首页> 美国卫生研究院文献>Molecular and Cellular Biology >Autism-Associated Chromatin Regulator Brg1/SmarcA4 Is Required for Synapse Development and Myocyte Enhancer Factor 2-Mediated Synapse Remodeling
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Autism-Associated Chromatin Regulator Brg1/SmarcA4 Is Required for Synapse Development and Myocyte Enhancer Factor 2-Mediated Synapse Remodeling

机译:自闭症相关的染色质调节剂Brg1 / SmarcA4是突触发展和心肌细胞增强因子2介导的突触重塑所必需的。

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摘要

Synapse development requires normal neuronal activities and the precise expression of synapse-related genes. Dysregulation of synaptic genes results in neurological diseases such as autism spectrum disorders (ASD). Mutations in genes encoding chromatin-remodeling factor Brg1/SmarcA4 and its associated proteins are the genetic causes of several developmental diseases with neurological defects and autistic symptoms. Recent large-scale genomic studies predicted Brg1/SmarcA4 as one of the key nodes of the ASD gene network. We report that Brg1 deletion in early postnatal hippocampal neurons led to reduced dendritic spine density and maturation and impaired synapse activities. In developing mice, neuronal Brg1 deletion caused severe neurological defects. Gene expression analyses indicated that Brg1 regulates a significant number of genes known to be involved in synapse function and implicated in ASD. We found that Brg1 is required for dendritic spine/synapse elimination mediated by the ASD-associated transcription factor myocyte enhancer factor 2 (MEF2) and that Brg1 regulates the activity-induced expression of a specific subset of genes that overlap significantly with the targets of MEF2. Our analyses showed that Brg1 interacts with MEF2 and that MEF2 is required for Brg1 recruitment to target genes in response to neuron activation. Thus, Brg1 plays important roles in both synapse development/maturation and MEF2-mediated synapse remodeling. Our study reveals specific functions of the epigenetic regulator Brg1 in synapse development and provides insights into its role in neurological diseases such as ASD.
机译:突触的发育需要正常的神经元活动和突触相关基因的精确表达。突触基因的失调会导致神经系统疾病,例如自闭症谱系障碍(ASD)。编码染色质重塑因子Brg1 / SmarcA4及其相关蛋白的基因中的突变是几种具有神经系统缺陷和自闭症症状的发育疾病的遗传原因。最近的大规模基因组研究预测Brg1 / SmarcA4是ASD基因网络的关键节点之一。我们报告Brg1删除在产后早期海马神经元中导致树突棘密度和成熟度降低,以及突触活动受损。在发育中的小鼠中,神经元Brg1缺失引起严重的神经系统缺陷。基因表达分析表明,Brg1调节着许多已知与突触功能有关并与ASD有关的基因。我们发现Brg1是由ASD相关转录因子肌细胞增强因子2(MEF2)介导的树突棘/突触消除所必需的,并且Brg1调节了与MEF2靶标显着重叠的特定基因子集的活性诱导表达。我们的分析表明,Brg1与MEF2相互作用,MEF2是Brg1募集到响应神经元激活的靶基因所必需的。因此,Brg1在突触发育/成熟和MEF2介导的突触重塑中都起着重要作用。我们的研究揭示了表观遗传调节剂Brg1在突触发育中的特定功能,并提供了其在神经系统疾病(如ASD)中的作用的见解。

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