During somitogenesis an oscillatory mechanism termed the “segmentation” clock generates periodic waves of gene expression, which translate into the periodic spatial pattern manifest as somites. The dynamic expression of the clock genes shares the same periodicity as somitogenesis. Notch signaling is believed to play a role in the segmentation clock mechanism. The paper by Hirata et al.(1) identifies a biological clock in cultured cells that is dependent upon the Notch target gene Hes1, and which shows a periodicity similar to that of the segmentation clock. This finding opens the possibility that the same oscillator mechanism might also operate in other tissues or cell types
SummaryVertebrate body segmentation is controlled by the segmentation clock, a molecular oscillator ...
Coupled biological oscillators can tick with the same period. How this collective period is establis...
How cells coordinate their dynamic gene expression to produce patterns that transcend to the tissue ...
During somitogenesis an oscillatory mechanism termed the “segmentation” clock generates periodic wav...
The vertebrate segmentation clock is a molecular oscillator that regulates the periodicity of somite...
The vertebrate segmentation clock is a molecular oscillator that regulates the periodicity of somite...
AbstractVertebrate segmentation is manifested during embryonic development as serially repeated unit...
In the last few years, the efforts to elucidate the mechanisms underlying the segmentation clock in ...
AbstractThe periodic formation of somites during vertebrate segmentation has been suggested to invol...
The Segmentation clock is a population of cellular genetic oscillators, located in the posterior of ...
Somites are transient structures which represent the most overt segmental feature of the vertebrate ...
The segmental organization of the vertebral column is established early in embryogenesis, when pairs...
AbstractDuring somitogenesis, oscillatory expression of genes in the notch and wnt signaling pathway...
During vertebrate somitogenesis an inherent segmentation clock coordinates the spatiotemporal signal...
During vertebrate somitogenesis an inherent segmentation clock coordinates the spatiotemporal signal...
SummaryVertebrate body segmentation is controlled by the segmentation clock, a molecular oscillator ...
Coupled biological oscillators can tick with the same period. How this collective period is establis...
How cells coordinate their dynamic gene expression to produce patterns that transcend to the tissue ...
During somitogenesis an oscillatory mechanism termed the “segmentation” clock generates periodic wav...
The vertebrate segmentation clock is a molecular oscillator that regulates the periodicity of somite...
The vertebrate segmentation clock is a molecular oscillator that regulates the periodicity of somite...
AbstractVertebrate segmentation is manifested during embryonic development as serially repeated unit...
In the last few years, the efforts to elucidate the mechanisms underlying the segmentation clock in ...
AbstractThe periodic formation of somites during vertebrate segmentation has been suggested to invol...
The Segmentation clock is a population of cellular genetic oscillators, located in the posterior of ...
Somites are transient structures which represent the most overt segmental feature of the vertebrate ...
The segmental organization of the vertebral column is established early in embryogenesis, when pairs...
AbstractDuring somitogenesis, oscillatory expression of genes in the notch and wnt signaling pathway...
During vertebrate somitogenesis an inherent segmentation clock coordinates the spatiotemporal signal...
During vertebrate somitogenesis an inherent segmentation clock coordinates the spatiotemporal signal...
SummaryVertebrate body segmentation is controlled by the segmentation clock, a molecular oscillator ...
Coupled biological oscillators can tick with the same period. How this collective period is establis...
How cells coordinate their dynamic gene expression to produce patterns that transcend to the tissue ...