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Impaired postnatal myelination in a conditional knockout mouse for the ferritin heavy chain in oligodendroglial cells

  • Rensheng Wan
  • , Veronica T. Cheli
  • , Diara A. Santiago-González
  • , Shaina L. Rosenblum
  • , Qiuchen Wan
  • , Pablo M. Paez
  • SUNY Buffalo

Research output: Contribution to journalArticlepeer-review

34 Scopus citations

Abstract

To define the importance of iron storage in oligodendrocyte development and function, the ferritin heavy subunit (Fth) was specifically deleted in oligodendroglial cells. Blocking Fth synthesis in Sox10 or NG2-positive oligodendrocytes during the first or the third postnatal week significantly reduces oligodendrocyte iron storage and maturation. The brain of Fth KO animals presented an important decrease in the expression of myelin proteins and a substantial reduction in the percentage of myelinated axons. This hypomyelination was accompanied by a decline in the number of myelinating oligodendrocytes and with a reduction in proliferating oligodendrocyte progenitor cells (OPCs). Importantly, deleting Fth in Sox10-positive oligodendroglial cells after postnatal day 60 has no effect on myelin production and/or oligodendrocyte quantities. We also tested the capacity of Fth-deficient OPCs to remyelinate the adult brain in the cuprizone model of myelin injury and repair. Fth deletion in NG2-positive OPCs significantly reduces the number of mature oligodendrocytes and myelin production throughout the remyelination process. Furthermore, the corpus callosum of Fth KO animals presented a significant decrease in the percentage of remyelinated axons and a substantial reduction in the average myelin thickness. These results indicate that Fth synthesis during the first three postnatal weeks is important for an appropriate oligodendrocyte development, and suggest that Fth iron storage in adult OPCs is also essential for an effective remyelination of the mouse brain.

Original languageEnglish
Pages (from-to)7609-7624
Number of pages16
JournalJournal of Neuroscience
Volume40
Issue number40
DOIs
StatePublished - Sep 30 2020

Keywords

  • Ferritin
  • Iron
  • Myelination
  • Oligodendrocytes
  • Remyelination

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