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Rett 综合征模型和患者中早期基因表达的全球损伤与髓鞘缺陷有关。

Global Impairment of Immediate-Early Genes Expression in Rett Syndrome Models and Patients Linked to Myelination Defects.

机构信息

Josep Carreras Leukemia Research Institute, School of Medicine, University of Barcelona, Carrer Casanova 143, 400° floor, 08036 Barcelona, Spain.

RICORS-TERAV, Instituto de Salud Carlos III, 28029 Madrid, Spain.

出版信息

Int J Mol Sci. 2023 Jan 11;24(2):1453. doi: 10.3390/ijms24021453.

Abstract

Rett syndrome (RTT) is a severe neurodevelopmental disease caused almost exclusively by mutations to the gene. This disease may be regarded as a synaptopathy, with impairments affecting synaptic plasticity, inhibitory and excitatory transmission and network excitability. The complete understanding of the mechanisms behind how the transcription factor MeCP2 so profoundly affects the mammalian brain are yet to be determined. What is known, is that MeCP2 involvement in activity-dependent expression programs is a critical link between this protein and proper neuronal activity, which allows the correct maturation of connections in the brain. By using RNA-sequencing analysis, we found several immediate-early genes (IEGs, key mediators of activity-dependent responses) directly bound by MeCP2 at the chromatin level and upregulated in the hippocampus and prefrontal cortex of the -KO mouse. Quantification of the IEGs response to stimulus both in vivo and in vitro detected an aberrant expression pattern in MeCP2-deficient neurons. Furthermore, altered IEGs levels were found in RTT patient's peripheral blood and brain regions of post-mortem samples, correlating with impaired expression of downstream myelination-related genes. Altogether, these data indicate that proper IEGs expression is crucial for correct synaptic development and that MeCP2 has a key role in the regulation of IEGs.

摘要

雷特综合征(RTT)是一种严重的神经发育疾病,几乎完全由 基因的突变引起。这种疾病可以被视为一种突触病,其损伤影响突触可塑性、抑制性和兴奋性传递以及网络兴奋性。转录因子 MeCP2 如何深刻影响哺乳动物大脑的机制仍有待确定。已知的是,MeCP2 参与活性依赖性表达程序是该蛋白与适当神经元活动之间的关键联系,这允许大脑中的连接正确成熟。通过使用 RNA 测序分析,我们发现几种即时早期基因(IEGs,活性依赖性反应的关键介质)在染色质水平上直接与 MeCP2 结合,并在上 -KO 小鼠的海马体和前额叶皮层中上调。体内和体外刺激的 IEG 反应的定量检测发现,MeCP2 缺失神经元的表达模式异常。此外,在 RTT 患者的外周血和死后样本的大脑区域中发现了改变的 IEGs 水平,与髓鞘形成相关基因的表达受损相关。总的来说,这些数据表明适当的 IEGs 表达对于正确的突触发育至关重要,并且 MeCP2 在 IEGs 的调节中具有关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf45/9864472/50cbc035877a/ijms-24-01453-g001.jpg

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