RRC ID 58620
Author Imamura O, Arai M, Dateki M, Oishi K, Takishima K.
Title Donepezil-induced oligodendrocyte differentiation is mediated through estrogen receptors.
Journal J Neurochem
Abstract Loss of oligodendrocytes, the myelin-forming cells of the central nervous system, and subsequent failure of myelin development result in serious neurological disorders such as multiple sclerosis. Using primary mouse embryonic neural stem cells (NSCs), we previously demonstrated that donepezil, an acetylcholinesterase inhibitor developed for the treatment of Alzheimer's disease, stimulates the differentiation of NSCs into oligodendrocytes and neurons, albeit at the expense of astrogenesis. However, the precise mechanisms underlying donepezil-induced differentiation remain unclear. In this study, we aimed at elucidating the molecular pathways contributing to donepezil-induced differentiation of mouse-induced pluripotent stem cell-derived neural stem cells (miPSC-NSCs). We used cell-based reporter gene arrays to investigate effects of donepezil on differentiation of miPSC-NSCs. Subsequently, we assessed the molecular pathway underlying donepezil action on differentiation of miPSC-NSCs into mature oligodendrocytes. Donepezil increased the transcriptional activity of estrogen response element under differentiating conditions. Moreover, estrogen receptors α (ERα) and β (ERβ) were highly expressed in MBP-positive mature oligodendrocytes. The ER antagonist ICI 182,780 abrogated the number of MBP-positive oligodendrocytes induced by donepezil, but showed no effect on the differentiation of miPSC-NSCs into Tuj1-positive neurons and GFAP-positive astrocytes. Furthermore, the donepezil-induced generation of mature oligodendrocytes from miPSC-NSC was significantly attenuated by antagonists and siRNA targeting ERα and ERβ. In conclusion, we demonstrated, for the first time, that donepezil-induced oligodendrogenesis is mediated through both ER subtypes, ERα and ERβ.
Volume 155(5)
Pages 494-507
Published 2020-12-1
DOI 10.1111/jnc.14927
PMID 31778582
MeSH Animals Cell Differentiation / drug effects* Cell Differentiation / physiology Cells, Cultured Cholinesterase Inhibitors / pharmacology Donepezil / pharmacology* Estrogen Receptor Antagonists / pharmacology Fulvestrant / pharmacology Induced Pluripotent Stem Cells / drug effects* Induced Pluripotent Stem Cells / physiology Mice Oligodendroglia / drug effects* Oligodendroglia / physiology RNA, Small Interfering / administration & dosage Receptors, Estrogen / antagonists & inhibitors Receptors, Estrogen / metabolism*
IF 4.066
Times Cited 0
Resource
Human and Animal Cells iPS-MEF-Ng-20D-17(APS0001)