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Expression of myelin basic protein in two oligodendroglial cell lines is modulated by apotransferrin through different transcription factors

  • Universidad de Buenos Aires

Research output: Contribution to journalArticlepeer-review

20 Scopus citations

Abstract

We have shown that apotransferrin (aTf) promotes the differentiation of two oligodendroglial cell (OLGc) lines, N19 and N20.1, representing different stages of OLGc maturation. Although in both cell lines aTf promoted myelin basic protein (MBP) expression, an increase in cAMP levels and CREB phosphorylation was observed only in the less mature cells (N19), suggesting that the maturation induced by aTf is achieved probably through different signaling pathways. We transfected both cell lines with the proximal region of the human MBP promoter fused to the lacZ reporter gene. In both transfected cell lines, addition of aTf produced an activation of the promoter. To elucidate the mechanisms involved in this action, Western blot analysis, EMSAs, and RT-PCR were performed for different transcription factors involved in mbp regulation. In the N20.1 line, treatment with aTf increased the expression and the DNA-binding capacity of thyroid hormone (TH) receptors, Sp1, and nuclear factor-κB (NFκB). For these cells we found that an inductor of NFκB (tumor necrosis factor-α) promoted MBP messenger synthesis, whereas mithramycin, a specific inibitor of Sp1, and a cAMP analog (db-cAMP) inhibited its transcription. In the N19 cell line, aTf stimulated NF-I and NFκB activation, but, aside from aTf, only db-cAMP induced mbp transcription. These data suggest that, depending on the OLGc maturational stage, aTf modulates MBP expression and OLGc differentiation through different signaling pathways and different transcription factors.

Original languageEnglish
Pages (from-to)606-618
Number of pages13
JournalJournal of Neuroscience Research
Volume83
Issue number4
DOIs
StatePublished - Mar 2006

Keywords

  • Differentiation
  • MBP promoter
  • Oligodendroglial cell lines
  • Transcription factors
  • Transferrin

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