再髓鞘化
生物
少突胶质细胞
表观遗传学
细胞生物学
遗传学
基因
髓鞘
神经科学
中枢神经系统
作者
Ming Zhang,Jian Wang,Kaixiang Zhang,Guozhen Lu,Yuming Liu,Keke Ren,Wenting Wang,Dazhuan Xin,Lingli Xu,Honghui Mao,Jun-Ling Xing,Xingchun Gao,Weilin Jin,Kalen Berry,Katsuhiko Mikoshiba,Shengxi Wu,Q. Richard Lu,Xianghui Zhao
标识
DOI:10.1038/s41467-021-25353-5
摘要
Abstract Ten-eleven translocation (TET) proteins, the dioxygenase for DNA hydroxymethylation, are important players in nervous system development and diseases. However, their role in myelination and remyelination after injury remains elusive. Here, we identify a genome-wide and locus-specific DNA hydroxymethylation landscape shift during differentiation of oligodendrocyte-progenitor cells (OPC). Ablation of Tet1 results in stage-dependent defects in oligodendrocyte (OL) development and myelination in the mouse brain. The mice lacking Tet1 in the oligodendrocyte lineage develop behavioral deficiency. We also show that TET1 is required for remyelination in adulthood. Transcriptomic, genomic occupancy, and 5-hydroxymethylcytosine (5hmC) profiling reveal a critical TET1-regulated epigenetic program for oligodendrocyte differentiation that includes genes associated with myelination, cell division, and calcium transport. Tet1 -deficient OPCs exhibit reduced calcium activity, increasing calcium activity rescues the differentiation defects in vitro. Deletion of a TET1-5hmC target gene, Itpr2 , impairs the onset of OPC differentiation. Together, our results suggest that stage-specific TET1-mediated epigenetic programming and intracellular signaling are important for proper myelination and remyelination in mice.
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