndrome and support the use of these mice to further study this devastating disorder.
机译:Rett综合征和MECP2复制综合征是分别由甲基CpG结合蛋白2(MeCP2)表达的功能丧失和功能获得改变引起的神经发育障碍。尽管有研究在动物模型中检测MeCP2功能丧失,但有关在动物模型中MeCP2过表达的信息有限。在这里,我们描述了MeCP2过表达仅限于神经元(Tau–Mecp2)的小鼠系。 MeCP2过表达谱线显示运动协调能力缺陷,焦虑加剧以及学习和记忆障碍,并伴有长期增强和短期突触可塑性的缺陷。 Tau–Mecp2小鼠培养的海马神经元的全细胞电压钳记录显示,微型EPSC的频率增加,微型IPSC没有变化,表明MeCP2的过表达选择性影响兴奋性突触功能。此外,我们表明,转录抑制机制的改变是Tau–Mecp2小鼠海马神经元突触表型的基础。这些结果表明,Tau–Mecp2小鼠品系概括了MECP2复制综合征的许多关键表型,并支持使用这些小鼠进一步研究这种破坏性疾病。

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