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Updated: Jun 3, 2026

Differentiation of Embryonic Stem Cells into Oligodendrocyte Precursors
Published on: May 19, 2010
Phosphorylation state of Olig2 regulates proliferation of neural progenitors
Yu Sun1, Dimphna H Meijer, John A Alberta
1Department of Cancer Biology, Harvard Medical School and Dana-Farber Cancer Institute, Boston, MA 02115, USA.
Abstract:
The bHLH transcription factors that regulate early development of the central nervous system can generally be classified as either antineural or proneural. Initial expression of antineural factors prevents cell cycle exit and thereby expands the pool of neural progenitors. Subsequent (and typically transient) expression of proneural factors promotes cell cycle exit, subtype specification, and differentiation. Against this backdrop, the bHLH transcription factor Olig2 in the oligodendrocyte lineage is unorthodox, showing antineural functions in multipotent CNS progenitor cells but also sustained expression and proneural functions in the formation of oligodendrocytes. We show here that the proliferative function of Olig2 is controlled by developmentally regulated phosphorylation of a conserved triple serine motif within the amino-terminal domain. In the phosphorylated state, Olig2 maintains antineural (i.e., promitotic) functions that are reflected in human glioma cells and in a genetically defined murine model of primary glioma.
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