Correct myelination is crucial for the function of the peripheral nervous system. Both positive and negative regulators within the axon and Schwann cell function to ensure the correct onset and progression of myelination during both development and following peripheral nerve injury and repair. The Sox2 transcription factor is well known for its roles in the development and maintenance of progenitor and stem cell populations, but has also been proposed in vitro as a negative regulator of myelination in Schwann cells. We wished to test fully whether Sox2 regulates myelination in vivo and show here that sustained Sox2 expression in vivo blocks myelination in the peripheral nerves and maintains Schwann cells in a proliferative non-differentiate...
UNLABELLED: The Sox family of transcription factors have been widely studied in the context of oligo...
The Sox family of transcription factors have been widely studied in the context of oligodendrocyte d...
Im Laufe der gesamten Schwann-Zellentwicklung ist der Transkriptionsfaktor Sox10 das einzige Mitglie...
Schwann cells are the principal glial cell of the peripheral nervous system and are responsible for ...
Previous studies demonstrated that both Schwann cell differentiation and de-differentiation (in the ...
Compact myelin is an innovative acquisition in jawed vertebrates that is formed by the wrapping of g...
Abstract Background The transcription factor SOX10 is...
In order to identify new regulators of Schwann cell myelination potentially playing a role in periph...
Myelin is essential for the rapidity of saltatory nerve conduction, and also provides trophic suppor...
Schwann cells are an important cell source for regenerative therapy for neural disorders. We investi...
Loss of the Merlin tumour suppressor causes abnormal de-differentiation and proliferation of Schwann...
In the CNS, myelination and remyelination depend on the successful progression and maturation of oli...
Schwann cell myelination depends on Krox-20/Egr2 and other promyelin transcription factors that are ...
Terminally differentiated Schwann cells (SCs), the glial cells in the adult peripheral nerves, disp...
The class IIa histone deacetylases (HDACs) have pivotal roles in the development of different tissue...
UNLABELLED: The Sox family of transcription factors have been widely studied in the context of oligo...
The Sox family of transcription factors have been widely studied in the context of oligodendrocyte d...
Im Laufe der gesamten Schwann-Zellentwicklung ist der Transkriptionsfaktor Sox10 das einzige Mitglie...
Schwann cells are the principal glial cell of the peripheral nervous system and are responsible for ...
Previous studies demonstrated that both Schwann cell differentiation and de-differentiation (in the ...
Compact myelin is an innovative acquisition in jawed vertebrates that is formed by the wrapping of g...
Abstract Background The transcription factor SOX10 is...
In order to identify new regulators of Schwann cell myelination potentially playing a role in periph...
Myelin is essential for the rapidity of saltatory nerve conduction, and also provides trophic suppor...
Schwann cells are an important cell source for regenerative therapy for neural disorders. We investi...
Loss of the Merlin tumour suppressor causes abnormal de-differentiation and proliferation of Schwann...
In the CNS, myelination and remyelination depend on the successful progression and maturation of oli...
Schwann cell myelination depends on Krox-20/Egr2 and other promyelin transcription factors that are ...
Terminally differentiated Schwann cells (SCs), the glial cells in the adult peripheral nerves, disp...
The class IIa histone deacetylases (HDACs) have pivotal roles in the development of different tissue...
UNLABELLED: The Sox family of transcription factors have been widely studied in the context of oligo...
The Sox family of transcription factors have been widely studied in the context of oligodendrocyte d...
Im Laufe der gesamten Schwann-Zellentwicklung ist der Transkriptionsfaktor Sox10 das einzige Mitglie...