神经科学
突触发生
生物
染色质
染色质重塑
少突胶质细胞
中枢神经系统
髓鞘
机制(生物学)
自闭症
神经传递
表观遗传学
突触可塑性
神经系统
突触
神经可塑性
自闭症谱系障碍
神经发育
双重角色
组蛋白
细胞生物学
基因表达调控
小胶质细胞
基因表达
基因剔除小鼠
作者
Xiaorui Wang,Cong Zeng,Zhonghao Wu,Minmin Lu,Xiao Wang,Yun Xiu,Qi Wang,Shouyu Wang,Xiaoying Chen,Yan Shen,Hui Li,Yixun Su,Penghui Chen,Hui Chen,Nengyin Sheng,Wei Mo,Chenju Yi,Qingwu Yang,Alexei Verkhratsky,Jianqin Niu
标识
DOI:10.1038/s41467-025-67930-y
摘要
Autism spectrum disorders (ASD) are neurodevelopmental disorders associated with synaptic deficits. Oligodendrocyte precursor cells (OPCs) are the only type of glial cells that establish direct synaptic connections with neurons within the central nervous system (CNS). However, the mechanism that results in the delicate construction of OPC-neuron synaptic connections remain poorly understood. Here we show in a mouse model that BAF155, a chromatin remodeling factor, is highly expressed in committed OPCs. BAF155 influences the OPC differentiation and myelination by coordinating the expression of multiple synapse-related genes that mediate OPC-neuron synaptic communication. The varying chromatin regulatory roles of BAF155 across brain regions give rise to local myelin deficits, contributing to the diverse clinical manifestations observed in individuals with ASD. Collectively, these results deepen our insight into OPC-neuron interactions under pathophysiological conditions and uncover a mechanism that integrates synaptic and ASD susceptibility genes, implying that abnormal OPC-neuron synaptogenesis could be an early instigator of ASD. The mechanisms underlying oligodendrocyte precursor cells (OPCs) and neuron interactions remain unclear. Here, the authors show that chromatin remodeler BAF155 regulates OPC differentiation and myelination by coordinating synaptic genes for OPC neuron communication, contributing to autism-like behavioral deficits in mice
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