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Laminin alters Fyn regulatory mechanisms and promotes oligodendrocyte development

  • Jenne Relucio
  • , Iva D. Tzvetanova
  • , Wei Ao
  • , Sabine Lindquist
  • , Holly Colognato
  • Stony Brook University
  • Otto von Guericke University Magdeburg
  • Leibniz Institute for Neurobiology
  • Klinikum Magdeburg

Research output: Contribution to journalArticlepeer-review

62 Scopus citations

Abstract

Mutations in LAMA2, the gene for the extracellular matrix protein laminin-α2, cause a severe muscular dystrophy termed congenital muscular dystrophy type-1A (MDC1A). MDC1A patients have accompanying CNS neural dysplasias and white matter abnormalities for which the underlying mechanisms remain unknown. Here,wereport that in laminin-deficient mice, oligodendrocyte development was delayed such that oligodendrocyte progenitors accumulated inappropriately in adult brains. Conversely, laminin substrates were found to promote the transition of oligodendrocyte progenitors to newly formed oligodendrocytes. Laminin-enhanced differentiation was Src family kinasedependent and resulted in the activation of the Src family kinase Fyn. In laminin-deficient brains, however, increased Fyn repression was accompanied by elevated levels of the Src family kinase negative regulatory proteins, Csk (C-terminal Src kinase), and its transmembrane adaptor, Cbp (Csk-binding protein). These findings indicate that laminin deficiencies delay oligodendrocyte maturation by causing dysregulation of signaling pathways critical for oligodendrocyte development, and suggest that a normal role for CNS laminin is to promote the development of oligodendrocyte progenitors into myelin-forming oligodendrocytes via modulation of Fyn regulatory molecules.

Original languageEnglish
Pages (from-to)11794-11806
Number of pages13
JournalJournal of Neuroscience
Volume29
Issue number38
DOIs
StatePublished - Sep 23 2009

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