Acquisition of proper neuronal identity and position is critical for the formation of neural circuits. In the embryonic spinal cord, cardinal populations of interneurons diversify into specialized subsets and migrate to defined locations within the spinal parenchyma. However, the factors that control interneuron diversification and migration remain poorly characterized. Here, we show that the Onecut transcription factors are necessary for proper diversification and distribution of the V2 interneurons in the developing spinal cord. Furthermore, we uncover that these proteins restrict and moderate the expression of spinal isoforms of Pou2f2, a transcription factor known to regulate B-cell differentiation. By gain- or loss-of-function experime...
The Onecut transcription factors, namely HNF-6, OC-2 and OC-3, are transcriptional activators expres...
The embryonic spinal cord in mice is organized into eleven progenitor domains. Cells in each domain ...
The locomotion is coordinated by complex neuronal networks, called Central Pattern Generators. These...
Acquisition of proper neuronal identity and position is critical for the formation of neural circuit...
Spinal dorsal interneurons, which are generated during embryonic development, relay and process sens...
The locomotion is coordinated by neuronal circuits, named “Central Pattern Generators”, located in t...
During embryonic development, the dorsal spinal cord generates numerous interneuron populations even...
During development, spinal motoneurons (MNs) diversify into a variety of subtypes that are specifica...
During development, spinal motoneurons (MNs) diversify into a variety of subtypes that are specifica...
Sensory experience is encoded by specific neurons located both in the peripheral and in the central ...
The spinal cord contains a diverse array of physiologically distinct interneuron cell types that sub...
BACKGROUND: Forging a relationship between progenitors with dynamically changing gene expression and...
Abstract In the developing spinal cord, Onecut transcription factors control the diversification of ...
In the developing spinal cord, Onecut transcription factors control the diversification of motor neu...
During spinal cord development, progenitor domains give rise to multiple neuronal populations and su...
The Onecut transcription factors, namely HNF-6, OC-2 and OC-3, are transcriptional activators expres...
The embryonic spinal cord in mice is organized into eleven progenitor domains. Cells in each domain ...
The locomotion is coordinated by complex neuronal networks, called Central Pattern Generators. These...
Acquisition of proper neuronal identity and position is critical for the formation of neural circuit...
Spinal dorsal interneurons, which are generated during embryonic development, relay and process sens...
The locomotion is coordinated by neuronal circuits, named “Central Pattern Generators”, located in t...
During embryonic development, the dorsal spinal cord generates numerous interneuron populations even...
During development, spinal motoneurons (MNs) diversify into a variety of subtypes that are specifica...
During development, spinal motoneurons (MNs) diversify into a variety of subtypes that are specifica...
Sensory experience is encoded by specific neurons located both in the peripheral and in the central ...
The spinal cord contains a diverse array of physiologically distinct interneuron cell types that sub...
BACKGROUND: Forging a relationship between progenitors with dynamically changing gene expression and...
Abstract In the developing spinal cord, Onecut transcription factors control the diversification of ...
In the developing spinal cord, Onecut transcription factors control the diversification of motor neu...
During spinal cord development, progenitor domains give rise to multiple neuronal populations and su...
The Onecut transcription factors, namely HNF-6, OC-2 and OC-3, are transcriptional activators expres...
The embryonic spinal cord in mice is organized into eleven progenitor domains. Cells in each domain ...
The locomotion is coordinated by complex neuronal networks, called Central Pattern Generators. These...