轴突
再生(生物学)
胶质增生
胶质瘢痕
细胞生物学
朱布
脊髓损伤
神经胶质
轴突
生物
星形胶质细胞
脊髓
神经科学
中枢神经系统
基因表达
基因
生物化学
作者
Keith Z. Sabin,Peng Jiang,Micah D. Gearhart,Ron Stewart,Karen Echeverri
标识
DOI:10.1038/s42003-019-0335-4
摘要
Abstract Salamanders have the remarkable ability to functionally regenerate after spinal cord transection. In response to injury, GFAP + glial cells in the axolotl spinal cord proliferate and migrate to replace the missing neural tube and create a permissive environment for axon regeneration. Molecular pathways that regulate the pro-regenerative axolotl glial cell response are poorly understood. Here we show axolotl glial cells up-regulate AP-1 cFos/JunB after injury, which promotes a pro-regenerative glial cell response. Injury induced upregulation of miR-200a in glial cells supresses c-Jun expression in these cells. Inhibition of miR-200a during regeneration causes defects in axonal regrowth and transcriptomic analysis revealed that miR-200a inhibition leads to differential regulation of genes involved with reactive gliosis, the glial scar, extracellular matrix remodeling and axon guidance. This work identifies a unique role for miR-200a in inhibiting reactive gliosis in axolotl glial cells during spinal cord regeneration.
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