4.7 Article

Paracrine Pax6 activity regulates oligodendrocyte precursor cell migration in the chick embryonic neural tube

Journal

DEVELOPMENT
Volume 138, Issue 22, Pages 4991-5001

Publisher

COMPANY OF BIOLOGISTS LTD
DOI: 10.1242/dev.066282

Keywords

Oligodendrocyte precursor cells; Migration; Homeoprotein transfer; Pax6; Spinal cord; Chick

Funding

  1. Korean Ministry of Education, Science and Technology [200900424]
  2. Fondation pour la Recherche Medicale
  3. Fondation pour l'Aide a la Recherche sur la Sclerose en Plaques
  4. Ile-de-France Recherche Neuropole
  5. Agence Nationale Recherche [07-BLAN-0041-01, 08-BLAN-0162-01]
  6. National Research Foundation of Korea [2009-00424] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Homeoprotein transcription factors play fundamental roles in development, ranging from embryonic polarity to cell differentiation and migration. Research in recent years has underscored the physiological importance of homeoprotein intercellular transfer in eye field development, axon guidance and retino-tectal patterning, and visual cortex plasticity. Here, we have used the embryonic chick neural tube to investigate a possible role for homeoprotein Pax6 transfer in oligodendrocyte precursor cell (OPC) migration. We report the extracellular expression of Pax6 and the effects of gain and loss of extracellular Pax6 activity on OPCs. Open book cultures with recombinant Pax6 protein or Pax6 blocking antibodies, as well as in ovo gene transfer experiments involving expression of secreted Pax6 protein or secreted Pax6 antibodies, provide converging evidences that OPC migration is promoted by extracellular Pax6. The paracrine effect of Pax6 on OPC migration is thus a new example of direct non-cell autonomous homeoprotein activity.

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