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Npas3基因缺陷会损害皮质星形胶质细胞生成并诱发类似自闭症的行为。

Npas3 deficiency impairs cortical astrogenesis and induces autistic-like behaviors.

作者信息

Li Yuanyuan, Fan Tianda, Li Xianfeng, Liu Liqiu, Mao Fengbiao, Li Yi, Miao Zhuang, Zeng Cheng, Song Wei, Pan Jinrong, Zhou Shutang, Wang Hongbing, Wang Yan, Sun Zhong Sheng

机构信息

Beijing Institutes of Life Science, Chinese Academy of Sciences, Beijing 100101, China; CAS Center for Excellence in Biotic Interactions, University of Chinese Academy of Sciences, Beijing 100049, China.

Institute of Genomic Medicine, Wenzhou Medical University, Wenzhou, Zhejiang 325000, China.

出版信息

Cell Rep. 2022 Aug 30;40(9):111289. doi: 10.1016/j.celrep.2022.111289.

Abstract

Transcription factors with basic-helix-loop-helix (bHLH) motifs can control neural progenitor fate determination to neurons and oligodendrocytes. How bHLH transcription factors regulate astrogenesis remains largely unknown. Here, we report that NPAS3, a bHLH transcription factor, is a critical regulator of astrogenesis. Npas3 deficiency impairs cortical astrogenesis, correlating with abnormal brain development and autistic-like behaviors. Single-cell transcriptomes reveal that Npas3 knockout induces abnormal transition states in the differentiation trajectories from radial glia to astrocytes. Analysis of chromatin immunoprecipitation sequencing data in primary cortical astrocytes shows that NPAS3 binding targets are involved in functions of brain development and synapse organization. Co-culture assay further indicates that NPAS3-impaired astrogenesis induces synaptic deficits in wild-type neurons. Astrocyte-specific knockdown of NPAS3 in wild-type cortex causes synaptic and behavioral abnormalities associated with the core symptoms in autism. Together, our findings suggest that transcription factor NPAS3 regulates astrogenesis and its subsequent consequences for brain development and behavior.

摘要

具有碱性螺旋-环-螺旋(bHLH)基序的转录因子可控制神经祖细胞向神经元和少突胶质细胞的命运决定。bHLH转录因子如何调节星形胶质细胞生成在很大程度上仍不清楚。在此,我们报告NPAS3,一种bHLH转录因子,是星形胶质细胞生成的关键调节因子。Npas3缺乏会损害皮质星形胶质细胞生成,这与异常的大脑发育和自闭症样行为相关。单细胞转录组显示,Npas3基因敲除会在从放射状胶质细胞到星形胶质细胞的分化轨迹中诱导异常的过渡状态。对原代皮质星形胶质细胞的染色质免疫沉淀测序数据分析表明,NPAS3结合靶点参与大脑发育和突触组织功能。共培养实验进一步表明,NPAS3受损的星形胶质细胞生成会在野生型神经元中诱导突触缺陷。在野生型皮质中对NPAS3进行星形胶质细胞特异性敲低会导致与自闭症核心症状相关的突触和行为异常。总之,我们的研究结果表明,转录因子NPAS3调节星形胶质细胞生成及其对大脑发育和行为的后续影响。

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