Emx2 Promotes Symmetric Cell Divisions and a Multipotential Fate in Precursors from the Cerebral Cortex

Distinct sets of precursor cells generate the mammalian cerebral cortex. During neurogenesis most precursors are specified to generate a single cell type and only few are multipotent. The cell-intrinsic molecular determinants of these distinct lineages are not known. Here we describe that retroviral...

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Veröffentlicht in:Molecular and cellular neuroscience 2001-11, Vol.18 (5), p.485-502
Hauptverfasser: Heins, Nico, Cremisi, Federico, Malatesta, Paolo, Gangemi, Rosaria M.R., Corte, Giorgio, Price, Jack, Goudreau, Guy, Gruss, Peter, Götz, Magdalena
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Sprache:eng
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Zusammenfassung:Distinct sets of precursor cells generate the mammalian cerebral cortex. During neurogenesis most precursors are specified to generate a single cell type and only few are multipotent. The cell-intrinsic molecular determinants of these distinct lineages are not known. Here we describe that retroviral transduction of the transcription factor Emx2 in precursors from the cerebral cortex results in a significant increase of large clones that are generated mostly by symmetric cell divisions and contain multiple cell types, comprising neurons and glial cells. Thus, Emx2 is the first cell-intrinsic determinant able to instruct CNS precursors towards a multipotential fate. To evaluate the role of endogenous Emx2 in cortical precursors, we examined cell division in Emx2−/− mice. These analyses further supported the role of endogenous Emx2 in the regulation of symmetric cell divisions in the developing cortex.
ISSN:1044-7431
1095-9327
DOI:10.1006/mcne.2001.1046