During vertebrate embryogenesis, the rhythmic and sequential segmentation of the body axis is regulated by an oscillating genetic network termed the segmentation clock. We describe a new dynamic model for the core pace-making circuit of the zebrafish segmentation clock based on a systematic biochemical investigation of the network's topology and precise measurements of somitogenesis dynamics in novel genetic mutants. We show that the core pace-making circuit consists of two distinct negative feedback loops, one with Her1 homodimers and the other with Her7:Hes6 heterodimers, operating in parallel. To explain the observed single and double mutant phenotypes of her1, her7, and hes6 mutant embryos in our dynamic model, we postulate that the ava...
Segmentation is a developmental program in animals that generates semi-repetitive structures along t...
In vertebrate development, the sequential and rhythmic segmentation of the body axis is regulated by...
The “segmentation clock” is thought to coordinate sequential segmentation of the body axis in verteb...
During vertebrate embryogenesis, the rhythmic and sequential segmentation of the body axis is regula...
During vertebrate embryogenesis, the rhythmic and sequential segmentation of the body axis is regula...
During vertebrate embryogenesis, the rhythmic and sequential segmentation of the body axis is regula...
Formation of segments during vertebrate embryogenesis is regulated by a biological clock. Models and...
The somites of the vertebrate embryo are clocked out sequentially from the presomitic mesoderm (PSM)...
Somitogenesis is controlled by a genetic network consisting of an oscillator (clock) and a gradient ...
Background: Coupled biological oscillators can tick with the same period. How this collective period...
In vertebrate development, the sequential and rhythmic segmentation of the body axis is regulated by...
Somitogenesis is controlled by a genetic network consisting of an oscillator (clock) and a gradient ...
SummaryBackgroundCoupled biological oscillators can tick with the same period. How this collective p...
Unveiling the mechanisms through which the somitogenesis regulatory network exerts spatiot...
The "segmentation clock" is thought to coordinate sequential segmentation of the body axis in verteb...
Segmentation is a developmental program in animals that generates semi-repetitive structures along t...
In vertebrate development, the sequential and rhythmic segmentation of the body axis is regulated by...
The “segmentation clock” is thought to coordinate sequential segmentation of the body axis in verteb...
During vertebrate embryogenesis, the rhythmic and sequential segmentation of the body axis is regula...
During vertebrate embryogenesis, the rhythmic and sequential segmentation of the body axis is regula...
During vertebrate embryogenesis, the rhythmic and sequential segmentation of the body axis is regula...
Formation of segments during vertebrate embryogenesis is regulated by a biological clock. Models and...
The somites of the vertebrate embryo are clocked out sequentially from the presomitic mesoderm (PSM)...
Somitogenesis is controlled by a genetic network consisting of an oscillator (clock) and a gradient ...
Background: Coupled biological oscillators can tick with the same period. How this collective period...
In vertebrate development, the sequential and rhythmic segmentation of the body axis is regulated by...
Somitogenesis is controlled by a genetic network consisting of an oscillator (clock) and a gradient ...
SummaryBackgroundCoupled biological oscillators can tick with the same period. How this collective p...
Unveiling the mechanisms through which the somitogenesis regulatory network exerts spatiot...
The "segmentation clock" is thought to coordinate sequential segmentation of the body axis in verteb...
Segmentation is a developmental program in animals that generates semi-repetitive structures along t...
In vertebrate development, the sequential and rhythmic segmentation of the body axis is regulated by...
The “segmentation clock” is thought to coordinate sequential segmentation of the body axis in verteb...