Genetic Fate Mapping Reveals That the Caudal Ganglionic Eminence Produces a Large and Diverse Population of Superficial Cortical Interneurons
Genetic Fate Mapping Reveals That the Caudal Ganglionic Eminence Produces a Large and Diverse Population of Superficial Cortical Interneurons
By combining an inducible genetic fate mapping strategy with electrophysiological analysis, we have systematically characterized the populations of cortical GABAergic interneurons that originate from the caudal ganglionic eminence (CGE). Interestingly, compared with medial ganglionic eminence (MGE)-derived cortical interneuron populations, the initiation [embryonic day 12.5 (E12.5)] and peak production (E16.5) of interneurons from this embryonic structure occurs 3 d later in development. Moreover, unlike either pyramidal cells or MGE-derived cortical interneurons, CGE-derived interneurons do not integrate into the cortex in an inside-out manner but preferentially (75%) occupy superficial cortical layers independent of birthdate. In contrast to previous estimates, CGE-derived interneurons are both considerably greater in number (∼30% of all cortical interneurons) and diversity (comprised by at least nine distinct subtypes). Furthermore, we found that a large proportion of CGE-derived interneurons, including the neurogliaform subtype, express the glycoprotein Reelin. In fact, most CGE-derived cortical interneurons express either Reelin or vasoactive intestinal polypeptide. Thus, in conjunction with previous studies, we have now determined the spatial and temporal origins of the vast majority of cortical interneuron subtypes.
- University of Oxford United Kingdom
- The University of Texas Southwestern Medical Center United States
- New York University United States
- Imperial College London United Kingdom
Cerebral Cortex, Genetic Markers, Male, Extracellular Matrix Proteins, Patch-Clamp Techniques, Cell Adhesion Molecules, Neuronal, Serine Endopeptidases, Cell Differentiation, Nerve Tissue Proteins, Mice, Reelin Protein, Prosencephalon, Genetic Techniques, Interneurons, Animals, Cell Lineage, Body Patterning
Cerebral Cortex, Genetic Markers, Male, Extracellular Matrix Proteins, Patch-Clamp Techniques, Cell Adhesion Molecules, Neuronal, Serine Endopeptidases, Cell Differentiation, Nerve Tissue Proteins, Mice, Reelin Protein, Prosencephalon, Genetic Techniques, Interneurons, Animals, Cell Lineage, Body Patterning
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