AbstractA molecular oscillator regulates the pace of vertebrate segmentation. Here, we show that the oscillator (clock) controls cyclic initiation of transcription in the unsegmented presomitic mesoderm (PSM). We identify an evolutionarily conserved 2.3 kb region in the murine Lunatic fringe (Lfng) promoter that drives periodic expression in the PSM. This region includes conserved blocks required for enhancing and repressing cyclic Lfng transcription, and to prevent continued expression in formed somites. We also show that dynamic expression in the cycling PSM is lost in the total absence of Notch signaling, and that Notch signaling acts directly via CBF1/RBP-Jκ binding sites to regulate Lfng. These results are consistent with a model in wh...
Somitic segmentation provides the framework on which the segmental pattern of the vertebrae, some mu...
International audienceSegmentation Transcriptional elongation Timing Oscillators Pattern formation A...
Vertebrate segmentation is regulated by the "segmentation clock", which drives cyclic expression of ...
AbstractA molecular oscillator regulates the pace of vertebrate segmentation. Here, we show that the...
AbstractVertebrate segmentation relies on a molecular oscillator, the segmentation clock, which cont...
AbstractThe most obvious segments of the vertebrate embryo are the trunk mesodermal somites which gi...
The segmental pattern of the spine is established early in development, when the vertebral precursor...
The segmented aspect of the vertebrate body plan first arises through the sequential formation of so...
AbstractDuring vertebrate segmentation, oscillatory activation of Notch signaling is important in th...
AbstractThe periodic formation of somites during vertebrate segmentation has been suggested to invol...
The most obvious segments of the vertebrate embryo are the trunk mesodermal somites which give rise ...
AbstractDuring somitogenesis, cells are recruited to the caudal presomitic mesoderm (PSM) from the p...
AbstractVertebrate somitogenesis comprises the generation of a temporal periodicity, the establishme...
The segmented body plan of vertebrate embryos arises through segmentation of the paraxial mesoderm t...
AbstractVertebrate segmentation is manifested during embryonic development as serially repeated unit...
Somitic segmentation provides the framework on which the segmental pattern of the vertebrae, some mu...
International audienceSegmentation Transcriptional elongation Timing Oscillators Pattern formation A...
Vertebrate segmentation is regulated by the "segmentation clock", which drives cyclic expression of ...
AbstractA molecular oscillator regulates the pace of vertebrate segmentation. Here, we show that the...
AbstractVertebrate segmentation relies on a molecular oscillator, the segmentation clock, which cont...
AbstractThe most obvious segments of the vertebrate embryo are the trunk mesodermal somites which gi...
The segmental pattern of the spine is established early in development, when the vertebral precursor...
The segmented aspect of the vertebrate body plan first arises through the sequential formation of so...
AbstractDuring vertebrate segmentation, oscillatory activation of Notch signaling is important in th...
AbstractThe periodic formation of somites during vertebrate segmentation has been suggested to invol...
The most obvious segments of the vertebrate embryo are the trunk mesodermal somites which give rise ...
AbstractDuring somitogenesis, cells are recruited to the caudal presomitic mesoderm (PSM) from the p...
AbstractVertebrate somitogenesis comprises the generation of a temporal periodicity, the establishme...
The segmented body plan of vertebrate embryos arises through segmentation of the paraxial mesoderm t...
AbstractVertebrate segmentation is manifested during embryonic development as serially repeated unit...
Somitic segmentation provides the framework on which the segmental pattern of the vertebrae, some mu...
International audienceSegmentation Transcriptional elongation Timing Oscillators Pattern formation A...
Vertebrate segmentation is regulated by the "segmentation clock", which drives cyclic expression of ...