Several transcription factors are essential for terminal differentiation of myelinating glia, among them the high-mobility-group-domain-containing protein Sox10. To better understand how these factors exert their effects and shape glial expression programs, we identified and characterized a physical and functional link between Sox10 and the Med12 subunit of the Mediator complex that serves as a conserved multiprotein interphase between transcription factors and the general transcription machinery. We found that Sox10 bound with two of its conserved domains to the C-terminal region of Med12 and its close relative, Med12-like. In contrast to Med12-like, substantial amounts of Med12 were detected in both Schwann cells and oligodendrocytes. Its...
Compact myelin is an innovative acquisition in jawed vertebrates that is formed by the wrapping of g...
SummaryThe myelin-forming oligodendrocytes are an excellent model to study transcriptional regulatio...
In recent years, Sox transcription factors have come under increasing scrutiny as important regulato...
Several transcription factors are essential for terminal differentiation of myelinating glia, among ...
In der Vergangenheit wurden essentielle Transkriptionsfaktoren wie das HMG- (High mobility group) D...
Sox10 is a high-mobility-group transcriptional regulator in early neural crest. Without Sox10, no gl...
Abstract Background The transcription factor SOX10 is...
In Schwann cells of the vertebrate peripheral nervous system, induction of myelination and myelin ma...
<p>(A) Sox10 is present within immature Schwann cells and acts to induce expression from the <i>Oct6...
<div><p>Myelin is essential for rapid saltatory conduction and is produced by Schwann cells in the p...
Abstract Background Sox10, a member of the Sry-related HMG-Box gene family, is a critical transcript...
SummarySchwann cells produce myelin sheaths and thereby permit rapid saltatory conductance in the ve...
The Sox10 transcription factor is a central regulator of vertebrate neural crest and nervous system ...
The molecular mechanisms that determine glial cell fate in the vertebrate nervous system have not be...
The molecular mechanisms that determine glial cell fate in the vertebrate nervous system have not be...
Compact myelin is an innovative acquisition in jawed vertebrates that is formed by the wrapping of g...
SummaryThe myelin-forming oligodendrocytes are an excellent model to study transcriptional regulatio...
In recent years, Sox transcription factors have come under increasing scrutiny as important regulato...
Several transcription factors are essential for terminal differentiation of myelinating glia, among ...
In der Vergangenheit wurden essentielle Transkriptionsfaktoren wie das HMG- (High mobility group) D...
Sox10 is a high-mobility-group transcriptional regulator in early neural crest. Without Sox10, no gl...
Abstract Background The transcription factor SOX10 is...
In Schwann cells of the vertebrate peripheral nervous system, induction of myelination and myelin ma...
<p>(A) Sox10 is present within immature Schwann cells and acts to induce expression from the <i>Oct6...
<div><p>Myelin is essential for rapid saltatory conduction and is produced by Schwann cells in the p...
Abstract Background Sox10, a member of the Sry-related HMG-Box gene family, is a critical transcript...
SummarySchwann cells produce myelin sheaths and thereby permit rapid saltatory conductance in the ve...
The Sox10 transcription factor is a central regulator of vertebrate neural crest and nervous system ...
The molecular mechanisms that determine glial cell fate in the vertebrate nervous system have not be...
The molecular mechanisms that determine glial cell fate in the vertebrate nervous system have not be...
Compact myelin is an innovative acquisition in jawed vertebrates that is formed by the wrapping of g...
SummaryThe myelin-forming oligodendrocytes are an excellent model to study transcriptional regulatio...
In recent years, Sox transcription factors have come under increasing scrutiny as important regulato...