神经肽
生物
星形胶质细胞
小脑
神经科学
神经传递
HEK 293细胞
细胞生物学
基因剔除小鼠
突触
基因
遗传学
中枢神经系统
抑制性突触后电位
兴奋性突触后电位
受体
作者
Liming Qin,Zhili Liu,Sile Guo,Ying Han,Xiankun Wang,Wen Ren,Jiewen Chen,Hefu Zhen,Chao Nie,Ke-Ke Xing,Tao Chen,Thomas C. Südhof,Yuzhe Sun,Bo Zhang
标识
DOI:10.1038/s41380-024-02659-6
摘要
Abstract Neuroligin-3 ( Nlgn3 ) is an autism-associated cell-adhesion molecule that interacts with neurexins and is robustly expressed in both neurons and astrocytes. Neuronal Nlgn3 is an essential regulator of synaptic transmission but the function of astrocytic Nlgn3 is largely unknown. Given the high penetrance of Nlgn3 mutations in autism and the emerging role of astrocytes in neuropsychiatric disorders, we here asked whether astrocytic Nlgn3 might shape neural circuit properties in the cerebellum similar to neuronal Nlgn3 . Imaging of tagged Nlgn3 protein produced by CRISPR/Cas9-mediated genome editing showed that Nlgn3 is enriched in the cell body but not the fine processes of cerebellar astrocytes (Bergmann glia). Astrocyte-specific knockout of Nlgn3 did not detectably alter the number of synapses, synaptic transmission, or astrocyte morphology in mouse cerebellum. However, spatial transcriptomic analyses revealed a significant shift in gene expression among multiple cerebellar cell types after the deletion of astrocytic Nlgn3 . Hence, in contrast to neuronal Nlgn3 , astrocytic Nlgn3 in the cerebellum is not involved in shaping synapses but may modulate gene expression in specific brain areas.
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