Transcription factors contribute to the differentiation of cortical neurons, orchestrate specific interneuronal circuits, and define synaptic relationships. We have investigated neurons expressing chicken ovalbumin upstream promoter transcription factor II (COUP-TFII), which plays a role in the migration of GABAergic neurons. Whole-cell, patch-clamp recording in vitro combined with colocalization of molecular cell markers in the adult cortex differentiates distinct interneurons. The majority of strongly COUP-TFII-expressing neurons were in layers I-III. Most calretinin (CR) and/or cholecystokinin- (CCK) and/or reelin-positive interneurons were also COUP-TFII-positive. CR-, CCK-, or reelin-positive neurons formed 80%, 20%, or 17% of COUP-TFI...
GABAergic interneurons are critical components of cortical circuits. However, understanding their fu...
The cellular diversity of interneurons in the neocortex is thought to reflect subtype-specific roles...
GABAergic interneurons play key roles in cortical circuits, yet little is known about their early co...
The COUP-TFII nuclear receptor, also known as NR2F2, is expressed in the developing ventral telencep...
Transcription factor COUP-TFII in rodents is important for migration of cortical interneurons from c...
Transcription factor COUP-TFII in rodents is important for migration of cortical interneurons from c...
GABAergic interneurons of the cerebral cortex represent one of the most diversified populations of c...
How neuronal connections are established and organized into functional networks determines brain fun...
PhD ThesisHigher order processing by circuits in the cerebral cortex is highly dependent on inhibito...
We describe convergent evidence from transcriptomics, morphology, and physiology for a specialized G...
The complex structure and function of the cerebral cortex critically depend on the balance of excita...
AbstractChicken ovalbumin upstream promotor–transcription factor I (COUP-TFI), an orphan member of t...
The locally projecting GABAergic interneurons of the mammalian cerebral cortex are a highly heteroge...
Diverse and flexible cortical functions rely on the ability of neural circuits to perform multiple t...
Cortical pyramidal cells are generated from pallial neuroepithelial precursors, whereas GABAergic in...
GABAergic interneurons are critical components of cortical circuits. However, understanding their fu...
The cellular diversity of interneurons in the neocortex is thought to reflect subtype-specific roles...
GABAergic interneurons play key roles in cortical circuits, yet little is known about their early co...
The COUP-TFII nuclear receptor, also known as NR2F2, is expressed in the developing ventral telencep...
Transcription factor COUP-TFII in rodents is important for migration of cortical interneurons from c...
Transcription factor COUP-TFII in rodents is important for migration of cortical interneurons from c...
GABAergic interneurons of the cerebral cortex represent one of the most diversified populations of c...
How neuronal connections are established and organized into functional networks determines brain fun...
PhD ThesisHigher order processing by circuits in the cerebral cortex is highly dependent on inhibito...
We describe convergent evidence from transcriptomics, morphology, and physiology for a specialized G...
The complex structure and function of the cerebral cortex critically depend on the balance of excita...
AbstractChicken ovalbumin upstream promotor–transcription factor I (COUP-TFI), an orphan member of t...
The locally projecting GABAergic interneurons of the mammalian cerebral cortex are a highly heteroge...
Diverse and flexible cortical functions rely on the ability of neural circuits to perform multiple t...
Cortical pyramidal cells are generated from pallial neuroepithelial precursors, whereas GABAergic in...
GABAergic interneurons are critical components of cortical circuits. However, understanding their fu...
The cellular diversity of interneurons in the neocortex is thought to reflect subtype-specific roles...
GABAergic interneurons play key roles in cortical circuits, yet little is known about their early co...