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Cortical Excitatory Neurons and Glia, But Not GABAergic Neurons, Are Produced in the Emx1-Expressing Lineage

Journal of Neuroscience · 2002 · Vol. 22(15) · pp. 6309–6314
Jessica A. GorskiTiffany TalleyMengsheng QiuLuis PuellesJohn L.R. RubensteinKevin R. Jones

Abstract

By homologous recombination of an internal ribosome entry site and Cre recombinase coding region into the 3'-untranslated region of the mouse Emx1 gene, we have generated a strain of mice, Emx1(IRES)cre, that expresses the Cre recombinase in a spatial and temporal pattern like that observed for Emx1. When mated to reporter strains, these mice are a sensitive means to fate-map the Emx1-expressing cells of the developing forebrain. Our results demonstrate that radial glia, Cajal-Retzius cells, glutamatergic neurons, astrocytes, and oligodendrocytes of most pallial structures originate from an Emx1-expressing lineage. On the other hand, most of the pallial GABAergic neurons arise outside the Emx1-expressing lineage. Structures that are located near the basal ganglia (e.g., the amygdala and endopiriform nuclei) are not uniformly derived from Emx1-expressing cells.

Neurogenesis and neuroplasticity mechanismsDevelopmental Biology and Gene RegulationZebrafish Biomedical Research ApplicationsBiologyNeuroscienceNeocortexGABAergicCre recombinaseNeuroblastCell biologyNeurogenesisGeneticsGene

MeSH terms

Empty Spiracles Homeobox ProteinsAmygdalaAnimalsBasal GangliaCerebral Cortexgamma-Aminobutyric AcidInterneuronsMice, Mutant StrainsNeurogliaNeuronsRecombination, GeneticStem CellsTelencephalonTranscription FactorsViral Proteins

Funding

  • American Cancer Society
  • National Institutes of Health
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Cortical Excitatory Neurons and Glia, But Not GABAergic Neurons, Are Produced in the Emx1-Expressing Lineage · Scinovex