A generic feature in all intracellular biochemical processes is the time required to complete the whole sequence of reactions to yield any observable quantity--from gene expression to circadian rhythms. This widespread phenomenon points towards the importance of time delay in biological functions. Theoretically time delay is known to be the source of instability, and has been attributed to lead to oscillations or transient dynamics in several biological functions. Negative feedback loops, common in biochemical pathways, have been shown to provide stability and withstand considerable variations and random perturbations of biochemical parameters. The interaction of these two opposing factors--of instability and homeostasis--are features that ...
AbstractFeedback inhibition of gene expression is a widespread phenomenon in which the expression of...
It is well known that single-gene circuits with negative feedback loop can lead to oscillatory gene ...
It is well known that single-gene circuits with negative feedback loop can lead to oscillatory gene ...
A generic feature in all intracellular biochemical processes is the time required to complete the wh...
Complex regulation of biochemical pathways in a cell is brought about by the interaction of simpler ...
AbstractStochastic models of reaction networks are widely used to depict gene expression dynamics. H...
The expression of genes in the cell is controlled by a complex interaction network involving protein...
Transcriptional delay can significantly impact the dynamics of gene networks. Here we examine how su...
It is well known that single-gene circuits with negative feedback loop can lead to oscillatory gene ...
The development of new techniques to quantitatively measure gene expression in cells has shed light ...
AbstractFeedback inhibition of gene expression is a widespread phenomenon in which the expression of...
The genetic and biochemical networks which underlie such things as homeostasis in metabolism and the...
This paper describes the use of time-delayed feedback to regulate the behaviour of biological networ...
It is well known that single-gene circuits with negative feedback loop can lead to oscillatory gene ...
The expression of genes in the cell is controlled by a complex interaction network involving protein...
AbstractFeedback inhibition of gene expression is a widespread phenomenon in which the expression of...
It is well known that single-gene circuits with negative feedback loop can lead to oscillatory gene ...
It is well known that single-gene circuits with negative feedback loop can lead to oscillatory gene ...
A generic feature in all intracellular biochemical processes is the time required to complete the wh...
Complex regulation of biochemical pathways in a cell is brought about by the interaction of simpler ...
AbstractStochastic models of reaction networks are widely used to depict gene expression dynamics. H...
The expression of genes in the cell is controlled by a complex interaction network involving protein...
Transcriptional delay can significantly impact the dynamics of gene networks. Here we examine how su...
It is well known that single-gene circuits with negative feedback loop can lead to oscillatory gene ...
The development of new techniques to quantitatively measure gene expression in cells has shed light ...
AbstractFeedback inhibition of gene expression is a widespread phenomenon in which the expression of...
The genetic and biochemical networks which underlie such things as homeostasis in metabolism and the...
This paper describes the use of time-delayed feedback to regulate the behaviour of biological networ...
It is well known that single-gene circuits with negative feedback loop can lead to oscillatory gene ...
The expression of genes in the cell is controlled by a complex interaction network involving protein...
AbstractFeedback inhibition of gene expression is a widespread phenomenon in which the expression of...
It is well known that single-gene circuits with negative feedback loop can lead to oscillatory gene ...
It is well known that single-gene circuits with negative feedback loop can lead to oscillatory gene ...