少突胶质细胞
旁分泌信号
细胞生物学
多效蛋白
神经调节蛋白
生物
再髓鞘化
细胞分化
自噬
胶质发生
自分泌信号
髓鞘
雪旺细胞
下调和上调
髓鞘碱性蛋白
异位表达
信号转导
免疫沉淀
生长因子
神经胶质
蛋白质稳态
神经调节蛋白1
细胞信号
中枢神经系统
基因表达调控
组织蛋白酶D
转运蛋白
作者
Zhixiong Liu,Minbiao Yan,Wanying Lei,Rencai Jiang,Wenxiu Dai,Jialin Chen,Chaomeng Wang,Li Li,Mei Wu,Ximing Nian,Daopeng Li,Di Sun,Xiaoqi Lv,Chaoying Wang,Changchuan Xie,Luming Yao,Caiming Wu,Jin Hu,Naian Xiao,Wei Mo
摘要
Dysfunction of protein trafficking has been intensively associated with neurological diseases, including neurodegeneration, but whether and how protein transport contributes to oligodendrocyte (OL) maturation and myelin repair in white matter injury remains unclear. ER-to-Golgi trafficking of newly synthesized proteins is mediated by coat protein complex II (COPII). Here, we demonstrate that the COPII component Sec13 was essential for OL differentiation and postnatal myelination. Ablation of Sec13 in the OL lineage prevented OPC differentiation and inhibited myelination and remyelination after demyelinating injury in the central nervous system (CNS), while improving protein trafficking by tauroursodeoxycholic acid (TUDCA) or ectopic expression of COPII components accelerated myelination. COPII components were upregulated in OL lineage cells after demyelinating injury. Loss of Sec13 altered the secretome of OLs and inhibited the secretion of pleiotrophin (PTN), which was found to function as an autocrine factor to promote OL differentiation and myelin repair. These data suggest that Sec13-dependent protein transport is essential for OL differentiation and that Sec13-mediated PTN autocrine signaling is required for proper myelination and remyelination.
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