We have selectively inhibited Notch1 signaling in oligodendrocyte precursors (OPCs) using the Cre/loxP system in transgenic mice to investigate the role of Notch1 in oligodendrocyte (OL) development and differentiation. Early development of OPCs appeared normal in the spinal cord. However, at embryonic day 17.5, premature OL differentiation was observed and ectopic immature OLs were present in the gray matter. At birth, OL apoptosis was strongly increased in Notch I mutant animals. Premature OL differentiation was also observed in the cerebrum, indicating that Notch1 is required for the correct spatial and temporal regulation of OL differentiation in various regions of the central nervous system. These findings establish a widespread functi...
The Notch signalling pathway plays fundamental roles in diverse developmental processes in metazoans...
Notch signalling regulates neuronal differentiation in the vertebrate nervous system. In addition to...
AbstractIn vertebrates, Notch signaling is generally thought to inhibit neural differentiation. Howe...
We have selectively inhibited Notch1 signaling in oligodendrocyte precursors (OPCs) using the Cre/lo...
The Notch signaling pathway plays a variety of roles in cell fate decisions during development. Prev...
AbstractSignalling through the cell-surface receptor molecule Notch may regulate oligodendrocyte dif...
Notch signaling plays a pivotal role in the regulation of vertebrate neurogenesis. However, in vitro...
Signalling through the cell-surface receptor molecule Notch may regulate oligodendrocyte differentia...
International audienceSox17, a SoxF family member transiently upregulated during postnatal oligodend...
Abstract Background In the developing vertebrate nervous system elevated levels of Notch signaling a...
AbstractIn this study, we show that oligodendrocyte differentiation is powerfully inhibited by activ...
Activation of Notch1 signaling in neural progenitor cells (NPCs) induces self-renewal and inhibits n...
Perivascular/mural cells originate from either the mesoderm or the cranial neural crest. Regardless ...
The development of the central nervous system (CNS) is regulated by non-protein coding gene regulato...
AbstractRecent studies suggest that Notch signaling provides both instructive and inhibitory cues fo...
The Notch signalling pathway plays fundamental roles in diverse developmental processes in metazoans...
Notch signalling regulates neuronal differentiation in the vertebrate nervous system. In addition to...
AbstractIn vertebrates, Notch signaling is generally thought to inhibit neural differentiation. Howe...
We have selectively inhibited Notch1 signaling in oligodendrocyte precursors (OPCs) using the Cre/lo...
The Notch signaling pathway plays a variety of roles in cell fate decisions during development. Prev...
AbstractSignalling through the cell-surface receptor molecule Notch may regulate oligodendrocyte dif...
Notch signaling plays a pivotal role in the regulation of vertebrate neurogenesis. However, in vitro...
Signalling through the cell-surface receptor molecule Notch may regulate oligodendrocyte differentia...
International audienceSox17, a SoxF family member transiently upregulated during postnatal oligodend...
Abstract Background In the developing vertebrate nervous system elevated levels of Notch signaling a...
AbstractIn this study, we show that oligodendrocyte differentiation is powerfully inhibited by activ...
Activation of Notch1 signaling in neural progenitor cells (NPCs) induces self-renewal and inhibits n...
Perivascular/mural cells originate from either the mesoderm or the cranial neural crest. Regardless ...
The development of the central nervous system (CNS) is regulated by non-protein coding gene regulato...
AbstractRecent studies suggest that Notch signaling provides both instructive and inhibitory cues fo...
The Notch signalling pathway plays fundamental roles in diverse developmental processes in metazoans...
Notch signalling regulates neuronal differentiation in the vertebrate nervous system. In addition to...
AbstractIn vertebrates, Notch signaling is generally thought to inhibit neural differentiation. Howe...