AbstractFeedback inhibition of gene expression is a widespread phenomenon in which the expression of a gene is downregulated by its protein product. Feedback in eukaryotic cells involves time delays resulting from transcription, transcript splicing and processing, and protein synthesis. In principle, such delays can result in oscillatory mRNA and protein expression [1]. However, experimental evidence of such delay-driven oscillations has been lacking. Using mathematical modeling informed by recent data, I show that the observed oscillatory expression and activity of three proteins is most likely to be driven by transcriptional delays. Each protein (Hes1, p53, and NF-κB) is a component of a short feedback inhibition loop [2–4]. The oscillato...
The expression of genes in the cell is controlled by a complex interaction network involving protein...
Cells respond to changes in the internal and external environment by a complex regulatory system who...
Cells respond to changes in the internal and external environment by a complex regulatory system who...
AbstractFeedback inhibition of gene expression is a widespread phenomenon in which the expression of...
Supplemental Results and Discussion The dynamics of the model are thus determined only by five param...
The development of new techniques to quantitatively measure gene expression in cells has shed light ...
The expression of genes in the cell is controlled by a complex interaction network involving protein...
A number of genes change their expression pattern dynam-ically by displaying oscillations. In a few ...
A generic feature in all intracellular biochemical processes is the time required to complete the wh...
Discrete stochastic simulations are a powerful tool for understanding the dynamics of chemical kinet...
Discrete stochastic simulations are a powerful tool for understanding the dynamics of chemical kinet...
<div>The control and downstream interpretation of gene expression dynamics is poorly understood. For...
Discrete stochastic simulations are a powerful tool for understanding the dynamics of chemical kinet...
AbstractStochastic models of reaction networks are widely used to depict gene expression dynamics. H...
Transcriptional delay can significantly impact the dynamics of gene networks. Here we examine how su...
The expression of genes in the cell is controlled by a complex interaction network involving protein...
Cells respond to changes in the internal and external environment by a complex regulatory system who...
Cells respond to changes in the internal and external environment by a complex regulatory system who...
AbstractFeedback inhibition of gene expression is a widespread phenomenon in which the expression of...
Supplemental Results and Discussion The dynamics of the model are thus determined only by five param...
The development of new techniques to quantitatively measure gene expression in cells has shed light ...
The expression of genes in the cell is controlled by a complex interaction network involving protein...
A number of genes change their expression pattern dynam-ically by displaying oscillations. In a few ...
A generic feature in all intracellular biochemical processes is the time required to complete the wh...
Discrete stochastic simulations are a powerful tool for understanding the dynamics of chemical kinet...
Discrete stochastic simulations are a powerful tool for understanding the dynamics of chemical kinet...
<div>The control and downstream interpretation of gene expression dynamics is poorly understood. For...
Discrete stochastic simulations are a powerful tool for understanding the dynamics of chemical kinet...
AbstractStochastic models of reaction networks are widely used to depict gene expression dynamics. H...
Transcriptional delay can significantly impact the dynamics of gene networks. Here we examine how su...
The expression of genes in the cell is controlled by a complex interaction network involving protein...
Cells respond to changes in the internal and external environment by a complex regulatory system who...
Cells respond to changes in the internal and external environment by a complex regulatory system who...