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首页> 外文期刊>Frontiers in Molecular Neuroscience >Cell Type-Specific mRNA Dysregulation in Hippocampal CA1 Pyramidal Neurons of the Fragile X Syndrome Mouse Model
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Cell Type-Specific mRNA Dysregulation in Hippocampal CA1 Pyramidal Neurons of the Fragile X Syndrome Mouse Model

机译:脆性X综合征小鼠模型海马CA1锥体神经元中细胞类型特定的mRNA失调。

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Fragile X syndrome (FXS) is a genetic disorder due to the silencing of the Fmr1 gene, causing intellectual disability, seizures, hyperactivity, and social anxiety. All these symptoms result from the loss of expression of the RNA binding protein fragile X mental retardation protein (FMRP), which alters the neurodevelopmental program to abnormal wiring of specific circuits. Aberrant mRNAs translation associated with the loss of Fmr1 product is widely suspected to be in part the cause of FXS. However, precise gene expression changes involved in this disorder have yet to be defined. The objective of this study was to identify the set of mistranslated mRNAs that could contribute to neurological deficits in FXS. We used the RiboTag approach and RNA sequencing to provide an exhaustive listing of genes whose mRNAs are differentially translated in hippocampal CA1 pyramidal neurons as the integrative result of FMRP loss and subsequent neurodevelopmental adaptations. Among genes differentially regulated between adult WT and Fmr1 ~(?/ y )mice, we found enrichment in FMRP-binders but also a majority of non-FMRP-binders. Interestingly, both up- and down-regulation of specific gene expression is relevant to fully understand the molecular deficiencies triggering FXS. More importantly, functional genomic analysis highlighted the importance of genes involved in neuronal connectivity. Among them, we show that Klk8 altered expression participates in the abnormal hippocampal dendritic spine maturation observed in a mouse model of FXS.
机译:脆性X综合征(FXS)是由于Fmr1基因沉默导致的遗传性疾病,导致智力残疾,癫痫发作,活动过度和社交焦虑。所有这些症状是由于RNA结合蛋白脆性X智力低下蛋白(FMRP)的表达丧失而引起的,该蛋白将神经发育程序改变为特定回路的异常接线。广泛怀疑与Fmr1产物丢失有关的异常mRNA翻译是FXS的部分原因。然而,尚未定义与该疾病有关的精确基因表达变化。这项研究的目的是确定可能导致FXS神经功能缺陷的一组错误翻译的mRNA。我们使用RiboTag方法和RNA测序提供了详尽的基因清单,这些基因的mRNA在海马CA1锥体神经元中差异翻译,这是FMRP缺失和随后的神经发育适应的综合结果。在成年WT和Fmr1〜(?/ y)小鼠之间差异调节的基因中,我们发现富集FMRP结合剂,但也有大多数非FMRP结合剂。有趣的是,特定基因表达的上调和下调都与充分了解触发FXS的分子缺陷有关。更重要的是,功能基因组分析突出了参与神经元连通性的基因的重要性。其中,我们显示Klk8改变的表达参与了在FXS小鼠模型中观察到的异常海马树突棘成熟。

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