神经发生
神经科学
斑马鱼
脊髓损伤
生物
谷氨酸的
再生(生物学)
神经母细胞
脊髓
神经可塑性
谷氨酸受体
细胞生物学
基因
遗传学
受体
作者
Vishnu Muraleedharan Saraswathy,Zhou Li-li,Mayssa H. Mokalled
标识
DOI:10.1038/s41467-024-50628-y
摘要
Adult zebrafish have an innate ability to recover from severe spinal cord injury. Here, we report a comprehensive single nuclear RNA sequencing atlas that spans 6 weeks of regeneration. We identify cooperative roles for adult neurogenesis and neuronal plasticity during spinal cord repair. Neurogenesis of glutamatergic and GABAergic neurons restores the excitatory/inhibitory balance after injury. In addition, a transient population of injury-responsive neurons (iNeurons) show elevated plasticity 1 week post-injury. We found iNeurons are injury-surviving neurons that acquire a neuroblast-like gene expression signature after injury. CRISPR/Cas9 mutagenesis showed iNeurons are required for functional recovery and employ vesicular trafficking as an essential mechanism that underlies neuronal plasticity. This study provides a comprehensive resource of the cells and mechanisms that direct spinal cord regeneration and establishes zebrafish as a model of plasticity-driven neural repair.
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