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  Sustained Pax6 Expression Generates Primate-like Basal Radial Glia in Developing Mouse Neocortex.

Wong, F. K., Fei, J., Mora-Bermúdez, F., Taverna, E., Haffner, C., Fu, J., et al. (2015). Sustained Pax6 Expression Generates Primate-like Basal Radial Glia in Developing Mouse Neocortex. PLoS Biology, 13(8): e1002217.

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Wong, Fong Kuan1, Autor           
Fei, Jifeng1, Autor           
Mora-Bermúdez, Felipe1, Autor           
Taverna, Elena1, Autor           
Haffner, Christiane1, Autor           
Fu, Jun, Autor
Anastassiadis, Konstantinos2, Autor
Stewart, A Francis, Autor
Huttner, Wieland B.1, Autor           
Affiliations:
1Max Planck Institute of Molecular Cell Biology and Genetics, Max Planck Society, ou_2340692              
2Max Planck Society, ou_persistent13              

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 Zusammenfassung: The evolutionary expansion of the neocortex in mammals has been linked to enlargement of the subventricular zone (SVZ) and increased proliferative capacity of basal progenitors (BPs), notably basal radial glia (bRG). The transcription factor Pax6 is known to be highly expressed in primate, but not mouse, BPs. Here, we demonstrate that sustaining Pax6 expression selectively in BP-genic apical radial glia (aRG) and their BP progeny of embryonic mouse neocortex suffices to induce primate-like progenitor behaviour. Specifically, we conditionally expressed Pax6 by in utero electroporation using a novel, Tis21-CreERT2 mouse line. This expression altered aRG cleavage plane orientation to promote bRG generation, increased cell-cycle re-entry of BPs, and ultimately increased upper-layer neuron production. Upper-layer neuron production was also increased in double-transgenic mouse embryos with sustained Pax6 expression in the neurogenic lineage. Strikingly, increased BPs existed not only in the SVZ but also in the intermediate zone of the neocortex of these double-transgenic mouse embryos. In mutant mouse embryos lacking functional Pax6, the proportion of bRG among BPs was reduced. Our data identify specific Pax6 effects in BPs and imply that sustaining this Pax6 function in BPs could be a key aspect of SVZ enlargement and, consequently, the evolutionary expansion of the neocortex.

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 Datum: 2015
 Publikationsstatus: Erschienen
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 Identifikatoren: eDoc: 717991
Anderer: 6281
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Titel: PLoS Biology
Genre der Quelle: Zeitschrift
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Seiten: - Band / Heft: 13 (8) Artikelnummer: e1002217 Start- / Endseite: - Identifikator: -