Elsevier

Developmental Biology

Volume 281, Issue 2, 15 May 2005, Pages 309-317
Developmental Biology

Genomes & Developmental Control
Impact of transcription factor Sox8 on oligodendrocyte specification in the mouse embryonic spinal cord

https://doi.org/10.1016/j.ydbio.2005.03.010Get rights and content
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Abstract

The myelin-forming oligodendrocytes of the mouse embryonic spinal cord express the three group E Sox proteins Sox8, Sox9, and Sox10. They require Sox9 for their specification from neuroepithelial cells of the ventricular zone and Sox10 for their terminal differentiation and myelination. Here, we show that during oligodendrocyte development, Sox8 is expressed after Sox9, but before Sox10. Loss of Sox8 did not impair oligodendrocyte specification by itself, but enhanced the Sox9-dependent defect. Oligodendrocyte progenitors were still generated in the Sox9-deficient spinal cord, albeit at 20-fold lower rates than in the wildtype. Combined loss of Sox8 and Sox9, in contrast, led to a near complete loss of oligodendrocytes. Other cell types such as ventricular zone cells and radial glia remained unaffected in their numbers as well as their rates of proliferation and apoptosis. Oligodendrocyte development thus relies on the differential contribution of all three group E Sox proteins at various phases.

Keywords

Sry
High-mobility-group
Sox9
Sox10
Glia
Oligodendrogenesis
Redundancy
Knockout

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