It is well known that single-gene circuits with negative feedback loop can lead to oscillatory gene expression when they operate with time delay. In order to generate these oscillations many processes can contribute to properly timing such delay. Here we show that the time delay coming from the transitions between internal states of the cis-regulatory system (CRS) can drive sustained oscillations in an auto-repressive single-gene circuit operating in a small volume like a cell. We found that the cooperative binding of repressor molecules is not mandatory for a oscillatory behavior if there are enough binding sites in the CRS. These oscillations depend on an adequate balance between the CRS kinetic, and the synthesis/ degradation rates of re...
A generic feature in all intracellular biochemical processes is the time required to complete the wh...
This paper analyzes oscillatory dynamics of a class of cyclic gene regulatory networks and provides ...
AbstractWe quantify the potential landscape to determine the global stability and coherence of biolo...
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 ...
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...
Biological oscillators, specially those that constitute the circadian clock, have been extensively m...
Negative and positive transcriptional feedback loops are present in natural and synthetic genetic os...
We study the effects of multiple binding sites in the promoter of a genetic oscillator. We evaluate ...
It is infeasible to understand all dynamics in cell, but we can aim to understand the impact of desi...
It is infeasible to understand all dynamics in cell, but we can aim to understand the impact of desi...
AbstractStochastic models of reaction networks are widely used to depict gene expression dynamics. H...
AbstractStochastic models of reaction networks are widely used to depict gene expression dynamics. H...
A generic feature in all intracellular biochemical processes is the time required to complete the wh...
This paper analyzes oscillatory dynamics of a class of cyclic gene regulatory networks and provides ...
AbstractWe quantify the potential landscape to determine the global stability and coherence of biolo...
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 ...
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...
Biological oscillators, specially those that constitute the circadian clock, have been extensively m...
Negative and positive transcriptional feedback loops are present in natural and synthetic genetic os...
We study the effects of multiple binding sites in the promoter of a genetic oscillator. We evaluate ...
It is infeasible to understand all dynamics in cell, but we can aim to understand the impact of desi...
It is infeasible to understand all dynamics in cell, but we can aim to understand the impact of desi...
AbstractStochastic models of reaction networks are widely used to depict gene expression dynamics. H...
AbstractStochastic models of reaction networks are widely used to depict gene expression dynamics. H...
A generic feature in all intracellular biochemical processes is the time required to complete the wh...
This paper analyzes oscillatory dynamics of a class of cyclic gene regulatory networks and provides ...
AbstractWe quantify the potential landscape to determine the global stability and coherence of biolo...