bioRxiv · 10.1101/2021.04.23.441060
Role of PARP1 in oligodendrocyte differentiation during developmental myelination and remyelination after myelin damage
Abstract
The function of poly(ADP-ribosyl) polymerase 1 (PARP1) in myelination and remyelination of the central nervous system (CNS) remain enigmatic. Here we report that PARP1 is an intrinsic driver for oligodendroglial development and myelination. Genetic PARP1 depletion impairs the differentiation of oligodendrocyte progenitor cells (OPCs) into oligodendrocytes and impedes CNS myelination. Mechanistically, PARP1-mediated PARylation activity is not only necessary but also sufficient for OPC differentiation. At the molecular level, we identify the RNA-binding protein Myef2 as a novel PARylated target which we show controls OPC differentiation through PARylation-modulated de-repression of myelin protein expression. Furthermore, PARP1s enzymatic activity is necessary for oligodendrocyte and myelin regeneration after demyelination. Together, our findings suggest that PARP1-mediated PARylation activity may be a potential therapeutic target for promoting OPC differentiation and remyelination in neurological disorders characterized by arrested OPC differentiation and remyelination failure such as multiple sclerosis.
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Wang, Y., Zhang, S., Kim, B., Hull, V., Xu, J., Prabhu, P., Gregory, M. J., Martinez-Cerdeno, V., Zhan, X., Deng, W., Guo, F.. 2021-04-23. Role of PARP1 in oligodendrocyte differentiation during developmental myelination and remyelination after myelin damage. https://doi.org/10.1101/2021.04.23.441060
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