AbstractTranscriptional regulation is an inherently noisy process. The origins of this stochastic behavior can be traced to the random transitions among the discrete chemical states of operators that control the transcription rate and to finite number fluctuations in the biochemical reactions for the synthesis and degradation of transcripts. We develop stochastic models to which these random reactions are intrinsic and a series of simpler models derived explicitly from the first as approximations in different parameter regimes. This innate stochasticity can have both a quantitative and qualitative impact on the behavior of gene-regulatory networks. We introduce a natural generalization of deterministic bifurcations for classification of sto...
AbstractGene regulatory networks are multistable dynamical systems in which attractor states represe...
We compare a hierarchy of three stochastic models in gene regulation. In each case, genes produce mR...
<div><p>Random fluctuations in the amount of cellular components like mRNA and protein molecules are...
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 ...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
AbstractTranscription is regulated by a multitude of factors that concertedly induce genes to switch...
Life processes in single cells and at the molecular level are inherently stochastic. Quantifying the...
Because the components of genetic networks are present in small quantities, the detailed behavior of...
Life processes in single cells and at the molecular level are inherently stochastic. Quantifying the...
Abstract—As gene regulatory network design and imple-mentation becomes more common, understanding th...
The correlated noise-based switches and stochastic resonance are investigated in a bistable single g...
AbstractGene regulatory networks are multistable dynamical systems in which attractor states represe...
A stochastic genetic toggle switch model that consists of two identical, mutually repressive genes i...
AbstractGene regulatory networks are multistable dynamical systems in which attractor states represe...
We compare a hierarchy of three stochastic models in gene regulation. In each case, genes produce mR...
<div><p>Random fluctuations in the amount of cellular components like mRNA and protein molecules are...
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 ...
Bistability arises within a wide range of biological systems from the λ phage switch in bacteria to ...
AbstractTranscription is regulated by a multitude of factors that concertedly induce genes to switch...
Life processes in single cells and at the molecular level are inherently stochastic. Quantifying the...
Because the components of genetic networks are present in small quantities, the detailed behavior of...
Life processes in single cells and at the molecular level are inherently stochastic. Quantifying the...
Abstract—As gene regulatory network design and imple-mentation becomes more common, understanding th...
The correlated noise-based switches and stochastic resonance are investigated in a bistable single g...
AbstractGene regulatory networks are multistable dynamical systems in which attractor states represe...
A stochastic genetic toggle switch model that consists of two identical, mutually repressive genes i...
AbstractGene regulatory networks are multistable dynamical systems in which attractor states represe...
We compare a hierarchy of three stochastic models in gene regulation. In each case, genes produce mR...
<div><p>Random fluctuations in the amount of cellular components like mRNA and protein molecules are...