First Author | Guo C | Year | 2013 |
Journal | Neuron | Volume | 80 |
Issue | 5 | Pages | 1167-74 |
PubMed ID | 24314728 | Mgi Jnum | J:207160 |
Mgi Id | MGI:5554613 | Doi | 10.1016/j.neuron.2013.09.037 |
Citation | Guo C, et al. (2013) Fezf2 expression identifies a multipotent progenitor for neocortical projection neurons, astrocytes, and oligodendrocytes. Neuron 80(5):1167-74 |
abstractText | Progenitor cells in the cerebral cortex sequentially generate distinct classes of projection neurons. Recent work suggests the cortex may contain intrinsically fate-restricted progenitors marked by expression of Cux2. However, the heterogeneity of the neocortical ventricular zone as well as the contribution of lineage-restricted progenitors to the overall cortical neurogenic program remains unclear. Here, we utilize in vivo genetic fate mapping to demonstrate that Fezf2-expressing radial glial cells (RGCs) exist throughout cortical development and sequentially generate all major projection neuron subtypes and glia. Moreover, we show that the vast majority of CUX2(+) cells in the VZ and SVZ are migrating interneurons derived from the subcortical telencephalon. Examination of the embryonic cortical progenitor population demonstrates that Cux2(+) RGCs generate both deep- and upper-layer projection neurons. These results identify Fezf2(+) radial glial cells as a multipotent neocortical progenitor and suggest that the existence, and molecular identity, of laminar-fate-restricted RGCs awaits further investigation. |