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Neuron-specific chromatin remodeling: A missing link in epigenetic mechanisms underlying synaptic plasticity, memory, and intellectual disability disorders

机译:神经元特定的染色质重塑:突触可塑性,记忆力和智力残疾障碍的表观遗传机制中的缺失环节

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摘要

Long-term memory formation requires the coordinated regulation of gene expression. Until recently nucleosome remodeling, one of the major epigenetic mechanisms for controlling gene expression, had been largely unexplored in the field of neuroscience. Nucleosome remodeling is carried out by chromatin remodeling complexes (CRCs) that interact with DNA and histones to physically alter chromatin structure and ultimately regulate gene expression. Human exome sequencing and gene wide association studies have linked mutations in CRC subunits to intellectual disability disorders, autism spectrum disorder and schizophrenia. However, how mutations in CRC subunits were related to human cognitive disorders was unknown. There appears to be both developmental and adult specific roles for the neuron specific CRC nBAF (neuronal Brg1/hBrm Associated Factor). nBAF regulates gene expression required for dendritic arborization during development, and in the adult, contributes to long-term potentiation, a form of synaptic plasticity, and long-term memory. We propose that the nBAF complex is a novel epigenetic mechanism for regulating transcription required for long-lasting forms of synaptic plasticity and memory processes and that impaired nBAF function may result in human cognitive disorders.
机译:长期记忆形成需要基因表达的协调调节。直到最近,核小体重塑是控制基因表达的主要表观遗传机制之一,在神经科学领域尚未得到广泛研究。核小体重塑是通过与DNA和组蛋白相互作用以实际改变染色质结构并最终调节基因表达的染色质重塑复合物(CRC)来进行的。人类外显子组测序和全基因关联研究已将CRC亚基的突变与智障,自闭症谱系障碍和精神分裂症联系起来。但是,CRC亚基的突变与人类认知障碍之间的关系尚不清楚。神经元特异的CRC nBAF(神经性Brg1 / hBrm相关因子)似乎同时具有发育和成人特有的作用。 nBAF调节发育过程中树突状乔化所需的基因表达,并且在成年人中,nBAF有助于长时程增强,突触可塑性的形式和长期记忆。我们建议nBAF复合物是一种新型的表观遗传机制,用于调节长效形式的突触可塑性和记忆过程所需的转录,而受损的nBAF功能可能导致人类认知障碍。

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