The stochastic mutual repressor model is analysed using perturbation methods. This simple model of a gene circuit consists of two genes and three promotor states. Either of the two protein products can dimerize, forming a repressor molecule that binds to the promotor of the other gene. When the repressor is bound to a promotor, the corresponding gene is not transcribed and no protein is produced. Either one of the promotors can be repressed at any given time or both can be unrepressed, leaving three possible promotor states. This model is analysed in its bistable regime in which the deterministic limit exhibits two stable fixed points and an unstable saddle, and the case of small noise is considered. On small time scales, the stochastic pro...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
The genetic bi-stable switch (toggle switch) consists of two genes which repress one another through...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
Abstract. The stochastic mutual repressor model is analysed using perturba-tion methods. This simple...
The stochastic mutual repressor model is analysed using perturbation methods. This simple model of a...
The correlated noise-based switches and stochastic resonance are investigated in a bistable single g...
<div><p>Random fluctuations in the amount of cellular components like mRNA and protein molecules are...
Genetic switching driven by noise is a fundamental cellular process in genetic regulatory networks. ...
<div><p>Genetic switching driven by noise is a fundamental cellular process in genetic regulatory ne...
Genetic switching driven by noise is a fundamental cellular process in genetic regulatory networks. ...
Random fluctuations in the amount of cellular components like mRNA and protein molecules are inevita...
Genetic switching driven by noise is a fundamental cellular process in genetic regulatory networks. ...
Positive and negative feedback loops, for example where a protein regulates its own transcription, p...
AbstractTranscriptional regulation is an inherently noisy process. The origins of this stochastic be...
Bistability arises within a wide range of biological systems from the A phage switch in bacteria to ...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
The genetic bi-stable switch (toggle switch) consists of two genes which repress one another through...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
Abstract. The stochastic mutual repressor model is analysed using perturba-tion methods. This simple...
The stochastic mutual repressor model is analysed using perturbation methods. This simple model of a...
The correlated noise-based switches and stochastic resonance are investigated in a bistable single g...
<div><p>Random fluctuations in the amount of cellular components like mRNA and protein molecules are...
Genetic switching driven by noise is a fundamental cellular process in genetic regulatory networks. ...
<div><p>Genetic switching driven by noise is a fundamental cellular process in genetic regulatory ne...
Genetic switching driven by noise is a fundamental cellular process in genetic regulatory networks. ...
Random fluctuations in the amount of cellular components like mRNA and protein molecules are inevita...
Genetic switching driven by noise is a fundamental cellular process in genetic regulatory networks. ...
Positive and negative feedback loops, for example where a protein regulates its own transcription, p...
AbstractTranscriptional regulation is an inherently noisy process. The origins of this stochastic be...
Bistability arises within a wide range of biological systems from the A phage switch in bacteria to ...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
The genetic bi-stable switch (toggle switch) consists of two genes which repress one another through...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...