SOX4 has been shown to promote neuronal differentiation both in the adult and embryonic neural progenitors. Ectopic SOX4 expression has also been shown to inhibit oligodendrocyte differentiation in mice, however the underlying molecular mechanisms remain poorly understood. Here we demonstrate that SOX4 regulates transcriptional targets associated with neural development in neural stem cells (NSCs), reducing the expression of genes promoting oligodendrocyte differentiation. Interestingly, we observe that SOX4 levels decreased during oligodendrocyte differentiation in vitro. Moreover, we show that SOX4 knockdown induces increased oligodendrocyte differentiation, as the percentage of Olig2-positive/2′,3’-Cyclic-nucleotide 3′-phosphodiesterase ...
UNLABELLED: The Sox family of transcription factors have been widely studied in the context of oligo...
The transcription factor-encoding gene, Sox4, is expressed in a wide range of tissues and has been s...
The differentiation of stem cells into the more than 100 billion neurons that compose the central ne...
SOX4 has been shown to promote neuronal differentiation both in the adult and embryonic neural proge...
The highly related transcription factors Sox4 and Sox11 are both expressed in oligodendrocyte precur...
SummaryThe myelin-forming oligodendrocytes are an excellent model to study transcriptional regulatio...
AbstractNeural progenitors of the vertebrate CNS are defined by generic cellular characteristics, in...
Neural stem cells (NSCs) exist in both embryonic and adult neural tissues and are characterized by t...
International audienceSox17, a SoxF family member transiently upregulated during postnatal oligodend...
AbstractAlthough Sox1, Sox2, and Sox3 are all part of the Sox-B1 group of transcriptional regulators...
The SOX genes show properties of both classical transcription factors and architectural components ...
AbstractThe myelin-forming oligodendrocytes of the mouse embryonic spinal cord express the three gro...
Abstract Background Sox2 is a well-established pluripotent transcription factor that plays an essent...
SOX2 is one of the key transcription factors involved in maintenance of neural progenitor identity. ...
The transcription factors Sox1 and Pax6 are expressed sequentially during early mouse embryonic neur...
UNLABELLED: The Sox family of transcription factors have been widely studied in the context of oligo...
The transcription factor-encoding gene, Sox4, is expressed in a wide range of tissues and has been s...
The differentiation of stem cells into the more than 100 billion neurons that compose the central ne...
SOX4 has been shown to promote neuronal differentiation both in the adult and embryonic neural proge...
The highly related transcription factors Sox4 and Sox11 are both expressed in oligodendrocyte precur...
SummaryThe myelin-forming oligodendrocytes are an excellent model to study transcriptional regulatio...
AbstractNeural progenitors of the vertebrate CNS are defined by generic cellular characteristics, in...
Neural stem cells (NSCs) exist in both embryonic and adult neural tissues and are characterized by t...
International audienceSox17, a SoxF family member transiently upregulated during postnatal oligodend...
AbstractAlthough Sox1, Sox2, and Sox3 are all part of the Sox-B1 group of transcriptional regulators...
The SOX genes show properties of both classical transcription factors and architectural components ...
AbstractThe myelin-forming oligodendrocytes of the mouse embryonic spinal cord express the three gro...
Abstract Background Sox2 is a well-established pluripotent transcription factor that plays an essent...
SOX2 is one of the key transcription factors involved in maintenance of neural progenitor identity. ...
The transcription factors Sox1 and Pax6 are expressed sequentially during early mouse embryonic neur...
UNLABELLED: The Sox family of transcription factors have been widely studied in the context of oligo...
The transcription factor-encoding gene, Sox4, is expressed in a wide range of tissues and has been s...
The differentiation of stem cells into the more than 100 billion neurons that compose the central ne...